WO0180418A2

Method and system for frequency up-conversion with modulation embodiments

Abstract

A method and system is described wherein an information signals is gated at a frequency that is a sub-harmonic of the frequency of the desired output signal. In the modulation embodiments, the information signal is modulated as part of the up-conversion process. In a first modulation embodiment, one information signal is phase modulated onto the carrier signal as part of the up-conversion process. In a second modulation embodiment, two information signals are multiplied, and, as part of the up-conversion process, one signal is phase modulated onto the carrier and the other signal is amplitude modulated onto the carrier. In a third modulation embodiment, one information signal is phase modulated onto the "I" phase of the carrier signal as part of the up-conversion process and a second information signal is phase modulated onto the "Q" phase of the carrier as part of the up-conversion process. In a fourth modulation embodiment, four information signals are phase and amplitude modulated onto the "I" and "Q" phases of the carrier as part of the up-conversion process. There are at least two implementations of each of the aforementioned embodiment.

WO0180418A2, drawing sheet 1
Sheet 1 of 2

Term

No projected expiry on record.

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5 claims: 5 independent, 0 dependent

  1. 1
    What Is Claimed Is:1. A system for up-converting and modulating, comprising: (A) a gating module and a differentiation module, wherein 5 (1) said gating module has a control input, a first input, and a second input;wherein (a) said control input accepts a control signal, wherein said control signal controls the frequency at which said gating module closes and opens;(b) said first input accepts an input signal, wherein said input signal is 0 a function of an information signal;(c) said second input is connected to a reference potential;and (d) said first input is further connected to said differentiation module;and (2) said differentiation module has an output, said output being a 5 harmonically rich signal that is phase modulated, the phase modulation being a function of said input signal. 2. The system of claim 1, further comprising a pulse shaping module, wherein: said pulse shaping module accepts an oscillating signal and outputs a string of pulses, wherein said string of pulses is said control signal. .0 3. The system of claim 1, further comprising: a multiplier, wherein said multiplier combines the information signal with a second information signal to create a combined signal;wherein said input signal is a function of said combined signal;and said output is a harmonically rich signal that is phase modulated and amplitude '5 modulated, the phase modulation being a function of said information signal and the amplitude modulation being a function of said second information signal. 4. The system of claim 3, wherein said information signal is a digital information signal and said second information signal is an analog information signal, wherein said combined signal results from multiplying said information signal and said second information signal 5. The system of claim 1, wherein said harmonically rich signal is an in-phase harmonically rich signal, further comprising: (B) a quadrature phase shifter, a second gating module, a second differentiation module, and a summer;wherein (3) said quadrature phase shifter outputs a phase shifted oscillating signal, wherein said phase shifted oscillating signal has a phase shifted frequency and a phase shifted phase, and further, said control signal has a first frequency and a first phase, and said phase shifted frequency is substantially equal to said first frequency, and said phase shifted phase is substantially 90 degrees out of phase with said first phase;(4) said second gating module has a second control input, a third input, and a fourth input;wherein (a) said second control input accepts a second control signal, wherein said second control signal is a function of said phase shifted oscillating signal, and further, said second control signal controls the frequency at which said second gating module closes and opens;(b) said third input accepts a second input signal, wherein said second input signal is a function of a second information signal;(c) said fourth input is connected to a second reference potential;and (d) said third input is further connected to said second differentiation module;(5) said second differentiation module has a second output, said second output being a quadrature-phase harmonically rich signal that is phase modulated, the phase modulation being a function of said second input signal;and (6) said summer accepts said in-phase harmonically rich signal and said quadrature-phase harmonically rich signal and outputs an in-phase/quadrature-phase (J Q) harmonically rich signal. 6. The system of claim 5, further comprising a second pulse shaping module, wherein: said second pulse shaping module accepts said phase shifted oscillating signal and outputs a phase shifted string of pulses, wherein said phase shifted string of pulses is said second control signal. 7. The system of claim 5, wherein said information signal is a first digital information signal and said second infoπnation signal is a second digital information signal. 