Title :
Combining sum-difference and auxiliary beam adaptive monopulse algorithm at subarray level for anti-jamming
Author :
Zhou Bilei ; Li Rongfeng ; Dai Lingyan ; Li Hong
Author_Institution :
Key Res. Lab., Air Force Early Warning Acad., Wuhan, China
Abstract :
When a mainlobe jamming (MLJ) exists, the mainlobe of adaptive pattern will be subject to serious distortion, which results in a failure of monopulse angle estimation performance. And as we all know, phased array radar often has tens of thousands of elements. If we use general adaptive processing, it needs to place a receiving channel on each element. However, it results in much complex system, high cost of hardware and the difficulty to meet the real-time requirement. Therefore, we need adaptive dimension-reduced processing based on perfect monopulse technology. Thus, an adaptive monopulse algorithm based on combining sum-difference and auxiliary beam at subarray level for anti-jamming is presented in this paper. This new algorithm can not only suppress the MLJ and sidelobe jamming (SLJ)s while maintaining monopulse ratio undistorted, but also successfully solves the problem from phased array system to make it easy for implement in engineering.
Keywords :
adaptive signal processing; array signal processing; distortion; jamming; phased array radar; radar signal processing; MLJ; SLJ; adaptive dimension-reduced processing; adaptive pattern mainlobe; anti-jamming; mainlobe jamming; monopulse angle estimation performance; perfect monopulse technology; phased array radar; receiving channel; sidelobe jamming; subarray level; sum-difference-auxiliary beam adaptive monopulse algorithm; Abstracts; Azimuth; Indexes; Jamming; Subarray; auxiliary beam; mainlobe jamming; monopulse;
Conference_Titel :
Signal Processing (ICSP), 2014 12th International Conference on
Conference_Location :
Hangzhou
Print_ISBN :
978-1-4799-2188-1
DOI :
10.1109/ICOSP.2014.7015012