独立微电网PV-Diesel-Battery混合动力系统能量管理最优控制策略

P. Gbadega, O. Balogun
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引用次数: 3

摘要

需要新的控制算法来处理发电和新消费模式的间歇性、随机和分布式特性。微电网的控制提出了重大挑战,需要通过先进的控制技术来解决。本文研究了一种有效管理由可再生能源和不可再生能源组成的独立住宅微电网的最优控制策略。采用自适应模型预测控制(AMPC)算法,为系统选择最优模式和输入集来跟踪恒定和负载变化的电力需求曲线。AMPC控制算法要解决的问题是进行最优功率参考跟踪问题,使柴油发电机的能量消耗最小,同时使存储库的效率最大化。最优控制方案的目标是使发电满足需求,最大限度地减少化石燃料的使用,并确保能量储存始终保持在标称点附近,这样它就不会过度枯竭。因此,主要目标是最大限度地利用可再生能源,最大限度地减少传统能源。在MATLAB/Simulink环境下对工厂模型和AMPC控制器进行了设计与仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Control Strategy for Energy Management of PV-Diesel-Battery Hybrid Power System of a Stand-Alone Micro-Grid
New control algorithms are required to deal with the intermittent, stochastic, and distributed nature of the generation and new consumption patterns. Control of micro-grids poses significant challenges that need to be addressed through advanced control techniques. This paper investigates an optimal control strategy that efficiently manages a stand-alone residential micro-grid comprising renewable and non-renewable energy sources. An adaptive model predictive control (AMPC) algorithm is implemented for choosing an optimal mode and set of inputs for the system to track both a constant and load-varying power demand profile. The problem to be solved by the AMPC control algorithm is to perform an optimal power reference tracking problem, where the consumption of energy from the diesel generator is minimized while maximizing the efficiency of the storage bank. The objective of the optimal control scheme is for the generation to meet the demand, minimize the use of fossil fuels and ensure the energy storage is always maintained around a nominal point such that it is not over-depleted. Therefore, the main goal is to maximize the use of renewable sources and minimize traditional sources. The design and simulation of the plant model and the AMPC controller are carried out on the MATLAB/Simulink environment.
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