首页> 外文会议>IEE Half-Day Colloquium on Hardware Systems for Dependable Applications, 1997 >Optimum sub-packet transmission for turbo-coded hybrid ARQ systems
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Optimum sub-packet transmission for turbo-coded hybrid ARQ systems

机译:涡轮编码混合ARQ系统的最佳子分组传输

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Turbo codes are popular for their near-Shannon capacity of bit-error-rate (BER) at low signal-to-noise ratio (SNR) with long packet lengths. They have been proposed in automatic-repeat-request (ARQ) systems as the forward-error correction (FEC) codes. Although sub-packet schemes were proposed in ARQ systems, optimum sub-packet transmission is more effective to maximize throughput in a dynamic channel. Sub-packet schemes can provide additional error correction capability with iterative turbo decoding algorithms. An efficient method is proposed to estimate the optimum number of sub-packets, and adaptive sub-packet schemes, i.e., that enables a system to employ different optimum numbers of sub-packets under variable conditions, are suggested to achieve the maximum throughput of the system. Simulations show that the adaptive sub-packet scheme is effective at moderate SNR, e.g. from 2.6 dB to 5.0 dB, and can provide higher throughput than conventional packet schemes.
机译:Turbo码以低信噪比(SNR)和长数据包长度而具有接近香农的误码率(BER)能力而广受欢迎。它们已在自动重复请求(ARQ)系统中作为前向纠错(FEC)代码提出。尽管在ARQ系统中提出了子分组方案,但是最优的子分组传输更有效地最大化动态信道中的吞吐量。子分组方案可以通过迭代Turbo解码算法提供附加的纠错功能。提出了一种有效的方法来估计子分组的最佳数量,并且提出了自适应子分组方案,即使得系统能够在可变条件下采用不同的子分组的最佳数量,以实现子分组的最大吞吐量。系统。仿真表明,自适应子分组方案在中等信噪比(例如SNR)下是有效的。从2.6 dB到5.0 dB,并且可以提供比传统数据包方案更高的吞吐量。

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