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Single-RF Index Shift Keying Aided Differential Space-Time Block Coding

机译:单射频折频位移键控辅助差分空时分块编码

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摘要

We propose a new single-RF differential space-time block coding using index shift keying (DSTBC-ISK), which is the first differential space-time modulation (DSTM) scheme that can simultaneously achieve the following three imperative objectives: First, forming a finite-cardinality transmit-signals set; second, retaining a single-stream maximum-likelihood (ML) detection complexity; and third, offering a beneficial transmit diversity gain. In order to make a fair comparison, we also conceive a low-complexity single-stream detector for DSM. Furthermore, in order to improve the performance of finite-cardinality DSTM schemes at higher throughputs, we propose to generalize both differential amplitude shift keying (DASK) and amplitude shift keying (ASK), which subsume the existing two-/four-level-ring star quadratic-amplitude modulation (QAM) solutions as special cases. As a result of using star QAM signaling, the power of the DSTM's signal matrix becomes variable. Against this background, we further develop bespoke ML, minimum mean squared error, and least-square detectors for DSTM using DASK/ASK. Our simulation results demonstrate that the proposed DSTBC-ISK is capable of achieving substantial diversity gains over DSM without eroding its low transceiver complexity.
机译:我们提出了一种新的基于索引移位键控的单射频差分空时块编码(DSTBC-ISK),这是第一个可以同时实现以下三个必要目标的差分空时调制(DSTM)方案:第一,形成有限基数发射信号集;第二,保持单流最大似然(ML)检测复杂度;第三,提供有益的传输分集增益。为了进行公平的比较,我们还为DSM构思了一种低复杂度的单流检测器。此外,为了提高有限基数DSTM方案在更高吞吐量下的性能,我们建议将差分幅移键控(DASK)和幅移键控(ASK)都推广起来,将现有的两级/四级环形星形二次振幅调制(QAM)解决方案作为特例。由于使用星型QAM信令,DSTM信号矩阵的功率变得可变。在此背景下,我们进一步开发了使用 DASK/ASK 用于 DSTM 的定制 ML、最小均方误差和最小二乘检测器。我们的仿真结果表明,所提出的DSTBC-ISK能够在不降低其低收发复杂度的情况下实现比DSM更大的分集增益。

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