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Improved MUSIC Under the Coexistence of Both Circular and Noncircular Sources

机译:圆形和非圆形源并存下的改进MUSIC

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摘要

In array signal processing, the inner structure of the signals could possibly be exploited to improve the performance of the direction-of-arrival (DOA) estimations. One typical scenario has been discussed in [P. Chage, Y. Wang, and J. Saillard, “A Root-MUSIC Algorithm for Non-Circular Sources,” Proc. Int. Conf. Acoustics, Speech, Signal Processing (ICASSP), Salt Lake City, UT, May 2001, pp. 7–11], where all the incoming signals are supposed to be sent by noncircular PAM/BPSK sources. A modified MUSIC algorithm was then developed to improve the DOA estimation accuracy, as well as to increase the maximum number of detectable signals. However, it is more realistic that some users send noncircular symbols while other users still send circular symbols. In this correspondence, we develop an algorithm to cope with this more general scenario. By exploiting the redundancy existing in the noncircular signals, the proposed algorithm can still increase the maximum number of detectable signals and improve the performance accuracy compared to the conventional MUSIC algorithm. Simulation results clearly show the effectiveness of our proposed algorithm.
机译:在阵列信号处理中,可能会利用信号的内部结构来改善到达方向(DOA)估计的性能。在[P. Chage,Y。Wang和J. Saillard,“非圆形信号源的Root-MUSIC算法”,Proc.Natl.Acad.Sci.USA,88:3877-5877。诠释Conf。声学,语音,信号处理(ICASSP),犹他州盐湖城,2001年5月,第7-11页],其中所有传入信号都应由非圆形PAM / BPSK源发送。然后开发了一种改进的MUSIC算法,以提高DOA估计的准确性,并增加可检测信号的最大数量。但是,更现实的是,某些用户发送非圆形符号,而其他用户仍发送圆形符号。在这种对应关系中,我们开发了一种算法来应对这种更普遍的情况。通过利用非圆形信号中存在的冗余,与常规的MUSIC算法相比,所提出的算法仍可以增加可检测信号的最大数量并提高性能精度。仿真结果清楚地表明了我们提出的算法的有效性。

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