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Reliable Communication Over Arbitrarily Varying Channels Under Block-Restricted Jamming

机译:在块受限干扰下通过任意变化的通道进行可靠的通信

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We study reliable communication in uncoordinated vehicular communication from the perspective of Shannon theory. Our system model for the information transmission is that of an Arbitrarily Varying Channel (AVC): One sender-receiver pair wants to communicate reliably, no matter what the input of a second sender is. The second sender is assumed to be uncoordinated and interfering, but is supposed to follow the rational goal of transmitting information otherwise. We prove that repetition coding can increase the capacity of such a system by relating the notion of symmetrizability of an arbitrarily varying channel to invertibility of the corresponding channel matrix. Explicit upper bounds on the number of repetitions needed to prevent system breakdown through diversity are provided. Further we introduce the notion of block-restricted jamming and present a lower and an upper bound on the maximum error capacity of the corresponding restricted AVC.
机译:我们从香农理论的角度研究了不协调的车辆通信中的可靠通信。我们用于信息传输的系统模型是任意变化信道(AVC)的模型:无论第二个发送器的输入是什么,一对发送器-接收器都希望可靠地进行通信。假定第二个发送方是不协调和干扰的,但是应该遵循否则会传输信息的合理目标。我们证明,通过将任意变化的信道的对称性概念与相应信道矩阵的可逆性相关联,重复编码可以增加这种系统的容量。提供了防止因多样性而导致系统崩溃所需的重复次数的明确上限。此外,我们引入了块受限干扰的概念,并给出了相应受限AVC的最大错误容量的上限和下限。

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