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A Rate-1 Space-Time Diversity Method for Rotated 4-QAM Constellations

机译:旋转4-QAM星座的Rate-1空时分集方法

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摘要

We propose a rate-1 space-time transmit diversity technique. We obtained second-order diversity by transmitting the real and imaginary parts of the symbols from two antennas. With four transmit antennas, we can add Alamouti coding to reach fourth-order transmit diversity. There is no need to detect symbols jointly in either of these applications. It is possible to use both Alamouti coding and Hadamard spreading diversity with the proposed method, thereby obtaining eighth-order (or even higher) transmit diversity. However, joint detection of the symbols is again required at this point. The proposed technique is a suitable space-frequency coding method for OFDM systems. We used computer simulations to compare our technique with the Alamouti coding, quasi-orthogonal space-time block coding (QOSTBC), and orthogonal space–time block coding (OSTBC) methods. We also compared its performance to that of Hadamard spreading diversity. Alamouti coding performs better than the proposed technique at the second order of transmit diversity, but is also limited to that order. The proposed technique performs better than OSTBC at the same order of the transmit diversity. QOSTBC performs slightly better than the proposed technique at the same order of transmit diversity. However, when all methods have the same detection complexity, the proposed technique performs better than both QOSTBC and Hadamard spreading diversity.
机译:我们提出了一种速率为1的时空发射分集技术。通过从两个天线发射符号的实部和虚部,我们获得了二阶分集。使用四个发射天线,我们可以添加Alamouti编码以达到四阶发射分集。在这两种应用程序中,都不需要共同检测符号。通过提出的方法可以同时使用Alamouti编码和Hadamard扩频分集,从而获得八阶(甚至更高)的发射分集。但是,此时再次需要对符号进行联合检测。所提出的技术是一种适合于OFDM系统的空频编码方法。我们使用计算机模拟将我们的技术与Alamouti编码,准正交时空块编码(QOSTBC)和正交时空块编码(OSTBC)方法进行了比较。我们还将其性能与Hadamard传播多样性的性能进行了比较。在发射分集的第二阶上,Alamouti编码的性能比所提​​出的技术要好,但也仅限于该阶。所提出的技术在相同的发射分集下性能优于OSTBC。在相同的传输分集顺序下,QOSTBC的性能比拟议的技术稍好。但是,当所有方法都具有相同的检测复杂度时,所提出的技术的性能要优于QOSTBC和Hadamard扩频分集。

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