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Metric-based node synchronization of the Viterbi decoder in satellite applications

机译:卫星应用中维特比解码器的基于度量的节点同步

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摘要

Convolutional codes are used in digital communication systems to correct errors that occur during transmission. Their use is now commonplace, particularly in power-limited satellite and deep space communication systems. Before the decoder can correctly decode the received continuous bit sequence, however, it must establish where codewords begin and end in this sequence. The process of determining codeword boundaries is called node synchronization. In this paper we develop a node synchronization algorithm based on metric difference values with the objectives of simple implementation and reliable performance. Focusing on satellite applications, we consider the constraint length 7, rate 1/2 convolutional code standardized by the National Aeronautics and Space Administration (NASA) and the European Space Agency (ESA); the approach we develop can be extended to other convolutional coding systems. Through simulation, we investigate the statistics of the received sequence, and highlight correlation in the sequence of the decoder metric values. In the light of these observations, we propose a synchronization algorithm, and develop a first-order analysis of this simple up/down counter framing technique. We recommend framing parameters based on both the analytical results and the expected response of the framing algorithm to correlated metric values. Development of a simple node synchronization algorithm that accommodates correlated metric values has not been reported previously in the literature. Simulation results confirm that reliable node synchronization is possible with this very simple approach.
机译:在数字通信系统中使用卷积码来纠正在传输过程中发生的错误。它们的使用现在很普遍,尤其是在功率受限的卫星和深空通信系统中。但是,在解码器可以正确解码接收到的连续位序列之前,它必须确定码字在该序列中开始和结束的位置。确定码字边界的过程称为节点同步。在本文中,我们开发了一种基于度量差异值的节点同步算法,其目标是实现简单,性能可靠。对于卫星应用,我们考虑由美国国家航空航天局(NASA)和欧洲航天局(ESA)标准化的约束长度7,比率1/2卷积码;我们开发的方法可以扩展到其他卷积编码系统。通过仿真,我们调查了接收到的序列的统计信息,并突出显示了解码器度量值序列中的相关性。根据这些观察结果,我们提出了一种同步算法,并对这种简单的上下计数器技术进行了一阶分析。我们建议根据分析结果和构架算法对相关度量值的预期响应,来构架参数。先前尚未在文献中报道过适应相关度量值的简单节点同步算法的开发。仿真结果证实,使用这种非常简单的方法可以实现可靠的节点同步。

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