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Physical layer security using BCH and LDPC codes with adaptive granular HARQ

机译:使用具有自适应粒度HARQ的BCH和LDPC码的物理层安全性

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Transmission techniques based on channel coding with feedback are proposed in this paper to enhance the security of wireless communications systems at the physical layer. Reliable and secure transmission over an additive noise Gaussian wiretap channel is investigated using Bose-Chaudhuri-Hocquenghem (BCH) and Low-Density Parity-Check (LDPC) channel codes. A hybrid automatic repeat-request (HARQ) protocol is used to allow for the retransmission of coded packets requested by the intended receiver (Bob). It is assumed that an eavesdropper (Eve) has access to all forward and feedback transmitted packets. To limit the information leakage to Eve, retransmitted packets are subdivided into smaller granular subpackets. Retransmissions are stopped as soon as the decoding process at the legitimate (Bob) receiver converges. For the hard decision decoded BCH codes, a framework to compute the frame error probability with granular HARQ is proposed. For LDPC codes, the HARQ retransmission requests are based on received symbols likelihood computations: the legitimate recipient request for the retransmission of the set of bits that are more likely to help for successful LDPC decoding. The performances of the proposed techniques are assessed for nul and negative security gap (SG) values, that is when the eavesdropper's channel benefits from equal or better channel conditions than the legitimate channel.
机译:为了提高无线通信系统在物理层的安全性,本文提出了基于带反馈的信道编码的传输技术。使用Bose-Chaudhuri-Hocquenghem(BCH)和低密度奇偶校验(LDPC)信道代码研究了附加噪声高斯窃听信道上的可靠安全传输。混合自动重传请求(HARQ)协议用于允许重发目标接收器(Bob)请求的编码数据包。假定窃听者(Eve)可以访问所有正向和反馈传输的数据包。为了将信息泄漏限制在Eve,将重传的数据包细分为更小的粒度子数据包。一旦合法(Bob)接收器的解码过程收敛,就停止重新传输。对于硬判决解码的BCH码,提出了一种利用粒状HARQ计算帧错误概率的框架。对于LDPC码,HARQ重传请求基于接收到的符号似然计算:对重传比特集的合法接收者请求,更有可能有助于成功进行LDPC解码。评估所提议技术的性能是否达到零和负安全间隔(SG)值,也就是说,窃听者的通道受益于与合法通道相同或更好的通道条件。

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