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Physical layer secrecy for wireless communication systems using adaptive HARQ with error contamination

机译:使用带有错误污染的自适应HARQ的无线通信系统的物理层保密性

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This paper proposes a physical layer coding scheme to provide reliability and security in wireless communication systems. An Adaptive Granular Hybrid Automatic Repeat re- Quest (AG-HARQ) scheme based on Low-Density-Parity-Check (LDPC) codes is proposed. In the AG-HARQ protocol, the whole codewords are first transmitted (by Alice) to the intended receiver (Bob) and potentially intercepted by an unauthorized receiver or eavesdropper (Eve). Whenever the legitimate receiver (Bob) fails to decode the correct message, the received codewords are splitted into sub-packets and Bob computes a decoding confidence index for each of these sub-packets. Bob can then request a retransmission of those sub-packets having the lowest confidence indexes. These sub-packets are requested by Bob until correct decoding or until a maximum number of retransmissions is reached. An error contamination (EC) mechanism is also proposed which spreads the errors in the current frame with a scrambler and to the other frames by use of block interleavers. The proposed scheme ensures reliable and secure communication even in the case of negative Security Gap (SG) where the eavesdropper's channel benefits from better channel conditions than the legitimate channel.
机译:本文提出了一种物理层编码方案,以在无线通信系统中提供可靠性和安全性。提出了一种基于低密度奇偶校验(LDPC)码的自适应粒度混合自动重发请求(AG-HARQ)方案。在AG-HARQ协议中,首先将整个码字(由Alice发送)到预期的接收者(鲍勃),并有可能被未授权的接收者或窃听者(夏娃)截获。只要合法​​接收方(Bob)无法解码正确的消息,接收到的码字就会被拆分为子数据包,而Bob会为这些子数据包中的每一个计算解码置信度索引。然后,鲍勃可以请求重传具有最低置信度指数的那些子分组。 Bob会请求这些子数据包,直到正确解码或达到最大重传次数为止。还提出了一种错误污染(EC)机制,该机制通过加扰器将当前帧中的错误扩展到加扰器中,并使用块交织器将其扩展到其他帧中。所提出的方案即使在负安全间隔(SG)的情况下也可确保可靠和安全的通信,在这种情况下,窃听者的信道比合法信道受益于更好的信道条件。

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