Title :
Non-coherent cooperative jammer for multi-platform applications
Author :
Hong, Seng ; Longbrake, Mark ; Saville, Michael ; Wu, Zhiqiang
Author_Institution :
Air Force Res. Lab., Wright-Patterson AFB, OH
Abstract :
Cooperative coherent systems are well-known in radar and countermeasures communities where the transmitter and receiver antennas are co-located on the same platform; hence, the radio frequency (RF) sources are synchronized and the physical separation of coherent systems is limited or confined within the same platform. To improve the effectiveness of cooperative countermeasure systems, it is highly desired to significantly increase the physical separation between cooperative elements. In this paper, we study a non-coherent cooperative RF system where the cooperative elements are located on two separate platforms without hard-line connections to them. Hence, the cooperative signal exchange among multiple cooperative elements has to be transmitted via an RF link and the non-coherent cooperative system would allow the RF source to be located on a separate platform, thus increasing the physical separation. The two cooperative elements are operated with two separate local oscillators, which leads to large non-coherency between multiple platforms.
Keywords :
oscillators; radio links; local oscillators; multiplatform applications; noncoherent cooperative jammer; radio frequency sources; receiver antennas; transmitter antennas; Frequency synchronization; Jamming; Radar antennas; Radar countermeasures; Radio communication countermeasures; Radio frequency; Radio transmitters; Receivers; Receiving antennas; Transmitting antennas; Countermeasures; Multi-platform; Radar Signal;
Conference_Titel :
Radar Conference, 2008. RADAR '08. IEEE
Conference_Location :
Rome
Print_ISBN :
978-1-4244-1538-0
Electronic_ISBN :
1097-5659
DOI :
10.1109/RADAR.2008.4720751