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Space-Frequency and Space-Time-Frequency M3FSK for Indoor Multiwire Communications

机译:用于室内多线通信的空频和空时频M3FSK

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This paper investigates the multiple emitting multiple receiving points diversity technique as one of the ways of meeting the tripartite conditions of high data rate, less transmit power, and low unwanted electromagnetic radiations of the frequency-selective power-line channels. To be resilient to the intersymbol interference present in frequency-selective fading, the diversity technique must be used in conjunction with wideband multicarrier modulation. We propose an efficient space-frequency and space-time-frequency (STF)-coded multitone ${rm M}$-ary multilevel frequency-shift keying (${rm M} ^{3}{rm FSK}$) for high-rate indoor communications over the multiwire power-line channels. We show that coding by using three dimensions of space, frequency, and time, the STF system is capable of achieving up to 8-dB diversity gain. Simulation results are provided to demonstrate the performance improvement of the STF over other diversity schemes as well as over single-wire ${rm M} ^{3}{rm FSK}$ systems in a highly impulsive power line.
机译:本文研究了多发射多接收点分集技术,该技术是满足频率选择电力线信道的高数据速率,较少的发射功率和较低的无用电磁辐射的三方条件之一。为了适应频率选择衰落中出现的符号间干扰,必须将分集技术与宽带多载波调制结合使用。我们提出了一种有效的时空和时空(STF)编码多音$ {rm M} $ ary多级频移键控($ {rm M} ^ {3} {rm FSK} $)多线电力线信道上的室内通信速率。我们表明,通过使用空间,频率和时间这三个维度进行编码,STF系统能够实现高达8 dB的分集增益。提供了仿真结果,以证明STF相对于其他分集方案以及高脉冲电源线中的单线制$ {rm M} ^ {3} {rm FSK} $系统的性能提高。

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