Патент США № | 7304607 |
---|---|
Автор(ы) | Miyamoto и др. |
Дата выдачи | 04 декабря 2007 г. |
A high-directivity transponder system uses a dual system of a retrodirective array transmitting a data signal peak toward an interrogator source, and a self-null-steering array transmitting a null toward the interrogator source and a jamming signal elsewhere, resulting in high S/N reception at the interrogator source and avoidance of interception. Integrating modulators would allow each array to transmit different data while the spectra of the transmitted signals are identical, thus disabling interception. The system enables secure point-to-point communications and can be used for short-distance wireless data transmission systems such as wireless LAN and RFID servers. One mobile may send a broadcast interrogator signal, causing the other mobile devices to send a reply signal back to the interrogating mobile device only in the direction of the interrogating mobile device, such that each of the other mobile devices identifies its position to only the interrogating mobile device in response to its broadcast interrogator signal. As another aspect, self-steering signal transmission is employed for randomly oriented satellites using circularly polarized, two-dimensional retrodirective arrays. Quadruple subharmonic mixing is used as an effective means of achieving phase conjugation when a high-frequency LO is not feasible or inapplicable. These features may be used for small-satellite communications, secure tactical communications, search and rescue, enemy location fixing and tracking, UAV command and control, forest fire detection, marine-based tracking, and many other applications requiring secure communications with high signal directivity.
Авторы: | Ryan Y. Miyamoto (Honolulu, HI), Wayne A. Shiroma (Kaneohe, HI), Grant S. Shiroma (Hilo, HI), Blaine T. Murakami (Mililani, HI), Aaron Ohta (Honolulu, HI), Michael Tamamoto (Mililani, HI) |
---|---|
Заявитель: | University of Hawai'i (Honolulu, HI) |
ID семейства патентов | 34222349 |
Номер заявки: | 11/296,240 |
Дата регистрации: | 06 декабря 2005 г. |
Document Identifier | Publication Date | |
---|---|---|
US 20060238414 A1 | Oct 26, 2006 | |
Application Number | Filing Date | Patent Number | Issue Date | ||
---|---|---|---|---|---|
10911928 | Aug 4, 2004 | 7006039 | |||
60579035 | Jun 10, 2004 | ||||
60506316 | Sep 25, 2003 | ||||
60493191 | Aug 5, 2003 | ||||
Класс патентной классификации США: | 342/370; 342/367; 342/351; 455/1; 342/15 |
Класс совместной патентной классификации: | H01Q 3/2652 (20130101); H04K 3/825 (20130101); H04K 3/28 (20130101); H04K 3/224 (20130101); H01Q 1/288 (20130101); H01Q 1/22 (20130101); Y02A 40/298 (20180101); H04K 2203/14 (20130101); H04K 3/92 (20130101); H04K 2203/18 (20130101); H04K 2203/22 (20130101); Y02A 40/28 (20180101); H04K 2203/32 (20130101); H04K 3/43 (20130101) |
Класс международной патентной классификации (МПК): | H01Q 1/00 (20060101); G01S 3/02 (20060101); G01S 7/36 (20060101); H04K 3/00 (20060101) |
Область поиска: | ;342/370,15,351,367 ;455/1 |
3394374 | July 1968 | Weiss |
3611381 | October 1971 | Prelschaf |
3731313 | May 1973 | Nagal |
4107609 | August 1978 | Gruenberg |
4246585 | January 1981 | Mailloux |
4641259 | February 1987 | Shan |
4849764 | July 1989 | van Heyningen |
5781845 | July 1998 | Dybdal |
6480522 | November 2002 | Hoole |
2003/0086366 | May 2003 | Branlund |
2003/0123384 | July 2003 | Agee |
2003/0231700 | December 2003 | Alamouti |
2004/0095907 | May 2004 | Agee et al. |
Y-B. Ko et al., Medium access control protocols using directional antennas in ad hoc networks, Proceedings of the IEEE Joint Conference of the IEEE Computer and Communications Societies, vol. 1, p. 13-21, Mar. 2000. cited by examiner . M. Sanchez et al., CSMA/CA with Beam Forming Antennas in Multi-hop Packet Radio, Swedish Workshop on Wireless Ad-hoc Networks, Mar. 2001. cited by examiner . "Retrodirective Arrays for Wireless Communications", by R. Miyamoto, T. Itoh, IEEE Microwave Magazine, pp. 71-79, Mar. 2002. cited by other . "Retrodirective Array Using the Heterodyne Technique", by C. Pon, IEEE Transactions on Antennas and Propagation, pp. 176-180, Mar. 1964. cited by other . "Fully MMIC 76 GHz Radar for ACC", by H. Kuroda et al, Conference Proc. 2000 IEEE Intelligent Transportation Systems, pp. 299-304, Oct. 2000. cited by other . "Multiple Emitter Location and Signal Parameter Estimation", by R. Schmidt, IEEE Transactions on Antennas and Propagation, vol. AP-34, No. 3, Mar. 1986, pp. 276-280. cited by other . B.T. Murakami et al., Self-Steering Antenna Arrays for Distributed Picosatellite Networks, 17.sup.th Annueal AIAA/USU Conference on Small Satellites, p. 1-5, Aug. 2003. cited by other . W.A. Shiroma et al., Progress in retrodirective arrays for wireless communications, IEEE Topical Conference on Wireless Communication Technology, p. 80-81, Oct. 2003. cited by other . S.S. Sung et al., Retrodirective antenna technology for CubeSat networks, IEEE Topical Conference on Wireless Communication Technology, p. 220-221, Oct. 2003. cited by other . R.Y. Miyamoto et al., A high-directivity transponder using self-steering arrays, IEEE MTT-S International Microwave Symposium Digest, vol. 3, p. 1683-1686, Jun. 2004. cited by other . B.T. Murakami et al., A quadruple subharmonic phase-conjugating array for secure picosatellite crosslinks, IEEE MTT-S International Microwave Symposium Digest, vol. 3, p. 1687-1690, Jun. 2004. cited by other. |