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On Ultra Extended Cyclic Prefix in Orthogonal Frequency Division Multiplexing (OFDM) Systems: The Case of LTE Downlink

机译:正交频分复用(OFDM)系统中的超扩展循环前缀的研究:以LTE下行链路为例

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Orthogonal Frequency Division Multiplexing (OFDM) is a multi-carrier scheme used in modern broadband wireless communication systems to transmit data over a number of orthogonal subcarriers. When transmitted signals arrive at the receiver by more than one path of different length, the received signals are staggered in time; this is multipath propagation. To mitigate the effect of dispersed channel distortion caused by random channel delay spread, Cyclic Prefix (CP) is introduced to eliminate Inter-Symbol Interference (ISI). In the literature, researchers have focused on carrying out investigations (or studies) mainly on the two existing CP insertions, namely: normal and extended CPs. Both CPs have limitations with respect to handling channel delay spreads. In the current work, a new CP, herein referred to as “ultra extended” CP is proposed to address delay spreads beyond the limits of the normal and extended CPs. The efficacy of the proposed ultra extended CP is tested via simulation under different scenarios. It is shown by the results obtained that the proposed CP can efficiently handle delay spreads beyond the limits of the existing normal and extended CP, and can indeed be implemented in the design of future telecommunication systems to accommodate higher channel delay spreads and it ensures wider cell coverage.
机译:正交频分复用(OFDM)是一种多载波方案,用于现代宽带无线通信系统中,以通过多个正交子载波传输数据。当发送的信号通过多条不同长度的路径到达接收器时,接收到的信号将在时间上错开。这是多径传播。为了减轻由随机信道延迟扩展引起的分散信道失真的影响,引入了循环前缀(CP)以消除符号间干扰(ISI)。在文献中,研究人员主要集中于对两个现有CP插入即正常CP和扩展CP进行调查(或研究)。两个CP在处理信道延迟扩展方面都有局限性。在当前的工作中,提出了一种新的CP,在此称为“超扩展” CP,以解决超出正常CP和扩展CP的限制的延迟扩展。通过在不同情况下进行仿真,测试了所建议的超扩展CP的功效。通过获得的结果表明,所提出的CP可以有效地处理超过现有的正常CP和扩展CP的限制的延迟扩展,并且确实可以在未来的电信系统的设计中实现以容纳更高的信道延迟扩展,并且可以确保更宽的小区覆盖范围。

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