Two Mixed Logical Dynamical Real-Time Receding Horizon Control Schemes for Microgrids Operation Optimization

Seyed Shahab Kheradmand, Reyhaneh Haghpanah, Mojtaba Barkhordary Yazdi, M. M. Farsangi
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引用次数: 1

Abstract

In this paper, a control scheme based on hybrid model predictive control (HMPC) is presented with two different cost functions for the energy management of a grid-connected microgrid (M G), including a battery storage device, a diesel generator, a photovoltaic system, and critical load. The real-time controller relies on the mixed-logical dynamical (MLD) model of the system and is in charge of computing the operating conditions for each MG component over a 24-hour horizon, with a sampling period of 60 min. An economic cost function is proposed to minimize the operation cost. Furthermore, considering the terminal equality constraint an alternative cost function based on minimization of the battery tracking error is presented. The mentioned constraint is in charge of stability and recursive feasibility of the operation. Moreover, simulation results are provided to show the advantages and disadvantages of both approaches.
微电网运行优化的两种混合逻辑动态实时后退水平控制方案
本文提出了一种基于混合模型预测控制(HMPC)的并网微电网(M G)能量管理方案,该方案具有两种不同的成本函数,包括电池存储设备、柴油发电机、光伏系统和临界负荷。实时控制器依赖于系统的混合逻辑动态(MLD)模型,以60 min的采样周期计算24小时内各MG组件的运行状态,并提出经济成本函数以最小化运行成本。在考虑终端等式约束的基础上,提出了一种基于电池跟踪误差最小化的替代成本函数。所述约束负责操作的稳定性和递归可行性。仿真结果显示了两种方法的优缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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