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首页> 外文期刊>Signal Processing, IEEE Transactions on >Widely Linear versus Conventional Subspace-Based Estimation of SIMO Flat-Fading Channels: Mean Squared Error Analysis
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Widely Linear versus Conventional Subspace-Based Estimation of SIMO Flat-Fading Channels: Mean Squared Error Analysis

机译:SIMO渐隐通道的宽线性与常规基于子空间的估计:均方误差分析

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摘要

We analyze the mean squared error (MSE) performance of widely linear (WL) and conventional subspace-based channel estimation for single-input multiple-output (SIMO) flat-fading channels employing binary phase-shift-keying (BPSK) modulation when the covariance matrix is estimated using a finite number of samples. The conventional estimator suffers from a phase ambiguity that reduces to a sign ambiguity for the WL estimator. We derive accurate closed-form expressions for the MSE of the two estimators under four ambiguity resolution scenarios. In the first three scenarios, the receiver resolves the ambiguity using some clairvoyant knowledge about the channel. The first scenario, used as a reference, is the ideal case of optimal resolution. The second scenario assumes that one of the channel coefficients is known and the third assumes knowledge of the coefficient with the largest magnitude. The fourth scenario considers the more realistic case where pilot symbols are employed for ambiguity resolution. Our work demonstrates that there is a strong relationship between the accuracy of ambiguity resolution and the relative performance of WL and conventional subspace-based estimators, showing that the WL estimator performs better when partial or inaccurate channel information is employed for ambiguity resolution.
机译:我们分析了采用线性相移键控(BPSK)调制的单输入多输出(SIMO)平衰落信道的宽线性(WL)和常规基于子空间的信道估计的均方误差(MSE)性能。使用有限数量的样本估计协方差矩阵。常规估计器的相位模糊度降低到WL估计器的符号模糊度。在四个歧义解决方案下,我们得出了两个估计量的MSE的精确封闭式表达式。在前三个场景中,接收器使用一些有关通道的透视知识来解决歧义。作为参考的第一种情况是最佳分辨率的理想情况。第二种情况假定信道系数之一是已知的,第三种情况假定知道幅度最大的系数。第四种情况考虑了更现实的情况,其中采用导频符号进行歧义解决。我们的工作表明,歧义分辨率的准确性与WL和传统的基于子空间的估计器的相对性能之间存在很强的关系,表明当采用部分或不准确的信道信息进行歧义解决时,WL估计器的性能更好。

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