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Aggregation and Control of Populations of Thermostatically Controlled Loads by Formal Abstractions

机译:形式抽象对恒温控制负荷的聚集和控制

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This paper discusses a two-step procedure, based on the use of formal abstractions, to generate a finite-space stochastic dynamical model as an aggregation of the continuous temperature dynamics of a homogeneous population of thermostatically controlled loads (TCLs). The temperature of a TCL is described by a stochastic difference equation and the TCL status (ON, OFF) by a deterministic switching mechanism. The procedure is deemed to be formal, as it allows the quantification of the error introduced by the abstraction. As such, it builds and improves on a known, earlier approximation technique used in the literature. Furthermore, the contribution discusses the extension to the instance of heterogeneous populations of TCLs by means of two approaches. It moreover investigates the problem of global (population-level) power reference tracking and load balancing for TCLs that are explicitly dependent on a control input. The procedure is tested on a case study and benchmarked against the mentioned existing approach in the literature.
机译:本文讨论了基于形式抽象的两步过程,以生成有限空间随机动力学模型,作为均质恒温控制负载(TCL)连续温度动力学的集合。 TCL的温度由随机差分方程描述,TCL状态(ON,OFF)由确定性切换机制描述。该过程被认为是正式的,因为它可以量化由抽象引入的错误。这样,它在文献中使用的已知的较早的近似技术的基础上进行了改进。此外,本文通过两种方法讨论了对TCL异质种群实例的扩展。此外,它还研究了明确依赖于控制输入的TCL的全局(人口级别)功率参考跟踪和负载平衡问题。该程序通过案例研究进行测试,并以文献中提到的现有方法为基准。

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