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Adaptive Channel Coding Techniques Using Finite State Machine for Software Defined Radio

机译:使用有限状态机的软件定义无线电的自适应信道编码技术

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摘要

This paper proposes and investigates a coding and decoding scheme to achieve adaptive channel coding using a Finite State Machine (FSM) for Software Denned Radio (SDR). Adaptive channel coding and decoding systems that can switch between different coding rates and error correcting capabilities in order to adapt to changing applications and environments, are effective for SDR. However, in these systems, a receiver cannot always select the correct decoder which causes decoding errors, usually referred to as Decoder-Selection-Errors (DSE). We propose a trellis encoder estimation scheme that compensates for this problem. This scheme uses the circuit of FSM to limit the encoder transition and the Viterbi algorithm for maximum likelihood trellis encoder estimation. Computer simulations are applied for evaluating the DSE rate, the Bit Error Rate (BER) and Throughput of the proposed scheme in comparison with a conventional scheme.
机译:本文提出并研究了一种使用有限状态机(FSM)进行软件密集型无线电(SDR)的自适应信道编码的编码和解码方案。可以在不同的编码率和纠错能力之间切换以适应不断变化的应用程序和环境的自适应信道编码和解码系统对于SDR是有效的。但是,在这些系统中,接收器不能总是选择会导致解码错误的正确解码器,通常称为解码器选择错误(DSE)。我们提出了一种网格编码器估计方案来弥补这一问题。该方案使用FSM电路限制编码器转换,并使用Viterbi算法进行最大似然网格编码器估计。与常规方案相比,计算机仿真被用于评估该方案的DSE率,误码率(BER)和吞吐量。

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