CA1306010C

Optical transmitter, optical receiver and optical transmission apparatus and control method of optical receiver

Abstract

H-223 ABSTRACT OF THE DISCLOSURE A unipolar original electrical signal is encoded byalternate mark inversion and combined with a DC bias current forinjection of a semiconductor laser to produce a bipolar FSKoptical signal that is transmitted to a receiver. At thereceiver, the received signal is coupled with optical local powerand fed to an optical/electrical transducer, preferably asemiconductor, to produce an electrical signal that isdemodulated to produce the original unipolar signal. Thedemodulator may be of different types, for example employingdelaying part of the amplified electrical signal and mixing thedelayed part wish the original signal for passage of the combinedsignal through a low pass filter; with proper selection of thedelay, an AMI decoder is not needed. The demodulator mayalso be of the type that has one or more band pass filters torespectively separate the positive mark, space and negative marksignals that may thereafter be added. Filtering and polarizationbeam splitting may also be used in the demodulator for improvingthe signal-to-noise ratio and preventing other types ofdegradation.38

CA1306010C, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Expired 4 August 2009, 17.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

29 claims: 27 independent, 2 dependent

  1. 1
    CLAIMS 1. An opto-electrical communication receiver device, comprising:means for receiving a frequency shift keying optical input information signal;and means for superheterodyne converting the optical input information signal into a electrical output unipolar information signal, and including an optical to electrical transducer means and demodulation means for converting an alternate mark inversion electrical signal into a unipolar electrical information signal, wherein said optical to electrical transducer means converts frequency shift keying optical signals into a frequency shift keying electrical signal;demodulation means includes means for separating the frequency shift keying electrical signal into first and second signal components;means for delaying one of said components by a fixed amount to produce a delayed signal;means for mixing said delayed signal and the other of said components to produce a mixed signal, and including means for filtering the positive mark signal, negative mark signal and space signal from the mixed frequency shift keying electrical signal from said mixing means for eliminating other frequencies and producing a multi-polar baseband signal;and means for alternate mark inversion decoding the multipolar baseband signal to output the unipolar electrical information signal.
  2. 2
    An opto-electrical communication receiver device, comprising:means for receiving a frequency shift keying optical input information signal;and means for superheterodyne converting the optical input information signal into a electrical output unipolar information signal, and including an optical to electrical transducer means and demodulation means for converting an alternate mark inversion electrical signal into a unipolar electrical information signal, wherein said optical to electrical transducer means outputs a frequency shift keying electrical signal;three separate band-pass filters respectively having band-pass frequencies corresponding to the positive mark frequency, negative mark frequency and space frequency of the frequency shift keying electrical signal for respectively outputting a positive mark signal, a negative mark signal and a space signal;and three envelope detector means for respectively converting the positive mark signal, negative mark signal and space signal to baseband signals, and means for arithmetically combining said baseband signals and outputting the unipolar electrical information signal.
  3. 3
    An optical receiver communication device, comprising:heterodyne detection means for converting a frequency shift keying alternate mark inversion optical signal into a baseband electrical frequency shifting alternate mark inversion signal by frequency discrimination;and means for converting said baseband signal into a unipolar information signal by splitting the baseband signal into two components, delaying one of said components relative to the other components by a delay time equal to n/2fg, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the alternate mark inversion frequency shift keying electrical signal, and combining the delayed component and other component without delay arithmetically to directly produce a unipolar electrical information signal without necessitating a separate alternate mark inversion decoder.
  4. 4
    An opto-electrical communication receiver device, comprising:means for receiving a frequency shift keying optical input information signal;and means for superheterodyne converting the optical input information signal into a electrical output unipolar information signal, and including an optical to electrical transducer means and demodulation means for converting an alternate mark inversion electrical signal into a unipolar electrical information signal, said means for superheterodyne converting including a local oscillation power source producing local oscillation light;and automatic frequency control means for sampling the frequency shift keying electrical signal and producing a sample signal, for extracting at least two of a positive mark signal, negative mark signal and a space signal from said sample signal by respective band-pass filtering, inputting one of the extracted signals into a low-pass filter and inputting another of the extracted signals into a high pass signal for producing respective passed signals, detecting the envelopes of the passed signals and controlling the frequency of the local oscillation power source of local oscillation light so that the amplitudes of the two envelopes are substantially in conformity with each other.
  5. 5
    A transmitter device for optical coherent communication systems, comprising:an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output.
  6. 6
    A receiver device for optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;a frequency discriminator for converting said AMI coded FSK electrical signal into an AMI coded baseband electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time r, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to produce an AMI coded baseband electrical signal;and an AMI decoder for decoding said AMI coded baseband electrical signal into a binary information electrical signal.
