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Direction finding of coexisted independent and coherent signals using electromagnetic vector sensor 被引量:3

Direction finding of coexisted independent and coherent signals using electromagnetic vector sensor
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摘要 The existing direction of arrival (DOA) estimation algorithms based on the electromagnetic vector sensors array barely deal with the coexisting of independent and coherent signals. A two-dimensional direction finding method using an L-shape electromagnetic vector sensors array is proposed. According to this method, the DOAs of the independent signals and the coherent signals are estimated separately, so that the array aperture can be exploited sufficiently. Firstly, the DOAs of the independent signals are estimated by the estimation of signal parameters via rotational invariance techniques, and the influence of the co- herent signals can be eliminated by utilizing the property of the coherent signals. Then the data covariance matrix containing the information of the coherent signals only is obtained by exploiting the Toeplitz property of the independent signals, and an improved polarimetric angular smoothing technique is proposed to de-correlate the coherent signals. This new method is more practical in actual signal environment than common DOA estimation algorithms and can expand the array aperture. Simulation results are presented to show the estimating performance of the proposed method. The existing direction of arrival (DOA) estimation algorithms based on the electromagnetic vector sensors array barely deal with the coexisting of independent and coherent signals. A two-dimensional direction finding method using an L-shape electromagnetic vector sensors array is proposed. According to this method, the DOAs of the independent signals and the coherent signals are estimated separately, so that the array aperture can be exploited sufficiently. Firstly, the DOAs of the independent signals are estimated by the estimation of signal parameters via rotational invariance techniques, and the influence of the co- herent signals can be eliminated by utilizing the property of the coherent signals. Then the data covariance matrix containing the information of the coherent signals only is obtained by exploiting the Toeplitz property of the independent signals, and an improved polarimetric angular smoothing technique is proposed to de-correlate the coherent signals. This new method is more practical in actual signal environment than common DOA estimation algorithms and can expand the array aperture. Simulation results are presented to show the estimating performance of the proposed method.
出处 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2012年第4期481-487,共7页 系统工程与电子技术(英文版)
基金 supported by the National Natural Science Foundation of China (61102106) the Fundamental Research Funds for the Central Universities (HEUCF1208 HEUCF100801)
关键词 direction finding electromagnetic vector sensor polarimetric angular smoothing estimation of signal parameters viarotational invariance technique Toeplitz property. direction finding, electromagnetic vector sensor, polarimetric angular smoothing, estimation of signal parameters viarotational invariance technique, Toeplitz property.
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