8. The system of claim 5, further comprising: a first multiplier, wherein said first multiplier combines said information signal with a third information signal to create a first combined signal;wherein said first input signal is a function of said first combined signal;said output being an in-phase harmonically rich signal that is phase modulated and amplitude modulated, the phase modulation being a function of the first information signal and the amplitude modulation being a function of the third information signal;and a second multiplier, wherein said second multiplier combines said second information signal with a fourth information signal to create a second combined signal;wherein said second input signal is a function of said second combined signal;said second output being a quadrature-phase harmonically rich signal that is phase modulated and amplitude modulated, the phase modulation being a function of the second information signal and the amplitude modulation being a function of the fourth information signal. 9. The system of claim 8, wherein said information signal is a first digital information signal, said second information signal is a second digital information signal, said third information signal is a first analog information signal, and said fourth information signal is a second analog infoπnation signal. 10. A system for up-converting and modulating an information signal, comprising: (A) a first gating module, a summer, a phase shifter, an inverter, and a second gating module;wherein (1) said first gating module has a first control input, a first input, and a second input;(a) said first control input accepts a first control signal, wherein said first control signal is a function of a first oscillating signal, and further, said first control signal controls the frequency at which said first gating module closes and opens;(b) said first input accepts a first input signal, wherein said first input signal is a function of the information signal;(c) said second input is connected to a first reference potential;and (d) said first input is further connected to said summer;
  2. 2
    (2) said phase shifter outputs a phase shifted oscillating signal;
  3. 3
    (3) said inverter accepts the information signal and outputs an inverted information signal; (4) said second gating module has a second control input, a third input, and a fourth input; wherein (a) said second control input accepts a second control signal, wherein said second control signal is a function of said phase shifted oscillating signal, and further, said second control signal controls the frequency at which said second gating module closes and opens; (b) said third input accepts a second input signal, wherein said second input signal is a function of said inverted information signal; (c) said fourth input is connected to a second reference potential; and (d) said third input is further connected to said summer; and (5) said summer has an output, said output being a harmonically rich signal that is phase modulated, the phase modulation being a function of the information signal. 11. The system of claim 10, further comprising a first pulse shaping module and a second pulse shaping module, wherein:said first pulse shaping module accepts said first oscillating signal and outputs a string of pulses, wherein said string of pulses is said first control signal, and said second pulse shaping module accepts said phase shifted oscillating signal and outputs a phase shifted string of pulses, wherein said phase shifted string of pulses is said second control signal. 12. The system of claim 10, wherein said phase shifted oscillating signal is 180 degrees out of phase with said first oscillating signal. 13. In the system of claim 10, up-converting and modulating a second information signal, further comprising multiplier wherein: (i) said multiplier combines the information signal and the second infoπnation signal to create a combined signal;(ii) said first input signal is a function of said combined signal;(iii) said inverter accepts said combined signal and outputs an inverted combined signal;(iv) said second input signal is a function of said inverted combined signal;and (v) said output is a harmonically rich signal that is phase modulated and amplitude modulated, the phase modulation being a function of the information signal and the amplitude modulation being a function of the second information signal. 14. The system of claim 13, wherein the information signal is a digital infoπnation signal, the second infoπnation signal is an analog infoπnation signal, and said combined signal results from multiplying the first information signal and the second infoπnation signal. 15. In the system of claim 10, up-converting and modulating a second information signal, wherein said harmonically rich signal is an in-phase harmonically rich signal, further comprising: (B) a quadrature phase shifter, wherein said quadrature phase shifter outputs a quadrature shifted oscillating signal, wherein said quadrature shifted oscillating signal has a quadrature shifted frequency and a quadrature shifted phase, and further, said first oscillating signal has a first frequency and a first phase, and said quadrature shifted frequency is substantially equal to said first frequency, and said quadrature shifted phase is substantially 90 degrees out of phase with said first phase;(C) a third gating module, a second phase shifter, a second inverter, a fourth gating module, and a second summer;wherein (1) said third gating module has a third control input, a fifth input, and a sixth input;wherein (a) said third control input accepts a third control signal, wherein said third control signal is a function of said quadrature shifted oscillating signal, and further, said third control signal controls the frequency at which said third gating module closes and opens;(b) said fifth input accepts a third input signal, wherein said third input signal is a function of the second information signal;(c) said sixth input is connected to a third reference potential;and (d) said fifth input is further connected to said second summer;(2) said second phase shifter outputs a second phase shifted oscillating signal;(3) said second inverter accepts the second information signal and outputs a second inverted information signal;
