Claims
- 1. A receiver for modulated bandspread carrier signals comprising, in combination:
- an antenna for intercepting a plurality of modulated carrier signals bandspread at a first clock rate;
- a radio frequency section in communication with said antenna for selecting a received signal from said plurality of signals;
- an intermediate frequency section in communication with said radio frequency section for converting said received signal to an intermediate frequency signal;
- digitizing means connected to said intermediate frequency section for digitizing said intermediate frequency signal, for digitizing means includes means for linearly dividing the amplitude range of said intermediate frequency signal into a number of subranges and for assigning consecutive digital numbers to said subranges;
- first multiplication means connected to said digitizing means for demodulating said digitized signal with a pseudorandom code stored in a first memory of said receiver;
- register means for adding successive products provided by said first multiplication means;
- means for operating on the output of said register means to provide in-phase (I) and quadrature (Q) signals, including
- second multiplication means adapted to multiply said sum stored in said register by a first signal from a first clock pulse generator,
- first summing means for summing the output of said second multiplication means, the output of said first summing means having the form:
- I=-Z(O)+2Z(pi)-Z(2pi),
- third multiplication means adapted to multiply said sum stored in said register by a second signal from said first clock pulse generator, said first signal being offset from said second signal from said first clock pulse generator by a predetermined phase shift of pi/2, and
- second summing means for summing the output of said third multiplication means, the output of said second summing means having the form:
- Q=-Z(O)+2Z(pi/2)-2Z(3pi/2)+Z(2pi);
- and
- control means for utilizing said I and Q signals to control the timing of the multiplication of said digitized signal with the pseudo-random code stored in said first memory.
- 2. The receiver of claim 1 wherein said number of subranges is 16.
- 3. The receiver of claim 1 wherein said register means includes an adder for summing the numerical values resulting from said demodulation at successive time intervals.
- 4. The receiver of claim 3 wherein said register means includes a register for storing the sums provided by said adder at successive time intervals.
- 5. The receiver of claim 3 wherein the rate of additions is approximately twice as high as said first clock rate.
- 6. The receiver of claim 1 wherein said means for providing I and Q signals further includes first and second summing means for summing the outputs of said second and third multiplication means respectively.
- 7. The receiver of claim 1 wherein said means for providing I and Q signals further includes fourth multiplication means for multiplying the outputs of said first and second summing means.
- 8. The receiver of claim 7 wherein said means for providing I and Q signals further includes first low pass filter means for providing the filtered output of said fourth multiplication means to said first clock pulse generator to synchronize the output of said clock pulse generator with the phase and frequency of said carrier signal.
- 9. The receiver of claim 8 further including first and second circuits for squaring the outputs of said first and second summing circuits respectively.
- 10. The receiver of claim 9 further including means for providing to said control means, signals representing sums and differences of successive outputs of said first and second squaring circuits.
- 11. The receiver of claim 10 wherein said control means includes means for controlling the rate and phase of clock pulses provided by a second clock pulse generator to said first memory.
- 12. The receiver of claim 1 wherein said receiver is used in a Global Positioning System and said modulated carrier signals include P-code data.
- 13. A method of receiving bandspread carrier signals, said method comprising the steps of:
- (a) intercepting a plurality of signals;
- (b) selecting a received signal from said plurality of signals;
- (c) converting said received signal to an intermediate frequency signal;
- (d) digitizing said intermediate frequency signal by linearly dividing the amplitude range of said intermediate frequency signal into more than two subranges and assigning consecutive digital numbers to said subranges;
- (e) demodulating said digitized signal with a pseudo-random code for providing a modulated carrier signal;
- (f) summing and storing successive samples of said modulated carrier signal at successive time intervals to provide a stored sum;
- (g) generating I and Q component signals from said stored sample of the form:
- I=-Z(O)+2Z(pi)-Z(2pi)
- and
- Q=-Z(O)+2Z(pi/2)-2Z(3pi/2)+Z(2pi);
- and
- (h) utilizing said I and Q signals to control the rate and timing of the modulation of said digitized signal with said pseudo-random code.
Priority Claims (1)
Number |
Date |
Country |
Kind |
3601576 |
Jan 1986 |
DEX |
|
REFERENCE TO RELATED APPLICATION
This is a continuation-in-part of my co-pending U.S. applications Ser. No. 758,191, filed on July 23, 1985 now U.S. Pat. No. 4,672,629 and Ser. No. 929,935, filed on Nov. 12, 1986, now U.S. Pat. No. 719,469, which are respectively entitled "Receiver for Bandspread Signals" and "Direction-Determining System."
US Referenced Citations (12)
Foreign Referenced Citations (1)
Number |
Date |
Country |
55-117977 |
Sep 1980 |
JPX |
Non-Patent Literature Citations (3)
Entry |
A. C. Davies et al., "Synchronisation of a Spread-Spectrum Receiver by a Microprocessor-Control System", Conf. Proc. on Microprocessors in Automation and Communications, Canterbury, Sep. 19-22, 1978, pp. 449-455. |
A. Baier, "A Low-Cost Digital Matched Filter for Arbitrary Constant-Envelope Spread-Spectreum Waveforms", IEEE Trans. Communications, Apr. 84, pp. 354-361. |
Schriftenreih Universitarer Studiengang Vermessungswesen, Universitat der Bundeswehr Munchen, Oct., 1985, No. 20-1. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
758191 |
Jul 1985 |
|