综合能源系统的最优实时调度:基于本体的多智能体方法

A. Anvari‐Moghaddam, J. Guerrero, A. Rahimi-Kian, M. Mirian
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引用次数: 15

摘要

随着小型集成能源系统(ess)的出现,典型的需求侧管理(DSM)策略和典型的建筑级分布式能源(DERs)实施的功能有很大的潜力。通过将DSM和DERs集成到一个内聚的网络包中,充分利用智能节能终端设备、先进的建筑控制/自动化系统和集成通信架构,可以有效地管理终端使用地点的能源和舒适度。提出了一种基于本体驱动的智能优化器的多智能体控制系统,用于考虑协调需求响应(DR)和需求响应(DERs)管理的建筑与微网集成系统的最优实时调度。将最优调度问题表述为一个混合整数非线性规划问题(MINLP),并采用基于智能体的方法求解。几个计算机仿真也显示了该方法相对于传统方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal real-time dispatch for integrated energy systems: An ontology-based multi-agent approach
With the emerging of small-scale integrated energy systems (IESs), there are significant potentials to increase the functionality of a typical demand-side management (DSM) strategy and typical implementation of building-level distributed energy resources (DERs). By integrating DSM and DERs into a cohesive, networked package that fully utilizes smart energy-efficient end-use devices, advanced building control/automation systems, and integrated communications architectures, it is possible to efficiently manage energy and comfort at the end-use location. In this paper, an ontology-driven multi-agent control system with intelligent optimizers is proposed for optimal real-time dispatch of an integrated building and microgrid system considering coordinated demand response (DR) and DERs management. The optimal dispatch problem is formulated as a mixed integer nonlinear programing problem (MINLP) and solved through an agent-based approach. Several computer simulations are also presented to show the effectiveness of the proposed approach over the conventional methods.
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