需求侧能源管理系统的微分博弈论框架

Ryohei Arai, Koji Yamamoto, M. Morikura
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引用次数: 18

摘要

本文提出了一个基于信息可用性的智能电网分散控制和集中控制的博弈论框架。对于需求响应,智能电网中的需求侧参与者需要通过通信获取各种类型的信息,例如,拥有光伏(PV)电力系统的房屋根据天气预报有效地行动。相反,由于通信故障,控制所需的信息并不总是可用的。如果信息不可用,其他控制方法可以处理精确信息的丢失。本文介绍了一个光伏系统需求侧管理系统的综合框架。根据预测光伏发电量信息的可用性,我们评估了三种控制方案,即分散开环控制、分散反馈控制和集中控制。两种类型的分散控制是用微分对策来表述的,而集中控制是用最优控制问题来表述的。考虑到光伏系统的输出,每个需求侧参与者安排他们的电力消耗以最小化成本函数,包括负效用,电价和供需平衡。仿真结果表明,分散开环控制在发电预测数据有信息时是有效的,而分散反馈控制在无信息时是有效的。
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Differential game-theoretic framework for a demand-side energy management system
This paper proposes a game-theoretic framework for analyzing the decentralized and centralized control of smart grids based on the availability of information. For the demand response, demand-side actors in smart grids need to obtain various types of information via communication, e.g., a house with a photovoltaic (PV) power system acts efficiently based on the weather forecasts. In contrast, the information required for control is not always available because of communication failure. If information is unavailable, other control methods can cope with loss of the precise information. This paper introduces a comprehensive framework for a demand side management system for PV systems. According to the availability of information to predict the amount of PV power generation, we evaluate three control schemes, i.e., decentralized open-loop control, decentralized feedback control, and centralized control. Two types of decentralized control are formulated using a differential game, whereas centralized control is formulated as an optimal control problem. Considering the output of a PV system, each demand-side actor schedules their power consumption to minimize a cost function, including the disutility, electricity rates, and the supply-demand balance. Simulation results reveal that decentralized open-loop control is useful when information about the predicted data of power generation is available, whereas decentralized feedback control works efficiently when information is unavailable.
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