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首页> 外文期刊>IEEE Transactions on Information Theory >Unitary signal constellations for differential space-time modulation with two transmit antennas: parametric codes, optimal designs, and bounds
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Unitary signal constellations for differential space-time modulation with two transmit antennas: parametric codes, optimal designs, and bounds

机译:具有两个发射天线的差分时空调制的单一信号星座图:参数代码,最佳设计和边界

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摘要

We focus on the design of unitary signal constellations for differential space-time modulation with double transmit antennas. By using the parametric form of a two-by-two unitary matrix, we present a class of unitary space-time codes called parametric codes and show that this class of unitary space-time codes leads to a five-signal constellation with the largest possible diversity product and a 16-signal constellation with the largest known diversity product. Although the parametric code of size 16 is not a group by itself, we show that it is a subset of a group of order 32. Furthermore, the unitary signal constellations of sizes 32, 64, 128, and 256 obtained by taking the subsets of the parametric codes of sizes 37, 75, 135, and 273, respectively, have the largest known diversity products. We also use large diversity sum of unitary space-time signal constellations as another significant property for the signal constellations to have good performance in low-SNR scenarios. The newly introduced unitary space-time codes can lead to signal constellations with sizes of 5 and 9 through 16 that have the largest possible diversity sums. Subsequently, we construct a few sporadic unitary signal constellations with the largest possible diversity product or diversity sum. A four-signal constellation which has both the largest possible diversity product and the largest possible diversity sum and three unitary signal constellations with the largest possible diversity sums for sizes of 6, 7, and 8 are constructed, respectively. Furthermore, by making use of the existing results in sphere packing and spherical codes, we provide several upper and lower bounds on the largest possible diversity product and the largest possible diversity sum that unitary signal constellations of any size can achieve.
机译:我们专注于双发射天线差分时空调制的单一信号星座图的设计。通过使用二乘二unit矩阵的参数形式,我们提出了一类称为参数代码的space时空代码,并表明此类class时空代码会导致具有最大可能的五信号星座图分集乘积和已知最大分集乘积的16信号星座图。尽管大小为16的参数代码本身不是一个组,但我们证明它是32阶一组的子集。此外,通过获取子集的大小获得的大小为32、64、128和256的unit信号星座图大小分别为37、75、135和273的参数代码具有最大的已知分集乘积。我们还使用large时空信号星座图的大分集总和作为信号星座图在低SNR情况下具有良好性能的另一个重要属性。新引入的unit时空码可以导致信号星座图的大小在5和9到16之间,并且可能具有最大的分集和。随后,我们构造了一些具有最大可能的分集乘积或分集和的零星单一信号星座。分别构造了具有最大可能的分集乘积和最大可能的分集和的四信号星座图,以及三个具有最大可能的分集和值分别为6、7和8的unit信号星座图。此外,通过利用球面压缩和球面编码中的现有结果,我们为最大可能的分集乘积和最大可能的分集和提供了任何大小的单一信号星座图可以达到的几个上限和下限。

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