脉冲噪声干扰下噪声归一化组合jtids型波形的性能

C. Kao, C. Robertson
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引用次数: 2

摘要

联合战术信息分发系统(JTIDS)是Link-16的通信终端。当选择双脉冲结构传输Link-16数据时,JTIDS是一种顺序分集为2的直接序列/快速跳频混合扩频系统。为了减小脉冲噪声干扰(PNI)的影响,在JTIDS接收机中采用噪声归一化分集组合MSK芯片解调器。研究了PNI中具有噪声归一化组合(NNC)的双脉冲结构的相干检测jtids型波形的符号误码率(SER)性能。为了便于评估,我们假设完美跳频、序列同步、芯片同步和32片序列解扰。此外,假设最大似然芯片检测而不是最大似然芯片序列检测,因为前者代表了对JTIDS信号更实际的假设。用NNC与不使用NNC的结果进行了比较,并与具有完美侧信息的结果进行了比较。结果表明,对于具有双脉冲结构的相干检测jtids型波形,NNC有效地减轻了PNI引起的系统退化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance of a JTIDS-type waveform with noise-normalization combining in pulsed-noise interference
The Joint Tactical Information Distribution System (JTIDS) is the communication terminal of Link-16. When the double-pulse structure is chosen to transmit the Link-16 data, JTIDS is a hybrid direct sequence/fast frequency-hopping spread spectrum system with a sequential diversity of two. To minimize the effect of pulsed-noise interference (PNI), a noise-normalized diversity combining MSK chip demodulator is assumed in the JTIDS receiver. The symbol error rate (SER) performance of a coherently detected JTIDS-type waveform for the double-pulse structure with noise-normalization combining (NNC) in PNI is investigated in this paper. To facilitate the evaluation, perfect frequency de-hopping, sequence synchronization, chip synchronization, and 32-chip sequence descrambling are assumed. Furthermore, maximum-likelihood chip detection is assumed rather than maximum-likelihood chip-sequence detection since the former represents a more practical assumption for a JTIDS signal. The results obtained with NNC are compared to those without NNC, as well as to those with perfect side information. The results show that for a coherently detected JTIDS-type waveform with the double-pulse structure, NNC effectively mitigates the system degradation caused by PNI.
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