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Joint array combining and MLSE for single-user receivers in multipath Gaussian multiuser channels

机译:多径高斯多用户信道中单用户接收机的联合阵列组合和MLSE

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The well-known structure of an array combiner along with a maximum likelihood sequence estimator (MLSE) receiver is the basis for the derivation of a space-time processor presenting good properties in terms of co-channel and intersymbol interference rejection. The use of spatial diversity at the receiver front-end together with a scalar MLSE implies a joint design of the spatial combiner and the impulse response for the sequence detector. This is faced using the MMSE criterion under the constraint that the desired user signal power is not cancelled, yielding an impulse response for the sequence detector that is matched to the channel and combiner response. The procedure maximizes the signal-to-noise ratio at the input of the detector and exhibits excellent performance in realistic multipath channels.
机译:阵列组合器与最大似然序列估计器(MLSE)接收器的众所周知的结构是推导时空处理器的基础,该时空处理器在同频和符号间干扰抑制方面表现出良好的性能。与标量MLSE一起在接收器前端使用空间分集意味着对空间组合器和序列检测器的冲激响应进行了联合设计。在不消除期望的用户信号功率的约束下,使用MMSE标准来面对这一问题,从而为与信道和组合器响应相匹配的序列检测器产生脉冲响应。该过程使检测器输入端的信噪比最大,并且在现实的多径通道中表现出出色的性能。

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