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Feedback Capacity of a Class of Symmetric Finite-State Markov Channels

机译:一类对称有限状态马尔可夫通道的反馈能力

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We consider the feedback capacity of a class of symmetric finite-state Markov channels. Here, symmetry (termed “quasi-symmetry”) is defined as a generalized version of the symmetry defined for discrete memoryless channels. The symmetry yields the existence of a hidden Markov noise process that depends on the channel''s state process and facilitates the channel description as a function of input and noise, where the function satisfies a desirable invertibility property. We show that feedback does not increase capacity for such class of finite-state channels and that both their nonfeedback and feedback capacities are achieved by an independent and uniformly distributed (i.u.d.) input. As a result, the channel capacity is explicitly given as a difference of output and noise entropy rates, where the output is driven by the i.u.d. input.
机译:我们考虑一类对称有限状态马尔可夫信道的反馈能力。在此,对称性(称为“准对称性”)定义为为离散无记忆通道定义的对称性的广义形式。对称性导致存在隐马尔可夫噪声过程,该过程取决于通道的状态过程,并根据输入和噪声来简化通道描述,其中该函数满足理想的可逆性。我们表明,反馈不会增加这种类型的有限状态通道的容量,并且它们的非反馈和反馈容量都是通过独立且均匀分布的(i.u.d.)输入来实现的。结果,信道容量被明确地给出为输出和噪声熵率之差,其中输出由i.d.驱动。输入。

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