Optimal Planning of CHP-based Microgrids Considering DERs and Demand Response Programs

Saeid Qaeini, M. S. Nazar, M. Shafie‐khah, G. Osório, J. Catalão
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引用次数: 2

Abstract

This work addresses a stochastic framework for optimal operation and long-term expansion planning of combined heat and power based microgrid as a part of an active distributing system. The microgrid utilizes renewable energy sources, electricity and heat generation units, energy storage systems, and demand response programs. The proposed model determines the optimal location and capacity of the electrical and thermal facilities, and it considers the impact of renewable energy sources and demand response on the expansion-planning problem. A stochastic mixed-integer linear programming formulation is utilized to minimize the investment and operation costs of system for five years. To evaluate the effectiveness of the proposed model, the algorithm is assessed for the 9-bus system and the 33-bus IEEE test systems. The results demonstrate that the utilization of the proposed algorithm reduces the operational cost and increases system revenues.
考虑DERs和需求响应方案的热电联产微电网优化规划
本研究提出了一个随机框架,用于作为主动配电系统一部分的热电联产微电网的优化运行和长期扩展规划。微电网利用可再生能源、电力和热能发电装置、能源储存系统和需求响应程序。该模型确定了电力和热力设施的最优位置和容量,并考虑了可再生能源和需求响应对扩建规划问题的影响。利用随机混合整数线性规划公式,使系统五年的投资和运行成本最小化。为了评估该模型的有效性,对该算法在9总线系统和33总线IEEE测试系统中进行了评估。结果表明,该算法降低了系统运行成本,提高了系统收益。
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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