  4. 4
    (4) said fourth gating module has a fourth control input, a seventh input, and an eighth input; wherein - (a) said fourth control input accepts a fourth control signal, wherein said fourth control signal is a function of said second phase shifted oscillating signal, and further, said fourth control signal controls the frequency at which said fourth gating module closes and opens; (b) said seventh input accepts a fourth input signal, wherein said fourth input signal is a function of said second inverted information signal; (c) said eighth input is connected to a fourth reference potential; and (d) said seventh input is further connected to said second summer; and (5) said second summer has a second output, wherein said second output is a quadrature-phase harmonically rich signal that is phase modulated as a function of the second information signal; and (D) a third summer, wherein said third summer accepts said in-phase harmonically rich signal and said quadrature-phase harmonically rich signal and outputs an in-phase/quadrature- phase (I Q) harmonically rich signal. 16. The system of claim 15, further comprising a third pulse shaping module and a fourth pulse shaping module, wherein:said third pulse shaping module accepts said quadrature shifted oscillating signal and outputs a third string of pulses, wherein said third string of pulses is said third control signal;and said fourth pulse shaping module accepts said second phase shifted oscillating signal and outputs a fourth string of pulses, wherein said fourth string of pulses is said second control signal. 17. The system of claim 15, wherein the information signal is a first digital information signal and the second information signal is a second digital information signal. 18. A system for up-converting and modulating a first information signal, a second infoπnation signal, a third information signal, and a fourth information signal, comprising: (1) a first multiplier, wherein said first multiplier combines the first information signal and the second information signal to create a first combined signal;(2) a first gating module, a first phase shifter, a first inverter, a second gating module, and a first summer;wherein (A) said first gating module has a first control input, a first input, and a second input;wherein (i) said first control input accepts a first control signal, wherein said first control signal is a function of a first oscillating signal, and further, said first control signal controls the frequency at which said first gating module closes and opens;(ii) said first input accepts a first input signal, wherein said first input signal is a function of said first combined signal;(iii) said second input is connected to a first reference potential;and (iv) said first input is further connected to said first summer;(B) said first phase shifter outputs a first phase shifted oscillating signal;(C) said first inverter accepts said first combined signal and outputs a first inverted combined signal;(D) said second gating module has a second control input, a third input, and a fourth input;wherein (i) said second control input accepts a second control signal, wherein said second control signal is a function of said first phase shifted oscillating signal, and further, said second control signal controls the frequency at which said second gating module closes and opens;(ii) said third input accepts a second input signal, wherein said second input signal is a function of said first inverted combined signal;(iii) said fourth input is connected to a second reference potential;and (iv) said third input is further connected to said first summer;and (E) said first summer has a first output, wherein said first output is an in-phase harmonically rich signal that is phase modulated and amplitude modulated, the phase modulation being a function of the first information signal and the amplitude modulation being a function of the second information signal;(3) a quadrature phase shifter, wherein said quadrature phase shifter outputs a quadrature shifted oscillating signal, wherein said quadrature shifted oscillating signal has a quadrature shifted frequency and a quadrature shifted phase, and further, said first oscillating signal has a first frequency and a first phase, and said quadrature shifted frequency is substantially equal to said first frequency, and said quadrature shifted phase is substantially 90 degrees out of phase with said first phase;(4) a second multiplier, wherein said second multiplier combines the third information signal and the fourth information signal to create a second combined signal;
  5. 5
    (5) a third gating module, a second phase shifter, a second inverter, a fourth gating module, and a second summer; wherein (A) said third gating module has a third control input, a fifth input, and a sixth input; wherein (i) said third control input accepts a third control signal, wherein said third control signal is a function of said quadrature shifted oscillating signal, and further, said third control signal controls the frequency at which said third gating module closes and opens; (ii) said fifth input accepts a third input signal, wherein said third input signal is a function of said second combined signal; (iii) said sixth input is connected to a third reference potential; and (iv) said fifth input is further connected to said second summer; (B) said second phase shifter outputs a second phase shifted oscillating signal; (C) said second inverter accepts said second combined signal and outputs a second inverted combined signal; (D) said fourth gating module has a fourth control input, a seventh input, and an eighth input; wherein (i) said fourth