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首页> 外文期刊>IEEE transactions on wireless communications >An optimization approach to decision feedback detection under modulation constraints for MIMO fading channels
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An optimization approach to decision feedback detection under modulation constraints for MIMO fading channels

机译:MIMO衰落信道调制约束下决策反馈检测的优化方法

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A new technique is proposed for designing decision feedback detectors (DFDs) wherein the per-symbol decision rules are obtained by exploiting modulation constraints. It is presented in the context of the multi-input, multi-output (MIMO) fading channel with K transmit and N receive antennas. Three cases are considered to illustrate the technique where all the transmitters employ real-valued pulse-amplitude modulation (PAM), or phaseshift keying (PSK), or complex quadrature amplitude modulation (QAM). In each case, the corresponding per-symbol decision rules are obtained by imposing the modulation constraints on a likelihood function maximization problem. When all transmitters employ PAM, it is shown that the resulting DFD (the PAM-DFD) is equivalent to the decorrelating decision feedback detector (DDFD) when the latter is used on a modified received statistic. Two DFDs are then derived (the PSK-DFDs and the QAMDFDs) for the cases when all transmitters employ PSK and QAM, respectively. To illustrate the performance benefit, we consider the Rayleigh fading channel and derive the exact joint error probability (JEP) of the PAM-DFD and show that the (possibly fractional) diversity order of the JEP is equal to N ?? K??1 2 . This greatly improves on the diversity order of N ?? K + 1 of the JEP obtained by the D-DFD without exploiting the real modulation constraint. Through simulations, it is shown that the PSK-DFDs and the QAM-DFDs result in significant performance improvements over the D-DFD as well. It is conjectured that one of the PSK-DFD achieves the improved diversity order of N ?? K??1 2 as well and the QAM-DFDs result in an improvement in effective SNR gain.
机译:提出了一种用于设计决策反馈检测器(DFD)的新技术,其中通过利用调制约束条件来获得每个符号的决策规则。它是在具有K个发射天线和N个接收天线的多输入多输出(MIMO)衰落信道的上下文中提出的。考虑了三种情况来说明该技术,其中所有发射机都使用实值脉冲幅度调制(PAM),相移键控(PSK)或复正交幅度调制(QAM)。在每种情况下,通过将调制约束强加在似然函数最大化问题上,可获得相应的每个符号决策规则。当所有发射机都使用PAM时,表明当将去相关决策反馈检测器用于修改后的接收统计数据时,所得的DFD(PAM-DFD)等效于去相关决策反馈检测器(DDFD)。然后针对所有发射机分别采用PSK和QAM的情况得出两个DFD(PSK-DFD和QAMDFD)。为了说明性能优势,我们考虑了瑞利衰落信道,并得出了PAM-DFD的精确联合误差概率(JEP),并证明了JEP的(可能是分数)分集阶数等于N? K ?? 1 2。这大大提高了N ??的分集阶数。 D-DFD获得的JEP的K +1,而没有利用实际的调制约束。通过仿真显示,PSK-DFD和QAM-DFD也会比D-DFD带来显着的性能提升。据推测,PSK-DFD之一实现了N ??的改进分集阶。同样,K 12 = 1 2和QAM-DFD导致有效SNR增益的提高。

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