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Behavior of Cascaded Binary Symmetric Channel for different number of cascades

机译:级联数量不同的级联二进制对称通道的行为

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A Binary Symmetric Channel is a communication model that transmits bits of information through the channel. The transmission is governed by the error probability of the channel. Network routes require multiple links which can be realized using cascaded channels. A single equivalent channel for a series of the identical cascaded binary symmetric channel is presented. The equivalent channel is analyzed for behavior with varying error probability of the individual building block channel. The difference in the behavior of the network for odd and even number of channels is considered. Information measures such as entropy, channel capacity, and mutual information are analyzed for a varying error probability and several cascades. The apparent response is explained through by the divergence of the error probability of the equivalent channel from the single individual channel. The previous works on cascaded Binary Symmetric Channels analyze the channel capacity in a cascaded setting of channels. This paper aims at monitoring the varying error probability primarily and inspecting the information measures with a change in error probability as well as the number of cascaded channels. The analyses help in determining the efficient operating area for a given number of cascades and error probability of the channel.
机译:二进制对称信道是一种通过信道传输信息位的通信模型。传输由信道的错误概率决定。网络路由需要多个链接,可以使用级联通道来实现。给出了一系列相同的级联二进制对称信道的单个等效信道。分析等效通道的行为,以使各个构建块通道的错误概率发生变化。考虑了奇数和偶数通道的网络行为差异。分析信息量度,例如熵,信道容量和互信息,以获取变化的错误概率和几个级联。表观响应是通过等效信道的错误概率与单个单个信道的差异来解释的。以前关于级联二进制对称信道的工作分析了级联信道设置中的信道容量。本文旨在主要监视变化的错误概率,并检查具有错误概率以及级联通道数变化的信息量度。这些分析有助于确定给定数量的级联和通道的错误概率的有效工作区域。

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