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首页> 外文期刊>IEEE Transactions on Information Theory >Unitary Space;Time Constellation Design Based on the Chernoff Bound of the Pairwise Error Probability
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Unitary Space;Time Constellation Design Based on the Chernoff Bound of the Pairwise Error Probability

机译:基于成对误差概率的切尔诺夫界的空间时间星座设计

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摘要

Unitary space-time constellation design is considered for noncoherent multiple-antenna communications, where neither the transmitter nor the receiver knows the fading coefficients of the channel. By employing the Clarke''s subdifferential theorem of the sum of the kappa largest singular values of a unitary matrix, we present a numerical optimization procedure for finding unitary space-time signal constellations of any dimension. The Chernoff bound of the pairwise error probability is used directly as a design criterion. The constellations are found by performing gradient descent search on a family ldquosurrogaterdquo functions that converge to the maximum pairwise error probability. The complexity of the search procedure increases with the dimension and the size of the constellation, but it can be considered to be acceptable for an off-line design procedure. Since the designed constellations are unstructured, and, thus, require an exhaustive search over all codewords in decoding, their main practical value is to serve as constellation design performance benchmarks. We compare the performance of the new constellations to that of some other well-known constellations. Computer simulation results illustrate typically about 0.4-3.5 dB performance gains.
机译:对于非相干多天线通信,考虑了统一的空时星座设计,在这种情况下,发射机和接收机都不知道信道的衰落系数。通过采用the矩阵的kappa最大奇异值之和的Clarke次微分定理,我们提出了一种数值优化程序,用于查找任何维数的unit时空信号星座。成对错误概率的切尔诺夫边界直接用作设计标准。通过对收敛到最大成对误差概率的“代代相乘”族函数执行梯度下降搜索,可以找到星座图。搜索过程的复杂性随星座图的尺寸和大小而增加,但是对于离线设计过程而言,可以认为这是可以接受的。由于所设计的星座图是非结构化的,因此需要在解码中对所有码字进行详尽搜索,因此它们的主要实用价值是用作星座图设计性能基准。我们将新星座与其他一些知名星座的性能进行比较。计算机仿真结果通常显示出约0.4-3.5 dB的性能增益。

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