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Compositional Synthesis of Finite Abstractions for Continuous-Space Stochastic Control Systems: A Small-Gain Approach ?

机译:连续空间随机控制系统的有限抽象的合成:一种小增益方法

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This paper is concerned with a compositional approach for constructing finite abstractions (a.k.a. finite Markov decision processes) of interconnected discrete-time stochastic control systems. The proposed framework is based on a notion of so-calledstochastic simulation functionenabling us to use an abstract system as a substitution of the original one in the controller design process with guaranteed error bounds. In the first part of the paper, we derive sufficient small-gain type conditions for the compositional quantification of the distance in probability between the interconnection of stochastic control subsystems and that of their (finite or infinite) abstractions. In the second part of the paper, we construct finite abstractions together with their corresponding stochastic simulation functions for the class of linear stochastic control systems. We apply our results to the temperature regulation in a circular building by constructing compositionally a finite abstraction of a network containing 1000 rooms. We use the constructed finite abstractions as substitutes to synthesize policies compositionally regulating the temperature in each room for a bounded time horizon.
机译:本文涉及一种用于构造互连离散时间随机控制系统的有限抽象(也称为有限马尔可夫决策过程)的组合方法。所提出的框架基于所谓的随机仿真功能的概念,使我们能够在控制器设计过程中使用抽象系统替代原始系统,并保证误差范围。在本文的第一部分中,我们推导了足够的小增益类型条件,用于对随机控制子系统的互连与其(有限或无限)抽象的互连之间的概率距离进行成分定量。在本文的第二部分,我们为一类线性随机控制系统构造了有限抽象及其相应的随机仿真函数。通过在结构上构建包含1000个房间的网络的有限抽象,我们将结果应用于圆形建筑中的温度调节。我们使用构造的有限抽象作为替代品,以合成在有限的时间范围内对每个房间的温度进行调节的策略。

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