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A Chip Timing Recovery Scheme for Walsh-Hadamard Code Division Multiplexing

机译:Walsh-Hadamard码分复用的码片定时恢复方案

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Walsh-Hadamard (WH) code division multiplexing (CDM) is CDM employing WH code as spreading codes. This paper addresses chip timing recovery in band-limited WHCDM using Nyquist pulse shaping. In direct-sequence spread spectrum communications employing pseudo-noise (PN) spreading code, chip timing recovery is achieved with delay-locked loop (DLL). DLL recovers the chip timing on the basis of the impulse-like autocorrelation of PN codes. However, WH code has many side lobes in its autocorrelation function. This makes it impossible to apply DLL to WHCDM. In this paper, we propose a novel chip timing recovery scheme for band-limited WHCDM. The proposed scheme detects the chip timing by using the cross-correlation between the received signal and the WH code whose autocorrelation has the period of twice the chip duration. The results of computer simulation show that the proposed scheme achieves excellent chip synchronization performance.
机译:Walsh-Hadamard(WH)码分复用(CDM)是采用WH码作为扩频码的CDM。本文介绍了使用Nyquist脉冲整形在带限WHCDM中的芯片定时恢复。在采用伪噪声(PN)扩展码的直接序列扩频通信中,码片定时恢复是通过延迟锁定环(DLL)实现的。 DLL基于PN码的类似脉冲的自相关来恢复码片时序。但是,WH代码的自相关函数具有许多旁瓣。这使得无法将DLL应用于WHCDM。在本文中,我们提出了一种用于带限WHCDM的新型码片定时恢复方案。所提出的方案通过使用接收信号与WH码之间的互相关来检测码片时序,WH码的自相关周期为码片持续时间的两倍。计算机仿真结果表明,该方案具有良好的芯片同步性能。

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