  7. 7
    An optical communication system, comprising:a transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fibre for transmitting said AMI coded FSK optical signal output;and a receiver device for optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;a frequency discriminator for converting said AMI coded FSK electrical signal into an AMI coded baseband electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time r, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to produce an AMI coded baseband electrical signal;and an AMI decoder for decoding said AMI coded baseband electrical signal into a binary information electrical signal.
  8. 8
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an .AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;and a frequency discriminator for converting said AMI coded FSK electrical signal into a binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder.
  9. 9
    An optical communication systems, comprising:a transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical· coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;and a frequency discriminator for converting said AMI coded FSK electrical signal into a binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder.
  10. 10
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;a divider for dividing the AMI coded FSK electrical signal into first, second and third components;a first band-pass filter having a band-pass frequency corresponding to the positive mark frequency of the AMI coded FSK electrical signal for extracting only the positive mark component from the first component;a first envelope detector for converting the extracted positive mark component into a first binary electrical signal;a second band-pass filter having a band-pass frequency corresponding to the negative mark frequency of the AMI coded FSK electrical signal for extracting only the negative mark component from the second component;a second envelope detector for converting the extracted negative mark component into a second binary electrical signal;a third band-pass filter having a band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only the space component from the third component;a third envelope detector for converting the extracted space mark component into a third binary electrical signal;and means for adding the first and second binary electrical signals, and subtracting the third binary electrical signal from the added binary electrical signal to produce a binary information electrical signal.
  11. 11
    An optical communication systems, comprising:a transmitter device for optical coherent communication systems, comprising: an alternate mark, inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;a divider for dividing the AMI coded FSK electrical signal into first, second and third components;a first band-pass filter having a band-pass frequency corresponding to the positive mark frequency of the AMI coded FSK electrical signal for extracting only the positive mark component from the first component;a first envelope detector for converting the extracted positive mark component into a first binary electrical signal;a second band-pass filter having a band-pass frequency corresponding to the negative mark frequency of the AMI coded FSK electrical signal for extracting only the negative mark component from the second component;a second envelope detector for converting the extracted negative mark component into a second binary electrical signal;a third band-pass filter having a band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only the space component from the third component;a third envelope detector for converting the extracted space mark component into a third binary electrical signal;and means for adding the first and second binary electrical signals, and subtracting the third binaryelectrical signal from the added binary electrical signal to produce a binary information electrical signal.
  12. 12
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal ;a divider for dividing the AMI coded FSK electrical signal into first and second components;a first band-pass filter having a band-pass frequency corresponding to the positive mark frequency of the AMI coded FSK electrical signal for extracting only the positive mark component from the first component;a first envelope detector for converting the extracted positive mark component into a first binary electrical signal;a second band-pass filter having a band-pass frequency corresponding to the negative mark frequency of the AMI coded FSK electrical signal for extracting only the negative mark component from the second component;a second envelope detector for converting the extracted negative mark component into a second binary electrical signal;and means for adding the first and second binary electrical signals to produce a binary information electrical signal.
  13. 13
    An optical communication systems, comprising:a transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;a divider for dividing the AMI coded FSK electrical signal into first and second components;a first band-pass filter having a band-pass frequency corresponding to the positive mark frequency of the AMI coded FSK electrical signal fox· extracting only the positive mark component from the first component;a first envelope detector for converting the extracted positive mark component into a first binary electrical signal;a second band-pass filter having a band-pass frequency corresponding to the negative mark frequency of the AMI coded FSK electrical signal for extracting only the negative mark component from the second component;a second envelope detector for converting the extracted negative mark component into a second binary electrical signal;and means for adding the first and second binary electrical signals to produce a binary information electrical signal.
  14. 14
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;a band-pass filter having a band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only the space component from the AMI coded FSK electrical signal;and an envelope detector for converting the extracted space component into a binary information electrical signal.
  15. 15
    An optical communication systems, comprising:A transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal ;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output. an optical fibre for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, and a photo diode for detecting the combination optical signal to produce an AMI coded FSK electrical signal;a band-pass filter having a band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only the space component from the AMI coded FSK electrical signal ;and an envelope detector for converting the extracted space component into a binary information electrical signal.
  16. 16
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce two combination optical signals, two photo diodes for detecting the respective combination optical signals to produce two AMI coded FSK electrical signals, and a subtractor for subtracting one AMI coded FSK electrical signal form the other AMI coded FSK electrical signal to produce a third AMI coded FSK electrical signal;and a frequency discriminator for converting said AMI coded FSK electrical signal into a binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder.
  17. 17
    An optical communication systems, comprising:a transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into said AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output ;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce two combination optical signals, two photo diodes for detecting the respective combination optical signals to produce two AMI coded FSK electrical signals, and a subtractor for subtracting one AMI coded FSK electrical signal form the other AMI coded FSK electrical signal to produce a third AMI coded FSK electrical signal;and a frequency discriminator for converting said AMI coded FSK electrical signal into a binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder.