control input accepts a fourth control signal, wherein said fourth control signal is a function of said second phase shifted oscillating signal, and further, said fourth control signal controls the frequency at which said fourth gating module closes and opens; (ii) said seventh input accepts a fourth input signal, wherein said fourth input signal is a function of said second inverted combined signal; (iii) said eighth input is connected to a fourth reference potential; and (iv) said seventh input is further connected to said second summer; and (E) said second summer has a second output, wherein said second output is a quadrature-phase harmonically rich signal that is phase modulated and amplitude modulated, the phase modulation being a function of the third information signal and the amplitude modulation being a function of the fourth information signal; and (6) a third summer, wherein said third summer accepts said in-phase harmonically rich signal and said quadrature-phase harmonically rich signal and outputs an in-phase/quadrature- phase harmonically rich signal. 19. The system of claim 18, further comprising a first pulse shaping module, a second pulse shaping module, a third pulse shaping module, and a fourth pulse shaping module, wherein:said first pulse shaping module accepts said first oscillating signal and outputs a first string of pulses, wherein said first string of pulses is said first control signal;said second pulse shaping module accepts said first phase shifted oscillating signal and outputs a second string of pulses, wherein said second string of pulses is said second control signal;said third pulse shaping module accepts said quadrature shifted oscillating signal and outputs a third string of pulses, wherein said third string of pulses is said third control signal;and said fourth pulse shaping module accepts said second phase shifted oscillating signal and outputs a fourth string of pulses, wherein said fourth string of pulses is said second control signal. 20. The system of claim 18, wherein said first phase shifted oscillating signal is substantially 180 degrees out of phase with said first oscillating signal, and said second phase shifted oscillating signal is substantially 180 degrees out of phase with said quadrature shifted oscillating signal. 21. The system of claim 18, wherein the first information signal is a first digital information signal, said second information signal is a first analog infoπnation signal, the third information signal is a second digital information signal, and said fourth information signal is a second analog infoπnation signal. 22. A system for up-converting and modulating an information signal, comprising: a control signal having a control frequency and a control phase;a gating means for gating having a control input, said control signal being connected to said control input, said control signal causing said gating means to gate the information signal at a rate that is a function of said control frequency, thereby resulting in a gated information signal;and a differentiation module accepting said gated information signal and creating a phase- modulated harmonically rich signal having a plurality of harmonics, at least one of said plurality of harmonics being a desired harmonic. 23. The system of claim 22, further comprising: a filter accepting said phase-modulated harmonically rich signal and outputting said desired harmonic. 24. In the system of claim 22, up-converting and modulating a second information signal, wherein said control signal has a first control phase and said phase-modulated harmonically rich signal is an in-phase phase-modulated harmonically rich signal, comprising: a second control signal having a second control frequency and a second control phase, wherein said second control frequency is substantially equal to said control frequency, and said second control phase is substantially 90° out of phase with said first control phase;a second gating means for gating having a second control input;said second control signal being connected to said second control input, said second control signal causing said second gating means to gate the second information signal at a rate that is a function of said second control frequency, thereby resulting in a quadrature-phase gated information signal that is a function of the second information signal;a second differentiation module accepting said quadrature-phase gated information signal and creating a quadrature-phase phase-modulated harmonically rich signal;and a summing means for summing said in-phase phase-modulated harmonically rich signal and said quadrature-phase phase-modulated harmonically rich signal thereby creating an in- phase/quadrature-phase (I/Q) phase-modulated harmonically rich signal having a plurality of I/Q harmonics, at least one of said plurality of J Q harmonics being a desired J/Q harmonic. 25. A system for up-converting and modulating a first information signal and a second information signal, comprising: a multiplier accepting the first information signal and the second information signal and creating a combined signal;a gating means for gating having a control input, said control input accepting a control signal having a control frequency, said control signal causing said gating means to gate said combined signal at a rate that is a function of said control frequency, thereby resulting in a gated combined signal;and a differentiation module accepting said gated combined signal and creating a phase-and- amplitude-modulated harmonically rich signal having a plurality of harmonics, at least one of said pluraUty of harmonics being a desired harmonic. 