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Load-Frequency Control, Economic Dispatch and Unit Commitment in Smart Microgrids based on Hierarchical Model Predictive Control

机译:基于等级模型预测控制的智能微电网中的负载频率控制,经济调度和单位承诺

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This paper presents an energy management system for smart microgrids (MGs) based on hierarchical model predictive control (HiMPC). The HiMPC comprises two levels. On the lower level load-frequency control is realized on a short time scale while on the upper level economic dispatch and unit commitment are implemented on a long time scale. HiMPC allows integrating these functionalities over different time scales while regarding constraints (e.g. power ratings) and predictions (e.g. on renewable generation and load) as well as rejecting disturbances (e.g. due to volatile renewable generation) based on a systematic model- and optimization-based design. The HiMPC problem is formulated as a mixed-integer linear program which can be solved efficiently using standard solvers. The energy management system is evaluated for a smart MG of a company with a focus on grid integration of electric vehicles.
机译:本文介绍了基于等级模型预测控制(HIMPC)的智能微电网(MGS)的能量管理系统。 HIMPC包括两个级别。在较低级别的负载频率控制上,在短时间内实现,同时在上层经济调度和单位承诺长时间实现。 HIMPC允许在关于约束(例如,电力额定值)和预测(例如,可再生生成和负载上)以及基于系统模型和优化和优化的拒绝干扰(例如,易于可再生生成)而在不同的时间尺度上集成这些功能设计。 HIMPC问题被配制为混合整数线性程序,可以使用标准溶剂有效地解决。能源管理系统被评估为一家公司的智能MG,专注于电动汽车的网格集成。

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