An effect of arrival time differences in space-time coded communication systems

Ji-Won Jung, D. Choi, Ki-Man Kim, Xinping Huang, M. Caron
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Abstract

One of main goals in developing next generation wireless communication systems is increasing the data rates and high reliability. A promising way to achieve this is combination of multiple-input and multiple-output signal processing with space-time coding scheme. Naguib et al. (1988), Tarokh et al. (1998), and Hammons et al. (2000) proposed several space-time code schemes, which offer higher coding and diversity gains and are suitable for broadband applications to improve the spectrum efficiency and/or reliability of wireless applications such as in-home delivery of HDTV signals for entertainment, or high-speed computer networks based on IEEE 802.11b. In their studies, it is assumed that the multiple transmitter and receiver chains are perfect and that there is no delay or phase error among channels. This assumption, however, is difficult to warrant in practice. The time difference between transmitter and propagation paths from each transmit antenna give rise to arrival time differences in each path, which increase symbol interference and degrade the performance at the mobile receiver units. Therefore, we focus our efforts on the arrival time differences and their effects on a commercially available MIMO systems. Furthermore, we propose a compensation algorithm for a Rayleigh fading model to minimize the effects of arrival time differences.
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空时编码通信系统中到达时间差的影响
发展下一代无线通信系统的主要目标之一是提高数据速率和高可靠性。多输入多输出信号处理与空时编码相结合是实现这一目标的一种很有前途的方法。Naguib等人(1988)、Tarokh等人(1998)和Hammons等人(2000)提出了几种空时编码方案,这些方案提供了更高的编码增益和分集增益,适用于宽带应用,以提高无线应用的频谱效率和/或可靠性,例如用于娱乐的高清电视信号的家庭传输,或基于IEEE 802.11b的高速计算机网络。在他们的研究中,假设多个发送端和接收端链是完美的,信道之间不存在延迟和相位误差。然而,这种假设很难在实践中得到证实。每个发射天线的发射和传播路径之间的时间差导致每个路径上的到达时间差异,这增加了符号干扰并降低了移动接收单元的性能。因此,我们将重点研究到达时差及其对市售MIMO系统的影响。此外,我们还提出了一种瑞利衰落模型的补偿算法,以最小化到达时间差的影响。
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