IL95207A

Subscriber unit for wireless digital subscriber communication system.

Abstract

This record has no abstract on file.

IL95207A, drawing sheet 1
Sheet 1 of 5

Term

No projected expiry on record.

  1. Priority
  2. Filed
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  4. Today

48 claims: 15 independent, 33 dependent

  1. 1
    CLAIMS:1. A subscriber unit in a communication system wherein the subscriber unit includes a codec and an associated processor for transcoding an input signal to provide digital input symbols, a radio for transmitting a signal which includes the information contained in the digital input symbols to a second unit within the system and for demodulating an output signal received from the second unit, and wherein the processor synthesizes the digital output signals from the demodulated output signal, characterized in that the subscriber unit includes an improved digital synthesizer comprising: register means for storing phase increment data from the processor;means for accumulating the phase increment data for providing digitized phase values;means for generating a digital intermediate frequency signal having a predetermined value based on the digitized phase values;and a noise shaping circuit to filter the digital intermediate frequency signal.
  2. 5
    The subscriber unit of claim .1, characterized in that the digital synthesizer further comprises a processor decoding means responsive to the processor, for controlling the register means, accumulating means, and generating means.
  3. 7
    The subscriber unit of claim .1, characterized in that the digital synthesizer further comprises:a signal generator which receives the accumulated phase increment data and generates sine and cosine waveforms based on the accumulated phase increment data;an interpolator for accumulating I and Q samples from the processor;and a modulator, connected to the interpolator and the signal generator, for mixing of the sine and cosine waveforms with the accumulated I and Q samples to produce a modulated digital intermediate frequency. \
  4. 9
    The subscriber unit of claim .8, characterized in that the digital synthesizer further comprises lookup tables to allow coarse and fine resolution frequency adjustment of the digital intermediate frequency. •
  5. 10
    The subscriber unit of claim .9, characterized in that exactly two lookup tables are required. 95207/3
  6. 11
    The subscriber unit of claim .10, characterized in that the table size is reduced by utilizing quadrant symmetry of the sine and cosine waveforms wherein the accumulated phase information specifies the quadrant and the algebraic sign of the data in the lookup tables. .
  7. 13
    The subscriber unit of claim .1, characterized in that the noise shaping circuit is a notch filter. '
  8. 14
    The subscriber unit of claim .1, characterized in that the digital synthesizer further comprises a clock generation means for providing the timing signals within the subscriber unit.
  9. 15
    The subscriber unit of claim .1, characterized in that the digital synthesizer further comprises a processor decoding means connected to said processor means for controlling internal functions of the digital synthesizer. .
  10. 16
    The subscriber unit of claim .1, characterized in that the digital synthesizer further comprises a means for generating an unmodulated carrier frequency for demodulating said output signal from said signal from the second.unit.
  11. 19
    The subscriber unit of claim .1, characterized in that the predetermined digital intermediate frequency demodulates the output signal from the second unit.
  12. 21
    The subscriber unit of claim .20, characterized in that the modulated digital intermediate frequency is modulated with the digital input symbols. ,
  13. 23
    An improved subscriber unit, for wireless communication with a base station in a wireless subscriber communication system, of the type comprising:means for transcoding a digital voice input signal to provide digital input symbols;means for FIR filtering the digital input symbols;means for modulating a digital intermediate frequency signal with the filtered input symbols to provide a modulated intermediate frequency input signal;means for processing the modulated input signal for transmission to the base station;means for demodulating an output signal received from the base station to provide digital output symbols;and means for synthesizing a digital voice output signal from the digital output symbols;wherein the improvement is characterized by: a FIR chip for performing said FIR filtering of the digital input symbols;and a DIF chip for digitally synthesizing said digital intermediate frequency signal and for performing said modulation of said digital intermediate frequency signal.
  14. 24
    A subscriber unit according to Claim 23, wherein a single processor chip performs said transcoding of said digital voice input signal, said demodulation of said output signal received from the base station, and said synthesizing of the digital output symbols.
  15. 25
    A subscriber unit according to Claim 24, wherein the DIF chip includes a means coupled to said processor chip for accumulating phase data provided by said processor chip to indicate a predetermined intermediate frequency and means for processing the accumulated phase data to generate said digital intermediate frequency signal at the predetermined intermediate frequency.
  16. 26
    A subscriber unit according to Claim 25, wherein the processor chip is coupled to the FIR chip and the DIF chip for controlling the operation of said FIR chip and the operation of said DIF chip.
  17. 27
    A subscriber unit according to Claim 25, wherein the FIR filtering means includes a lookup table for providing said filtered digital input symbols in response to a combination of said digital input symbols provided by said transcoding and filtering coefficients provided by the processor chip.
  18. 28
    A subscriber unit according to Claim 24, wherein the FIR chip includes a means for generating timing signals for timing the transcoding operation and the operation of synthesizing the digital voice output signal by the processor chip.
  19. 29
    A subscriber unit according to Claim 28, wherein the processor chip performs said demodulation of said output signal received from the base station independently of the timing signals generated by the FIR chip.
  20. 30
    A subscriber unit according to Claim 29, wherein the processor chip receives said output signal in accordance with said timing signals generated by the FIR chip, and buffers said received output signal for demodulation thereby allowing the processor chip to perform said demodulation when not performing said transcoding and synthesizing operations.
  21. 31
    A subscriber unit according to Claim 24, further comprising:a slow memory, having at least one wait state other than zero wait states, coupled to the processor chip for storing processing codes used by the processor chip when said codes need not be operated with zero wait states;and a fast memory, having zero wait states, coupled to the processor chip for temporarily storing processing codes used by the processor chip when said codes are operated with zero wait states.