  18. 18
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce two combination optical signals, two photo diodes for detecting the respective combination optical signals to produce two AMI coded FSK electrical signals, and a subtractor for subtracting one AMI coded FSK electrical signal from the other AMI coded FSK electrical signal to produce an AMI coded FSK electrical signal;and a band-pass filter having a band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only the space component from the AMI coded FSK electrical signal;and an envelope detector for converting the extracted space component into a binary information electrical signal.
  19. 19
    An optical communication systems, comprising:A transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce two combination optical signals, two photo diodes for detecting the respective combination optical signals to produce two AMI coded FSK electrical signals, and a subtractor for subtracting one AMI coded FSK electrical signal from the other AMI coded FSK electrical signal to produce a AMI coded FSK electrical signal;and a band-pass filter having a band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only the space component from the AMI coded FSK electrical signal;and an envelope detector for converting the extracted space component into a binary information electrical signal.
  20. 20
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into two AMI coded FSK electrical signals, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, a polarization beam splitter for separating the combination optical signal into two polarization components crossing each other orthogonally, two photo diodes for detecting the respective polarization components to produce the first and second AMI coded FSK electrical signals;a first frequency discriminator for converting a first said AMI coded FSK electrical signal into a first binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder;a second frequency discriminator for converting a second said AMI coded FSK electrical signal into a second binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder;and an adder for adding the first and second AMI coded FSK electrical signals to produce a binary information electrical signal.
  21. 21
    An optical communication systems, comprising:A transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into two AMI coded FSK electrical signals, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, a polarization beam splitter for separating the combination optical signal into two polarization components crossing each other orthogonally, two photo diodes for detecting the respective polarization components to produce the first and second AMI coded FSK electrical signals;a first frequency discriminator for converting a first said AMI coded FSK electrical signal into a first binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder;a second frequency discriminator for converting a second said AMI coded FSK electrical signal into a second binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder;and an adder for adding the first and second AMI coded FSK electrical signals to produce a binary information electrical signal.
  22. 22
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into two AMI coded FSK electrical signals, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, a polarization beam splitter for separating the combination optical signal into two polarization components crossing each other orthogonally, two photo diodes for detecting the respective polarization components to produce the first and second AMI coded FSK electrical signals;a first band-pass filter having a band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only the space component from the AMI coded FSK electrical signal;a first envelope detector for converting the extracted space component into a binary information electrical signal ;a second band-pass filter having a second band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only a second space component from the second AMI coded FSK electrical signal;and a second envelope detector for converting the extracted second space component into a second binary information electrical signal ;and an adder for adding the first and second AMI coded FSK electrical signals to produce a binary information electrical signal.
  23. 23
    An optical communication systems, comprising:A transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into two AMI coded FSK electrical signals, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce a combination optical signal, a polarization beam splitter for separating the combination optical signal into two polarization components crossing each other orthogonally, two photo diodes for detecting the respective polarization components to produce the first and second AMI coded FSK electrical signals;a first band-pass filter having a band-pass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only the space component from the AMI coded FSK electrical signal;a first envelope detector for converting the extracted space component into a binary information electrical signal;a second band-pass filter having a second bandpass frequency corresponding to the space frequency of the AMI coded FSK electrical signal for extracting only a second space component from the second AMI coded FSK electrical signal;and a second envelope detector for converting the extracted second space component into a second binary information electrical signal ;and an adder for adding the first and second AMI coded FSK electrical signals to produce a binary information electrical signal.
  24. 24
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce the first and second combination optical signals, the first polarization beam splitter for separating the first combination optical signal into the first horizontal and the first vertical polarization components crossing each other orthogonally, the second polarization beam splitter for separating the second combination optical signal into the second horizontal and the second vertical polarization components crossing each other orthogonally, the first and second photo diodes for detecting the first and second horizontal polarization components respectively to produce the first and second AMI coded FSK electrical signals, the third and fourth photo diodes for detecting the first and second vertical polarization components respectively to produce the third and fourth AMI coded FSK electrical signals, the first subtractor for subtracting the second AMI coded FSK electrical signal from the first AMI coded FSK electrical signal to produce the first AMI coded FSK electrical signal, the second subtractor for subtracting the fourth AMI coded FSK electrical signal from the third AMI coded FSK electrical signal to produce the second AMI coded FSK electrical signal;a first frequency discriminator for converting a first said AMI coded FSK electrical signal into a first binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder;a second frequency discriminator for converting a second said AMI coded FSK electrical signal into a second binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fg is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder;and an adder for adding the first and second AMI coded FSK electrical signals to produce a binary information electrical signal.
