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A Constellation Space Dimensionality Reduced Sub-Optimal Receiver for Orthogonal STBC CPM Modulation in a MIMO Channel

机译:MIMO信道中正交STBC CPM调制的星座空间维数减少的次优接收器

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摘要

We consider burst orthogonal space-time block coded (OSTBC) CPM modulation in a MIMO flat slow Rayleigh fading channel. The optimal receiver must process a multidimensional non-linear CPM signal on each antenna. This task imposes a high load on the receiver computational performance and increases its complexity. We analytically derive a suboptimal receiver with a reduced number of front end matched filters (MFs) corresponding to the CPM dimension. Our derivation is made fully in the constellation signal space, and the reduction is based on the linear orthogonal projection to the optimal subspace. Criterion optimality is a standard space-time rank and determinant criterion. The optimal arbitrary-dimensional subspace search leads to the eigenvector solution. We present the condition on a sufficient subspace dimension and interpret the meaning of the corresponding eigenvalues. It is shown that the determinant and rank criterion for OSTBC CPM is equivalent to the uncoded CPM Euclidean distance criterion. Hence the proposed receiver may be practical for uncoded CPM and foremost in a serially concatenated (SC) CPM system. All the derivations are supported by suitable error simulations for binary 2REC h - 1/2, but the procedure is generally valid for any CPM variant. We consider OSTBC CPM in a Rayleigh fading AWGN channel and SC CPM in an AWGN channel.
机译:我们考虑了MIMO平面慢瑞利衰落信道中的突发正交空时分组编码(OSTBC)CPM调制。最佳接收器必须在每个天线上处理多维非线性CPM信号。该任务给接收机的计算性能带来了沉重的负担,并增加了其复杂性。我们通过分析得出次优接收器,其对应于CPM尺寸的前端匹配滤波器(MF)数量减少。我们的推导完全在星座信号空间中进行,而归约基于对最佳子空间的线性正交投影。准则最优性是标准的时空等级和行列式准则。最优的任意维子空间搜索导致特征向量解。我们在足够的子空间维上给出条件,并解释相应特征值的含义。结果表明,OSTBC CPM的行列式和秩准则等同于未编码的CPM欧几里得距离准则。因此,所提出的接收器对于未编码的CPM并且最重要的是在串行级联(SC)CPM系统中是实用的。对于二进制2REC h-1/2,所有的推导都得到适当的误差仿真的支持,但是该过程通常对任何CPM变体都有效。我们在瑞利衰落AWGN信道中考虑OSTBC CPM,在AWGN信道中考虑SC CPM。

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