Claims
- 1. A multiple access signal communication system, comprising the combination of:
- means for generating an RF signal modulated with a communication signal;
- first antenna means, coupled to said RF signal generating means, for generating a first substantially omnidirectional antenna beam pattern;
- second antenna means, coupled to said RF signal generating means, for generating a second substantially omnidirectional antenna beam pattern having a single notch of narrow angular beamwidth;
- said first and second antenna means for generating beam patterns which interact to generate a composite antenna beam pattern of a relatively narrow angular beamwidth;
- at least two receiver means for receiving said RF signal; and
- means for selectively directing said single notch toward one of said at least two receiver means.
- 2. The combination of claim 1 wherein said notch comprises a beam pattern null.
- 3. The combination of claim 2 and additionally including means for adjusting the amplitude of said RF signal coupled between said RF signal generating means and said first and second antenna means.
- 4. The combination of claim 2 and additionally including means for adjusting the phase of said RF signal coupled between said RF signal generating means and at least one of said first and second antenna means for providing a mutual 180.degree. phase difference of RF signal coupled to said first and second antenna means.
- 5. The combination of claim 2 and additionally including means for adjusting the amplitude and phase of said RF signal coupled between said means for generating an RF signal and at least one of said first and second antenna means.
- 6. The combination of claim 5 wherein said means for adjusting the amplitude and phase includes means for inverting the phase of said RF signal coupled to one of said antenna means relative to said RF signal power coupled to the other of antenna means whereby cancellation of the radiated power results in substantially all directions of space except in the region of beam pattern null.
- 7. The combination of claim 6 wherein said means for coupling substantially equal amplitudes of RF signal includes a power divider circuit.
- 8. The combination of claim 5 wherein said means for adjusting the amplitude and phase includes means for coupling substantially equal amplitudes of said RF signal from said means for generating an RF signal and said first and second antenna means.
- 9. The combination of claim 8 and wherein said means for adjusting the amplitude and phase additionally includes means for varying the phase of the power coupled to one of said antenna means by substantially 180.degree. relative to the phase of the power coupled to the other said antenna means.
- 10. A method of transmitting electromagnetic radiation in a multiple access signal communications system, comprising the steps of:
- generating an RF signal modulated with a communication signal; p1 coupling said RF signal to first antenna means and generating a first substantially omnidirectional antenna beam pattern;
- coupling said RF signal to second antenna means and generating a second substantially omnidirectional antenna beam pattern having a signal notch of narrow angular beamwidth;
- generating a composite antenna beam pattern of a relatively narrow angular beamwidth from said first and second beam patterns
- directing said single notch toward one of at least two spaced receivers; and
- receiving said RF signal with one of said at least two spaced receivers.
- 11. The method of claim 10 wherein said notch comprises a beam pattern null.
- 12. The method of claim 11 and additionally including the step of adjusting the amplitude of said RF signal coupled to said first and second antenna means.
- 13. The method of claim 11 and additionally including the step of adjusting the phase of said RF signal coupled to at least one of said antenna means for providing a 180.degree. phase shift of said RF signal coupled to said one antenna.
- 14. The method of claim 11 and additionally including the step of adjusting the amplitude and phase of said RF signal coupled to at least one of said first and second antenna means.
- 15. The method of claim 14 wherein said step of adjusting the amplitude and phase further includes inverting the phase of said RF signal coupled to one of said antenna means relative to said RF signal power coupled to the other antenna of said antenna means whereby cancellation of radiated power results in substantially all directions of space except in the region of said beam pattern null.
- 16. The method of claim 14 wherein said step of adjusting the amplitude and phase further includes coupling substantially equal amplitudes of said RF signal to said first and second antenna means.
- 17. The method of claim 16 and wherein said step of adjusting the amplitude and phase further includes varying the phase of the power coupled to one of said antenna means by substantially 180.degree. relative to the phase of the power coupled to the other said antenna means.
- 18. The combination of claim 1 wherein said notch comprises a relatively steep slope beam pattern null whereby said beam pattern null is of substantially equal amplitude over said notch.
Government Interests
The invention described herein may be manufactured, used and licensed by or for the Government for governmental purposes without the payment to me of any royalties thereon or therefor.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4173748 |
Lewandowski |
Nov 1979 |
|
4275397 |
Gutleber |
Jun 1981 |
|
4450448 |
Albanese et al. |
May 1984 |
|
Foreign Referenced Citations (1)
Number |
Date |
Country |
1129086 |
Aug 1982 |
CAX |