  25. 25
    An optical communication systems, comprising:A transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce the first and second combination optical signals, the first polarization beam splitter for separating the first combination optical signal into the first horizontal and the first vertical polarization components crossing each other orthogonally, the second polarization beam splitter for separating the second combination optical signal into the second horizontal and the second vertical polarization components crossing each other orthogonally, the first and second photo diodes for detecting the first and second horizontal polarization components respectively to produce the first and second AMI coded FSK electrical signals, the third and fourth photo diodes for detecting the first and second vertical polarization components respectively to produce the third and fourth AMI coded FSK electrical signals, the first subtractor for subtracting the second AMI coded FSK electrical signal from the first AMI coded FSK electrical signal to produce the first AMI coded FSK electrical signal, the second subtractor for subtracting the fourth AMI coded FSK electrical signal from the third AMI coded FSK electrical signal to produce the second AMI coded FSK electrical signal;a first frequency discriminator for converting a first said AMI coded FSK electrical signal into a first binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder;a second frequency discriminator for converting a second said AMI coded FSK electrical signal into a second binary information electrical signal, including a divider for dividing the AMI coded FSK electrical signal into two components, a delay line for delaying one of said components relative to the other components by a delay time equal to about n/2fs, wherein n is a positive natural number including zero and fs is the frequency corresponding to the space signal of the AMI coded FSK electrical signal, a mixer for multiplying the delayed component and other component without delay to produce a multiplication component, and a low-pass filter for passing the multiplication component to directly produce a binary information electrical signal without necessitating a separate AMI decoder;and an adder for adding the first and second AMI coded FSK electrical signals to produce a binary information electrical signal.
  26. 26
    A receiver device for the optical coherent communication systems, comprising:a heterodyne detector for converting an AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce the first and second combination optical signals, the first polarization beam splitter for separating the first combination optical signal into the first horizontal and the first vertical polarization components crossing each other orthogonally, the second polarization beam splitter for separating the second combination optical signal into the second horizontal and the second vertical polarization components crossing each other orthogonally, the first and second photo diodes for detecting the first and second horizontal polarization components respectively to produce the first and second AMI coded FSK electrical signals, the third and fourth photo diodes for detecting the first and second vertical polarization components respectively to produce the third and fourth AMI coded FSK electrical signals, the first subtractor for subtracting the second AMI coded FSK electrical signal from the first AMI coded FSK electrical signal to produce the first AMI coded FSK electrical signal, the second subtractor for subtracting the fourth AMI coded FSK electrical signal from the third AMI coded FSK electrical signal to produce the second AMI coded FSK electrical signal;a first frequency detector for converting a first AMI coded FSK electrical signal into a first binary information electrical signal;a second frequency detector for converting a second AMI coded FSK electrical signal into a second binary information electrical signal;and an adder for adding the first and second AMI coded FSK electrical signals to produce a binary information electrical signal.
  27. 27
    An optical communication systems, comprising:A transmitter device for optical coherent communication systems, comprising: an alternate mark inversion (AMI) coder for converting a binary information electrical signal into an AMI coded baseband electrical signal ;a superposer for superposing said AMI coded electrical signal on a bias current, and having a superposition current signal output including said AMI coded electrical signal and said bias current;and a semiconductor laser diode modulated by said superposition current signal output, and having an AMI coded frequency shift keying (FSK) optical signal output;an optical fiber for transmitting said AMI coded FSK optical signal output;and a receiver device for the optical coherent communication systems, comprising: a heterodyne detector for converting said AMI coded FSK optical signal into an AMI coded FSK electrical signal, including a semiconductor laser diode for producing a local optical signal, an optical coupler for combining said AMI coded FSK optical signal with the local optical signal to produce the first and second combination optical signals, the first polarization beam splitter for separating the first combination optical signal into the first horizontal and the first vertical polarization components crossing each other orthogonally, the second polarization beam splitter for separating the second combination optical signal into the second horizontal and the second vertical polarization components crossing each other orthogonally, the first and second photo diodes for detecting the first and second horizontal polarization components respectively to produce the first and second AMI coded FSK electrical signals, the third and fourth photo diodes for detecting the first and second vertical polarization components respectively to produce the third and fourth AMI coded FSK electrical signals, the first subtractor for subtracting the second AMI coded FSK electrical signal from the first AMI coded FSK electrical signal to produce the first AMI coded FSK electrical signal, the second subtractor for subtracting the fourth AMI coded FSK electrical signal from the third AMI coded FSK electrical signal to produce the second AMI coded FSK electrical signal;a first frequency detector for converting a first AMI coded FSK electrical signal into a first binary information electrical signal;a second frequency detector for converting a second AMI coded FSK electrical signal into a second binary information electrical signal;and an adder for adding the first and second AMI coded FSK electrical signals to produce a binary information electrical signal.
Independent claims27