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MAP Receiver with Spatial Filters for Suppressing Cochannel Interference in MIMO-OFDM Mobile Communications

机译:带有空间滤波器的MAP接收器,用于抑制MIMO-OFDM移动通信中的同信道干扰

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This paper proposes joint maximum a posteriori (MAP) detection and spatial filtering for MIMO-OFDM mobile communications; it offers excellent receiver performance even over interference-limited channels. The proposed joint processor consists of a log likelihood generator and a MAP equalizer. The log likelihood generator suppresses cochannel interference by spatially filtering received signals and provides branch metrics of transmitted signal candidates. Using the branch metrics, the MAP equalizer generates log likelihood ratios of coded bits and performs channel decoding based on the MAP criterion. In the first stage, the log likelihood generator performs spatio-temporal filtering (STF) of the received signals prior to the fast Fourier transform (FFT) and is referred to as preFFT-type STF. Estimation of parameters including tap coefficients of the spatio-temporal filters and equivalent channel impulse responses of desired signals is based on the eigenvalue decomposition of an autocorrelation matrix of both the received and transmitted signals. For further improvement, in the second stage, the generator performs spatial filtering (SF) of the FFT output and is referred to as postFFT-type SF. Estimation of both tap coefficients of the spatial filters and channel impulse responses employs the recursive least squares (RLS) with smoothing. The reason for switching from preFFT-type STF into postFFT-type SF is that preFFT-type STF outperforms postFFT-type SF with a limited number of preamble symbols while postFFT-type SF outperforms preFFT-type STF when data symbols can be reliably detected and used for the parameter estimation. Note that there are two major differences between the proposed and conventional schemes: one is that the proposed scheme performs the two-stage processing of preFFT-type STF and postFFT-type SF, while the other is that the smoothing algorithm is applied to the parameter estimation of the proposed scheme. Computer simulations demonstrate that the proposed scheme can achieve excellent PER performance under interference-limited channel conditions and that it can outperform the conventional joint processing of preFFT-type STF and the MAP equalizer.
机译:本文提出了MIMO-OFDM移动通信的联合最大后验(MAP)检测和空间滤波。即使在受干扰限制的信道上,它也能提供出色的接收器性能。拟议的联合处理器由对数似然发生器和MAP均衡器组成。对数似然发生器通过对接收信号进行空间滤波来抑制同信道干扰,并提供候选发射信号的分支度量。使用分支度量,MAP均衡器生成编码比特的对数似然比,并根据MAP准则执行信道解码。在第一阶段,对数似然发生器在快速傅立叶变换(FFT)之前对接收到的信号执行时空滤波(STF),被称为preFFT型STF。包括时空滤波器的抽头系数和期望信号的等效信道冲激响应在内的参数的估计是基于接收和发送信号的自相关矩阵的特征值分解。为了进一步改进,在第二阶段中,生成器对FFT输出执行空间滤波(SF),称为后FFT型SF。对空间滤波器的抽头系数和信道脉冲响应的估计都采用具有平滑性的递归最小二乘(RLS)。从preFFT类型的STF切换到postFFT类型的SF的原因是,在可以可靠地检测到数据符号的情况下,preFFT类型的STF在数量有限的前同步码符号方面胜过postFFT类型的SF,而postFFT类型的SF则胜过preFFT类型的STF。用于参数估计。请注意,所提出的方案与常规方案之​​间存在两个主要区别:一个是所提出的方案执行preFFT型STF和postFFT型SF的两阶段处理,而另一个是将平滑算法应用于参数对拟议方案的估计。计算机仿真表明,该方案可以在干扰受限的信道条件下实现出色的PER性能,并且可以胜过preFFT型STF和MAP均衡器的常规联合处理。

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