On the Structure of the Capacity Formula for General Finite State Channels with Applications

H. Boche, R. Schaefer, H. Poor
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引用次数: 5

Abstract

Finite state channels (FSCs) model discrete channels with memory where the channel output depends on the channel input and the actual channel state. The capacity of general FSCs has been established as the limit of a sequence of multi-letter expressions; a corresponding finite-letter characterization is not known to date. In this paper, it is shown that it is indeed not possible to find such a finite-letter entropic characterization for FSCs whose input, output, and state alphabets satisfy |X| $\geq2$, |Y| $\geq2$, and |${S}$| $\geq2$. Further, the algorithmic computability of the capacity of FSCs is studied. To account for this, the concept of a Turing machine is adopted as it provides fundamental performance limits for today’s digital computers. It is shown that the capacity of a FSC is not Banach-Mazur computable and therewith not Turing computable for $|\mathcal {X}| \geq 2, |\mathcal {Y}| \geq 2, |S| \geq 2$.
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一般有限状态信道容量公式的结构及其应用
有限状态通道(FSCs)模拟具有存储器的离散通道,其中通道输出取决于通道输入和实际通道状态。一般FSCs的容量被确定为多字母表达式序列的极限;迄今为止还不知道相应的有限字母表征。本文表明,对于输入、输出和状态字母满足|X| $\geq2$、|Y| $\geq2$和| ${S}$ | $\geq2$的FSCs,确实不可能找到这样的有限字母熵表征。进一步研究了FSCs容量的算法可计算性。为了解释这一点,图灵机的概念被采用,因为它为今天的数字计算机提供了基本的性能限制。证明了对于$|\mathcal {X}| \geq 2, |\mathcal {Y}| \geq 2, |S| \geq 2$, FSC的容量不是Banach-Mazur可计算的,因此也不是图灵可计算的。
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