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A low-rate code-spread and chip-interleaved time-hopping UWB system

机译:低速率代码扩展和芯片交织的跳时UWB系统

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摘要

We consider a code-spread and chip-interleaved time-hopping (TH) multiple-access scheme for multiuser ultra-wideband (UWB) communications. In such a system, each user's chip sequence is interleaved by a user-specific distinct random interleaver, and the receiver is a low-complexity chip-level iterative multiuser detector (MUD) which performs simple Rake-type combining to collect the energy dispersed in multipath UWB channels. To further reduce the receiver complexity, time reversal (TR), a transmitter preprocessing technique, is also considered. When power control is employed along with TR, a single-tap receiver can be utilized which offers a desirable bit error rate (BER) performance with a significantly reduced sampling rate. Furthermore, the zigzag Hadamard (ZH) code is proposed as the low-rate code for both channel coding and spreading in the code-spread TH-UWB system. With its capacity-approaching capability and low encoding/decoding complexity, the parallel concatenated ZH code is a promising coding scheme for UWB applications.
机译:我们考虑一种用于多用户超宽带(UWB)通信的代码扩展和芯片交织的跳时(TH)多址方案。在这样的系统中,每个用户的芯片序列由用户特定的独特随机交织器交织,并且接收器是低复杂度芯片级迭代多用户检测器(MUD),它执行简单的Rake型组合以收集分散在其中的能量。多径UWB通道。为了进一步降低接收机的复杂性,还考虑了时间反转(TR),即一种发射机预处理技术。当功率控制与TR一起使用时,可以使用单抽头接收器,它提供理想的误码率(BER)性能,并且采样率大大降低。此外,提出了之字形Hadamard(ZH)码作为在码扩展TH-UWB系统中用于信道编码和扩频的低速率码。并行级联的ZH码具有逼真的容量和较低的编码/解码复杂度,是用于UWB应用的有前途的编码方案。

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