26. The system of claim 25, wherein the first information signal is a digital information signal having a digital signal baud rate, the second information signal is an analog information signal, wherein said combined signal is comprised of a series of bits having bit amplitudes that are a function of said analog signal, said combined signal further having a combined signal baud rate substantially equal to said digital signal baud rate. 27. In the system of claim 25, up-converting and modulating a third information signal and a fourth information signal, wherein said control signal has a first control phase and said phase-and- ampUtude-modulated harmonically rich signal is an in-phase phase-and-amplitude-modulated harmonically rich signal, comprising: a second multiplier accepting the third information signal and the fourth information signal and creating a second combined signal;a second gating means for gating having a second control input, said second control input accepting a second control signal having a second control frequency and a second control phase, wherein said second control frequency is substantially equal to said control frequency, and said second control phase is substantially 90° out of phase with said first control phase;said second control signal causing said second gating means to gate said second combined signal at a rate that is a function of said second control frequency, thereby resulting in an quadrature-phase gated combined signal that is a function of said second combined signal;a second differentiation module accepting said quadrature-phase gated information signal and creating a quadrature-phase phase-and-amplitude-modulated harmonically rich signal;and a summing means for summing said in-phase phase-and-amplitude-modulated harmonically rich signal and said quadrature-phase phase-and-amplitude-modulated harmonically rich signal thereby creating an in-phase/quadrature-phase (I/Q) phase-and-amplitude-modulated harmonically rich signal having, a plurality of J/Q harmonics, at least one of said plurality of J/Q harmonics being a desired I/Q harmonic. 28. A system for up-converting and modulating an information signal, comprising: an inversion means for inverting the information signal and outputting an inverted information signal;a first control signal having a first control frequency and a first control phase;a second control signal having a second control frequency and a second control phase, wherein said second control frequency is substantially equal to said first control frequency and said second control phase is substantially 180° out of phase with said first control phase;a first gating means for gating having a first control input;said first control signal being connected to said first control input, said first control signal causing said first gating means to gate the information signal at a rate that is a function of said first control frequency, thereby resulting in a gated information signal;a second gating means for gating having a second control input;said second control signal being connected to said second control input, said second control signal causing said second gating means to gate said inverted information signal at a rate that is a function of said second control frequency, thereby resulting in a gated inverted information signal;a summer accepting said gated information signal and said gated inverted information signal creating a phase-modulated harmonically rich signal having a plurality of harmonics, at least one of said plurality of harmonics being a desired harmonic. 29. In the system of claim 28, up-converting and modulating a second information signal, wherein said phase-modulated harmonically rich signal is an in-phase phase-modulated harmonically rich signal, comprising: a second inversion means for inverting the second information signal and outputting a second inverted information signal;a third control signal having a third control frequency and a third control phase, wherein said third control frequency is substantially equal to said first control frequency and said third control phase is substantially 90° out of phase with said first control phase;a fourth control signal having a fourth control frequency and a fourth control phase, wherein said fourth control frequency is substantially equal to said third control frequency and said fourth control phase is substantially 180° out of phase with said third control phase;a third gating means for gating having a third control input;said third control signal being connected to said third control input, said third control signal causing said third gating means to gate the second information signal at a rate that is a function of said third control frequency, thereby resulting in a second gated information signal that is a function of the second information signal;a fourth gating means for gating having a fourth control input;said fourth control signal being connected to said fourth control input, said fourth control signal causing said fourth gating means to gate said second inverted information signal at a rate that is a function of said fourth control frequency, thereby resulting in a second gated inverted information signal that is a function of said second inverted information signal;a second summer accepting said second gated information signal and said second gated inverted information signal thereby creating a quadrature-phase phase-modulated harmonically rich signal;a summing means for summing said in-phase phase-modulated harmonically rich signal and said quadrature-phase phase-modulated harmonically rich signal thereby creating an in- phase/quadrature-phase (I Q) phase-modulated harmonically rich signal having a plurality of 1/Q harmonics, at least one of said plurality of I/Q harmonics being a desired I/Q harmonic. 