Serially concatenated convolutional coding for frequency-hopped PSK in partial-band jamming

W. Phoel
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引用次数: 9

Abstract

This paper presents results on the performance of the serial concatenation of a convolutional code and differentially encoded phase-shift keying (PSK) in the presence of partial-band white-noise jamming. Frequency hopping is used to combat the effects of the jamming. We assume that the carrier phase is constant over a hop, but varies randomly from hop to hop. An expanded trellis-based demodulator, which assumes a quantized phase offset, is used to provide nearly coherent performance. Iterative demodulation and decoding provides excellent performance at relatively low E/sub b//N/sub 0/. A fixed block length is considered to limit the delay and processing requirements. We show that, consequently, there is a trade-off between nearly coherent reception and antijam (AJ) protection. That is, more symbols per hop provide better performance when the phase offset is unknown, but having more hops per code block enables better protection from jamming.
部分频带干扰下跳频PSK的串行级联卷积编码
本文研究了在部分频带白噪声干扰下,卷积码与差分编码相移键控(PSK)串行连接的性能。跳频是用来对抗干扰的。我们假设载波相位在一跳上是恒定的,但在每一跳之间随机变化。一种基于扩展网格的解调器,假设一个量子化的相位偏移,用于提供近相干性能。迭代解调和解码在相对较低的E/sub / b//N/sub 0/下提供了出色的性能。一个固定的块长度被认为是限制延迟和处理要求。因此,我们表明,在近相干接收和抗干扰(AJ)保护之间存在权衡。也就是说,当相位偏移未知时,每跳更多的符号可以提供更好的性能,但是每个码块有更多的跳可以更好地防止干扰。
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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