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Space-Time Mapping for Equiprobable Antenna Activation in Spatial Modulation

机译:空间调制中设备时空映射的等空天线激活

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Spatial modulation (SM) conveys additional information bits via the index of an activated transmit antenna. When the number of antennas is not an integer power of two, the antenna activation becomes challenging. In such a case, only a subset of the available transmit antennas whose cardinality is an integer power of two is used. This leads to antenna activation with unequal probability, which causes high error rates and losses in the spectral efficiency. The same limitations and performance losses equally exist in quadrature spatial modulation (QSM) and generalized spatial modulation (GSM), the two prominent variants of SM. In this contribution, in contrast to the conventional approach of antenna activation within each symbol period, a space-time bit-mapping method in which the antenna selection procedure is extended to multiple symbol periods is proposed. Use of the proposed method in SM, QSM, and GSM techniques, is shown to achieve performances close to their full potential for any given number of transmit antennas, with only a marginal increment in detection complexity.
机译:空间调制(SM)通过激活的发射天线的索引传达附加信息比特。当天线的数量不是两个的整数功率时,天线激活变得具有挑战性。在这种情况下,使用其基数是其基数的可用发射天线的子集。这导致天线激活具有不等的概率,这导致频谱效率的高误差率和损耗。相同的局限性和性能损失同样存在于正交空间调制(QSM)和广义空间调制(GSM)中,这两个突出的SM突出变种。在这种贡献中,与每个符号周期内的天线激活的传统方法相反,提出了一种时空比特映射方法,其中天线选择过程扩展到多个符号周期。在SM,QSM和GSM技术中使用所提出的方法,示出了实现接近任何给定数量的发射天线的潜力的性能,仅在检测复杂度的边际增量。

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