30. In the system of claim 28, up-converting and modulating a second information signal, wherein said phase-modulated harmonically rich signal is an in-phase phase-modulated harmonically rich signal, comprising: a third control signal having a third control frequency and a third control phase, wherein said third control frequency is substantially equal to said first control frequency and said third control phase is substantially 90° out of phase with said first control phase;a third gating means for gating having a third control input;said third control signal being connected to said third control input, said third control signal causing said third gating means to gate the second information signal at a rate that is a function of said third control frequency, thereby resulting in a quadrature-phase gated information signal that is a function of the second infoπnation signal;a differentiation module accepting said quadrature-phase gated inforination signal and creating a quadrature-phase phase-modulated harmonically rich signal;and a summing means for summing said in-phase phase-modulated harmonically rich signal and said quadrature-phase phase-modulated harmonically rich signal thereby creating an in- phase/quadrature-phase (I/Q) phase-modulated harmonically rich signal having a plurality of I/Q harmonics, at least one of said plurality of J/Q harmonics being a desired I/Q harmonic. 31. A system for up-converting and modulating a first information signal and a second information signal, comprising: a multiplier accepting the first information signal and the second information signal and creating a combined signal;an inversion means for inverting said combined signal and outputting an inverted combined signal;a first control signal having a first control frequency and a first control phase;a second control signal having a second control frequency and a second control phase, wherein said second control frequency is substantially equal to said first control frequency and said second control phase is substantially 180° out of phase with said first control phase;a first gating means for gating having a first control input;said first control signal being connected to said first control input, said first control signal causing said first gating means to gate said combined signal at a rate that is a function of said first control frequency, thereby resulting in a gated combined signal;a second gating means for gating having a second control input;said second control signal being connected to said second control input of said second gating means, said second control signal causing said second gating means to gate said inverted combined signal at a rate that is a function of said second control frequency, thereby resulting in a gated inverted combined signal;a summer accepting said gated combined signal and said gated inverted combined signal creating a phase-and-amplitude-modulated harmonically rich having a plurality of harmonics, at least one of said plurality of harmonics being a desired harmonic. 32. The system of claim 31, wherein the first information signal is a digital information signal having a digital signal baud rate, the second information signal is an analog information signal, and wherein said combined signal is comprised of a series of bits having bit amplitudes that are a function of said analog signal, said combined signal further having a combined signal baud rate substantially equal to said digital signal baud rate. 33. In the system of claim 31, modulating and up-converting a third information signal, and a fourth information signal, wherein said phase-and-amplitude-modulated harmonically rich signal is an in-phase phase-and-amplitude-modulated harmonically rich signal comprising: a second multiplier accepting the third information signal and the fourth information signal and creating a second combined signal;. an second inversion means for inverting said second combined signal and outputting a second inverted combined signal;a third control signal having a third control frequency and a third control phase wherein said third control frequency is substantially equal to said first control frequency and said third control phase is substantially 90° out of phase with said first control phase;a fourth control signal having a fourth control frequency and a fourth control phase, wherein said fourth control frequency is substantially equal to said third control frequency and said fourth control phase is substantially 180° out of phase with said third control phase;a third gating means for gating having a third control input;said third control signal being connected to said third control input, said third control signal causing said third gating means to gate said second combined signal at a rate that is a function of said third control frequency, thereby resulting in a second gated combined signal that is a function of said second combined signal;a fourth gating means for gating having a fourth control input;said fourth control signal being connected to said fourth control input, said fourth control signal causing said fourth gating means to gate said second inverted combined signal at a rate that is a function of said fourth control frequency, thereby resulting in a second gated inverted combined signal that is a function of said second inverted combined signal;a second summer accepting said second gated combined signal and said second gated inverted combined signal thereby creating a quadrature-phase phase-and-amplitude-modulated harmonically rich signal;and a summing means for summing said in-phase phase-and-amplitude-modulated harmonically rich signal and said quadrature-phase phase-and-amplitude-modulated harmonically rich signal thereby creating an in-phase/quadrature-phase (I/Q) phase-and-amplitude-modulated harmonically rich signal having a plurality of J/Q harmonics, at least one of said plurality of J/Q harmonics being a desired J/Q harmonic.