首页> 外文OA文献 >Error probabilities of FFH/BFSK with noise normalization and soft decision Viterbi decoding in a fading channel with partial-band jamming
【2h】

Error probabilities of FFH/BFSK with noise normalization and soft decision Viterbi decoding in a fading channel with partial-band jamming

机译:带有部分频带干扰的衰落信道中带有噪声归一化和软判决维特比解码的FFH / BFSK的错误概率

摘要

An error probability analysis of a communications link employing convolutional coding with soft decision Viterbi decoding implemented on a fast frequency-hopped, binary frequency-shift keying (FFH/BFSK) spread spectrum system is performed. The signal is transmitted through a frequency nonselective, slowly fading channel with partial-band jamming. Noise normalization combining is employed at the receiver to alleviate the effects of partial-band jamming. The received signal amplitude of each hop is modeled as a Rician process, and each hop is assumed to fade independently. It is found that with the implementation of soft decision Viterbi decoding that the performance of the receiver is improved dramatically when the coded bit energy to partial-band noise power spectral density ratio (Eb/N1) is greater than 10dB. At higher Eb/ N1, the asymptotic error improves dramatically and varies from 10 to the -6 power to 10 to the -12 power depending on the constraint length (v), number of hops/bit (L), and the strength of the direct signal (alpha2/2alpha2). In addition, nearly worst case jamming occurs when the jammer uses a full band jamming strategy, even when L=l and there is a very strong direct signal (alpha2/2alpha 2= 100). Due to noncoherent combining losses, when the hopper bit ratio is increased, there is some degradation at moderate Eb/N1. Furthermore, when a stronger code is used (i.e., the constraint length is longer), performance improves, especially for high Eb/N1 where the asymptotic error is reduced. Finally, soft decision decoding improves performance over hard decision decoding from 4 to 8dB At moderate Eb/N1 depending on the code rate and with a much lower asymptotic error at high Eb/N1.
机译:对在快速跳频,二进制频移键控(FFH / BFSK)扩频系统上实现的,采用卷积编码和软判决维特比解码的通信链路的错误概率分析进行了分析。信号通过具有部分频带干扰的频率非选择性慢衰落信道传输。在接收机处采用噪声归一化组合来减轻部分频带干扰的影响。将每个跃点的接收信号幅度建模为Rician过程,并假定每个跃点独立衰落。发现通过软判决维特比解码的实现,当编码比特能量与部分带噪声功率谱密度之比(Eb / N1)大于10dB时,接收机的性能得到了显着改善。在更高的Eb / N1下,渐进误差显着提高,并且从10到-6幂变化到10到-12幂变化,具体取决于约束长度(v),跳数/位(L)和信号强度。直接信号(alpha2 / 2alpha2)。另外,当干扰器使用全频带干扰策略时,即使在L = 1且存在非常强的直接信号(alpha2 / 2alpha 2 = 100)时,也会发生几乎最坏的情况。由于非相干的合并损耗,当增加料斗的位比时,在中等Eb / N1时会有一些劣化。此外,当使用更强的代码时(即约束长度更长),性能会提高,尤其是对于渐近误差减小的高Eb / N1而言。最后,软判决解码将硬判决解码的性能从4dB提高到8dB。根据编码速率,在中等Eb / N1时,高Eb / N1时的渐近误差要低得多。

著录项

  • 作者

    Chua Anthony Y. P.;

  • 作者单位
  • 年度 1994
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号