Spatial Pre-Coding with Phase Flipping for Wireless Communications

S. Kaiser
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引用次数: 6

Abstract

The performance of spatial pre-coding schemes depends on the amount of channel state information available at the transmitter. A novel approach is spatial pre-coding with phase flipping investigated in this paper. The scheme is referred to as spatial phase coding (SPQ). Two flipping criteria, the angle criterion (AC) and the absolute value criterion (AVC), are proposed which change the phase relation of the signals between multiple transmit antennas such that the probability of constructive superposition of the signals at the receiver antenna is increased. Compared to known pre-coding schemes, SPC AVC does not need knowledge about the channel from each transmit antenna for pre-coding. Instead, it requires only information about the absolute value of the superimposed channel. This paper shows that SPC can achieve an array gain additional to the diversity gain. This is not possible with schemes like transmitter antenna selection diversity (SD). The lower bounds for SPC are defined by equal gain transmission (EGT) and maximum ration transmission (MRT).
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基于相位翻转的无线通信空间预编码
空间预编码方案的性能取决于发射机可用信道状态信息的数量。本文研究了一种基于相位翻转的空间预编码方法。该方案被称为空间相位编码(SPQ)。提出了角度判据(AC)和绝对值判据(AVC)两种翻转判据,它们改变了多个发射天线间信号的相位关系,从而增加了接收天线处信号构造叠加的概率。与已知的预编码方案相比,SPC AVC不需要了解每个发射天线的信道即可进行预编码。相反,它只需要关于叠加信道绝对值的信息。本文表明,SPC可以在分集增益的基础上实现阵列增益。这是不可能的方案,如发射机天线选择分集(SD)。SPC的下界由等增益传输(EGT)和最大比率传输(MRT)定义。
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