Guard interval adaptation for in-home power line communication

T. Vo, K. Amis, T. Chonavel, P. Siohan
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Abstract

This paper aims to analyze the choice of the guard interval (GI) length in PLC systems to optimize the achievable throughput under power and symbol error-rate (SER) constraints. In general, the GI length is chosen so that there is no interference, i.e. the GI length is greater than or equal to the channel impulse response length. However, many previous works have shown that in PLC systems, this GI choice is inefficient in terms of achievable throughput. Indeed, shorter GI evidently results in inter-symbol interference (ISI) and inter-carrier interference (ICI), but the gain offered by shortened GI may exceed the loss caused by interference. In this paper, we propose a simple solution for the GI length adaptation in PLC systems to optimize the achievable throughput.
家庭电力线通信保护间隔自适应
本文旨在分析PLC系统中保护间隔(GI)长度的选择,以优化功率和符号错误率(SER)约束下的可实现吞吐量。一般情况下,GI长度的选择应使其不受干扰,即GI长度大于或等于通道脉冲响应长度。然而,许多先前的工作表明,在PLC系统中,这种GI选择在可实现的吞吐量方面是低效的。确实,较短的GI会明显导致码间干扰(ISI)和载波间干扰(ICI),但缩短GI带来的增益可能会超过干扰造成的损失。在本文中,我们提出了一种简单的解决方案,用于PLC系统的GI长度自适应,以优化可实现的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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