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Stochastic Scheduling of Renewable and CHP-Based Microgrids

机译:可再生和基于CHP的微电网的随机调度

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摘要

Microgrids (MGs) are considered as a key solution for integrating renewable and distributed energy resources, combined heat and power (CHP) systems, as well as distributed energy-storage systems. This paper presents a stochastic programming framework for conducting optimal 24-h scheduling of CHP-based MGs consisting of wind turbine, fuel cell, boiler, a typical power-only unit, and energy storage devices. The objective of scheduling is to find the optimal set points of energy resources for profit maximization considering demand response programs and uncertainties. The impact of the wind speed, market, and MG load uncertainties on the MG scheduling problem is characterized through a stochastic programming formulation. This paper studies three cases to confirm the performance of the proposed model. The effect of CHP-based MG scheduling in the islanded and grid-connected modes, as well as the effectiveness of applying the proposed DR program is investigated in the case studies.
机译:微电网(MG)被认为是集成可再生能源和分布式能源,热电联产(CHP)系统以及分布式能源存储系统的关键解决方案。本文提出了一种随机编程框架,用于对基于CHP的MG进行24小时最佳调度,该MG由风力涡轮机,燃料电池,锅炉,典型的仅用电装置和储能设备组成。调度的目的是在考虑需求响应程序和不确定性的情况下找到用于利润最大化的能源最佳设定点。风速,市场和MG负载不确定性对MG调度问题的影响通过随机规划公式来表征。本文研究了三种情况,以确认所提出模型的性能。在案例研究中,研究了在孤岛和并网模式下基于CHP的MG调度的效果以及应用所提出的DR程序的有效性。

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