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Robustness and Games against Nature in Molecular Programming

机译:分子编程中的鲁棒性和与自然的博弈

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摘要

Matter, especially DNA, is now programmed to carry out useful processes at the nanoscale. As these programs and processes become more complex and their envisioned safetycritical applications approach deployment, it is essential to develop methods for engineering trustworthiness into molecular programs. Some of this can be achieved by adapting existing software engineering methods, but molecular programming also presents new challenges that will require new methods. This paper presents a method for dealing with one such challenge, namely, the difficulty of ascertaining how robust a molecular program is to perturbations of the relative "clock speeds" of its various reactions. The method proposed here is gametheoretic. The robustness of a molecular program is quantified in terms of its ability to win (achieve its original objective) in games against other molecular programs that manipulate its relative clock speeds. This game-theoretic approach is general enough to quantify the security of a molecular program against malicious manipulations of its relative clock speeds. However, this preliminary report focuses on games against nature, games in which the molecular program's opponent perturbs clock speeds randomly (indifferently) according to the probabilities inherent in chemical kinetics.
机译:现在,物质(尤其是DNA)已被编程为可以在纳米级进行有用的过程。随着这些程序和过程变得越来越复杂,并且其设想的安全关键型应用程序接近部署,必须开发出将工程可信赖性用于分子程序的方法。其中一些可以通过改编现有的软件工程方法来实现,但是分子编程也提出了新的挑战,需要新的方法。本文提出了一种应对这种挑战的方法,即确定分子程序对各种反应的相对“时钟速度”的扰动有多强的困难。这里提出的方法是博弈论的。分子程序的健壮性是根据其在游戏中与操纵其相对时钟速度的其他分子程序的获胜能力(达到其最初的目标)来量化的。这种基于博弈论的方法通常足以量化分子程序针对其相对时钟速度的恶意操纵的安全性。但是,这份初步报告的重点是与自然的博弈,即分子程序的对手根据化学动力学固有的概率随机(无差别地)干扰时钟速度的博弈。

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