  22. 32
    A subscriber unit according to Claim 24, wherein the processor chip enters a power-down mode, in response to an idle instruction, terminating said power-down mode temporarily in response to an interrupt request and resuming normal operation for a predetermined period during which it is determined whether a service routine is to be performed, and then returning to said power-down mode when there is no service routine to be performed.
  23. 33
    A subscriber unit according to Claim 24, wherein said FIR chip includes:means for internal address decoding to allow the processor to access internal functions of the FIR chip;a control and status register which allows the processor to read the status of and control internal functions of the FIR chip;means for control timing which allows the processing means to control the FIR filtering means;and means for generating timing signals for timing transcoding operations and synthesizing operations connected to the processor.
  24. 34
    A subscriber unit according to Claim 33, wherein said FIR chip further includes:a lookup table for providing said filtered digital input symbols in response to a combination of said digital input symbols provided by said transcoding and filtering coefficients from the processor chip.
  25. 35
    A subscriber unit according to Claim 33, wherein said FIR chip further includes a ringer control means operatively associated with the control and status registers, said ringer control means permitting the processor to control a ringer circuit of the subscriber unit.
  26. 36
    A subscriber unit according to Claim 25, wherein said DIF chip includes:means coupled to the processor for accumulating phase data;and means for processing the accumulated phase data, wherein said digital intermediate frequency is synthesized, at a predetermined value, in response to the processed phase data.
  27. 37
    A subscriber unit according to Claim 36, wherein said DIF chip further includes a means for high resolution frequency adjustment of said digital intermediate frequency.
  28. 38
    A method for processing communication signals in a subscriber unit of a wireless telecommunication system wherein the subscriber unit transmits a first communication signal which carries the information contained in a first information signal to a second unit within the system, and the subscriber unit receives a second communication signal from said second unit which is processed by said subscriber unit to output a second information signal, wherein the subscriber unit is capable of communicating with said second unit over a plurality of radio frequency channels within a selected band of radio frequencies and wherein one of said channels is selected during communication between the subscriber and second units, the method comprising:generating a base radio frequency signal;generating a digital intermediate frequency signal such that the combination of the digital intermediate frequency signal with the base radio frequency signal produces a carrier signal having a frequency within the radio frequency channel which has been selected for communication whereby the first communication signal is produced based upon both said base radio frequency signals and said digital intermediate frequency signal for transmission on said selected radio frequency channel.
  29. 39
    A method according to Claim 38, further comprising accumulating phase increment data to produce digitized phase values and generating the digital intermediate frequency signal based on the digitized phase values.
  30. 40
    A method according to Claim 39, further comprising generating the digital intermediate frequency signal based on the digitized phase values by using predefined values stored in a memory device.
  31. 41
    A method according to Claim 38, further comprising transcoding the first information signal into digital input symbols;modulating the digital intermediate frequency signal with the digital input symbols to produce a modulated digital intermediate frequency signal;and combining the modulated digital intermediate frequency signal with the base radio frequency signal to produce the first communication signal.
  32. 42
    A method according to Claim 38 further comprising using the digital intermediate frequency signal to demodulate the second communication signal received from said second unit.
  33. 43
    A method according to Claim 42 further comprising filtering the digital intermediate frequency via a noise shaping circuit prior to demodulating the second communication signal which is received from said second unit.
  34. 44
    A method for processing communication signals in a subscriber unit of a wireless telecommunication system wherein the subscriber unit transcodes a first informational signal into digital input symbols and transmits a first communication signal which carries the information contained in the digital input symbols to a second unit within the system, and the subscriber unit receives a second communication signal from said second unit which is processed by said subscribed unit to output a second information signal, wherein the subscriber unit is capable of communicating with said second unit over a plurality of radio frequency channels within a selected band of radio frequencies and wherein one of said channels is selected during communication between the subscriber and second units, the method comprising:generating a base radio frequency signal;generating a digital intermediate frequency signal such that the combination of the digital intermediate frequency signal with the base radio frequency signal produces a communication signal having a frequency within the radio frequency channel which has been selected for communication;modulating the digital intermediate frequency signal with the digital input symbols to produce a modulated digital intermediate frequency signal;and combining the modulated digital intermediate frequency signal with the base radio frequency signal to produce the first communication signal.
  35. 45
    A method according to Claim 44 further comprising accumulating phase increment data to produce digitized phase values and generating the digital intermediate frequency signal based on the digitized phase values.
  36. 46
    A method according to Claim 44 further comprising using the digital intermediate frequency signal to demodulate the second communication signal received from said second unit.
  37. 47
    A method according to Claim 46 further comprising filtering the digital intermediate frequency via a noise shaping circuit prior to demodulating the second communication signal which is received from said second unit.
  38. 48
    A method according to Claim 44 further comprising generating the digital intermediate frequency signal based on the digitized phase values by using predefined values stored in a memory device.
Independent claims38