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New HARQ Scheme Based on Decoding of Tail-Biting Convolutional Codes in IEEE 802.16e

机译:IEEE 802.16e中基于尾比特卷积码解码的新HARQ方案

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Traditionally, a hybrid automatic repeat request (HARQ) is executed at the physical (PHY) and medium access control (MAC) layers. A cyclic redundancy check (CRC) is usually performed at the MAC layer to decide whether a packet must be retransmitted. This design causes two problems—long latency and inefficient retransmission—when a transmission error appears in a large packet. In this paper, we propose a new HARQ scheme to solve these problems based not only on CRC but on the decoding of tail-biting convolutional codes (TBCCs) at the PHY layer as well. First, the TBCC codeword that was received at the decoder is cyclically shifted according to the reliability of the received code bits. The Viterbi algorithm (VA), starting from all states, is then applied. When every survival path in the VA is close enough to its corresponding abandoned path, retransmission of the codeword is invoked. Because retransmission is restricted to a codeword and determined at the PHY layer, short latency and efficient retransmission are achieved. Simulation results show that the proposed scheme reduces the number of retransmitted codewords by up to 43% compared with the traditional HARQ in IEEE 802.16e orthogonal frequency-division multiple access (OFDMA) under a Rayleigh faded channel when the 1024-point fast Fourier transform (FFT) and 64-state quadrature amplitude modulation (64-QAM) are employed.
机译:传统上,混合自动重发请求(HARQ)在物理(PHY)和媒体访问控制(MAC)层执行。通常在MAC层执行循环冗余校验(CRC),以决定是否必须重发数据包。当大数据包中出现传输错误时,此设计会导致两个问题-长等待时间和低效率的重传。在本文中,我们提出了一种新的HARQ方案来解决这些问题,不仅基于CRC,而且还基于PHY层上的尾比特卷积码(TBCC)的解码。首先,根据接收到的代码位的可靠性,循环移位在解码器处接收到的TBCC码字。然后应用从所有状态开始的维特比算法(VA)。当VA中的每个生存路径都足够接近其对应的废弃路径时,将调用码字的重传。由于重传仅限于码字并在PHY层确定,因此可以实现较短的等待时间和有效的重传。仿真结果表明,在1024点快速傅立叶变换(Rayleigh衰落信道)下,与IEEE 802.16e正交频分多址(OFDMA)中的传统HARQ相比,该方案将重传码字的数量减少了43%。 FFT)和64状态正交幅度调制(64-QAM)。

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