Poisson channel with binary Markov input and average sojourn time constraint

Mark Sinzger, Maximilian Gehri, H. Koeppl
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引用次数: 3

Abstract

A minimal model for gene expression, consisting of a switchable promoter together with the resulting messenger RNA, is equivalent to a Poisson channel with a binary Markovian input process. Determining its capacity is an optimization problem with respect to two parameters: the average sojourn times of the promoter’s active (ON) and inactive (OFF) state. An expression for the mutual information is found by exploiting the link with filtering theory. For fixed peak power, three bandwidth-like constraints are imposed by lower-bounding (i) the average sojourn times (ii) the autocorrelation time and (iii) the average time until a transition. OFF-favoring optima are found for all three constraints, as commonly encountered for the Poisson channel. In addition, constraint (i) exhibits a region that favors the ON state, and (iii) shows ON-favoring local optima.
具有二进制马尔可夫输入和平均停留时间约束的泊松信道
一个最小的基因表达模型,由一个可切换的启动子和由此产生的信使RNA组成,相当于一个具有二进制马尔可夫输入过程的泊松通道。确定其容量是一个关于两个参数的优化问题:启动子的活动(ON)和非活动(OFF)状态的平均逗留时间。利用与过滤理论的联系,找到了互信息的表达式。对于固定的峰值功率,三个类似带宽的约束由下限施加(i)平均逗留时间(ii)自相关时间和(iii)平均时间直到过渡。对于所有三个约束都找到了有利于off的最优值,这与泊松通道中经常遇到的情况一样。此外,约束(i)显示了一个有利于ON状态的区域,约束(iii)显示了一个有利于ON的局部最优。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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