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Robust optimization based energy dispatch in smart grids considering simultaneously multiple uncertainties: load demands and energy prices

机译:基于鲁棒优化的智能电网能量调度同时考虑多种不确定性:负载需求和能源价格

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摘要

Solving the problem of energy dispatch in a heterogeneous complex system is not a trivial task. The problem becomes even more complex considering uncertainties in demands and energy prices. This paper discusses the development of several Economic Model Predictive Control (EMPC) based strategies for solving an energy dispatch problem in a smart micro-grid. The smart grid components are described using control-oriented model approach. Considering uncertainty of load demands and energy prices simultaneously, and using an economic objective function, leads to a non-linear non-convex problem. The technique of using an affine dependent controller is used to convexify the problem. The goal of this research is the development of a controller based on EMPC strategies that tackles both endogenous and exogenous uncertainties, in order to minimize economic costs and guarantee service reliability of the system. The developed strategies have been applied to a hybrid system comprising some photovoltaic (PV) panels, a wind generator, a hydroelectric generator, a diesel generator, and some storage devices interconnected via a DC Bus. Additionally, a comparison between the standard EMPC, and its combination with MPC tracking in single-layer and two-layer approaches was also carried out based on the daily cost of energy production.
机译:解决异构系统中的能量分配问题并不是一件容易的事。考虑到需求和能源价格的不确定性,问题变得更加复杂。本文讨论了用于解决智​​能微电网中能量分配问题的几种基于经济模型预测控制(EMPC)的策略的开发。使用面向控制的模型方法描述智能电网组件。同时考虑负荷需求和能源价格的不确定性,并使用经济目标函数,将导致非线性非凸问题。使用仿射依赖控制器的技术被用来凸显该问题。这项研究的目的是开发一种基于EMPC策略的控制器,该控制器可以解决内在和外在的不确定性,从而最大程度地降低经济成本并保证系统的服务可靠性。已开发的策略已应用于包含一些光伏(PV)面板,风力发电机,水力发电机,柴油发电机以及一些通过DC总线互连的存储设备的混合系统。此外,还根据每日的能源生产成本,对标准EMPC及其与单层和两层方法中的MPC跟踪相结合进行了比较。

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