Performance of MUSIC and ESPRIT for Joint Estimation of DOA and Angular Spread in Slow Fading Environment(Wireless Communications Issue)
スポンサーリンク
概要
- 論文の詳細を見る
It is known that MUSIC and ESPRIT algorithms can estimate simultaneously both the instantaneous Direction of Arrival (DOA) and the instantaneous Angular Spread (AS) in multiple scattering environments. These algorithms use the Extended Array Mode Vector (EAMV) with complex angle. The previous work evaluated the performance of those algorithms by comparing the estimated DOA and the estimated AS with the DOA and the AS given in the EAMV, which uses the first-order approximation. Thus, this evaluation method has not clearly reflected the estimation accuracy of MUSIC and ESPRIT. This paper presents the joint estimation performance of MUSIC and ESPRIT by introducing the criteria for evaluation. For this, the spatial signature (SS) is reconstructed from the estimates of the DOA and the AS, and compared to the true SS in the meaning of data fitting.
- 社団法人電子情報通信学会の論文
- 2002-05-01
著者
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Araki Kiyomichi
Graduate School Of Engineering Tokyo Institute Of Technology
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Araki Kiyomichi
Tokyo Inst. Of Technol. Tokyo Jpn
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TAKADA Jun-ichi
Graduate School of Engineering, Tokyo Institute of Technology
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Takada J
Tokyo Inst. Of Technol. Tokyo Jpn
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Takada J
Graduate School Of Engineering Tokyo Institute Of Technology
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Takada J
Tokyo Inst. Technol. Tokyo Jpn
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Jeong J‐s
The Faculty Of Engineering Tokyo Institute Of Technology
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SAKAGUCHI Kei
Tokyo Institute of Technology
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Sakaguchi K
Graduate School Of Engineering Tokyo Institute Of Technology
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Sakaguchi Kei
Tokyo Inst. Of Technol. Tokyo Jpn
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Sakaguchi Kei
Department Of Electrical And Electronic Engineering Graduate School Of Science And Engineering Tokyo
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Araki Kiyomichi
the Faculty of Engineering, Saitama University
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JEONG Jung-Sik
the Faculty of Engineering, Tokyo Institute of Technology
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SAKAGUCHI Kei
the Faculty of Engineering, Tokyo Institute of Technology
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TAKADA Jun-ichi
the Faculty of Engineering, Tokyo Institute of Technology
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Araki Kiyomichi
The Faculty Of Engineering Saitama University
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Jeong Jung-sik
The Faculty Of Engineering Tokyo Institute Of Technology
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ARAKI Kiyomichi
the Tokyo Institute of Technology
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