Optimal Operation of Multi-energy Complementary Microgrid with Cooling, Thermal and Electricity Load

Lingling Tan, Panbao Wang, W. Wang, Dianguo Xu
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Abstract

With the rapid development of microgrid (MG), the optimal operation of MG is one of the key technologies researched in the power field currently. The optimal operation is very important to the management of microgrid. This paper proposes a complementary microgrid that inputs solar energy and natural gas energy, supplying three types of loads: cooing, heat, electricity. Based on establishing a mathematical model for device in the microgrid, a model for optimizing operation of the complementary microgrid considering the different loads in different seasons is proposed. This model considers the multiple demands for three types of loads, and aims at the lowest total operation and maintenance cost of the multienergy complementary microgrid. During the operation, the optimization strategy of “Follow Electricity Load” is adopted to solve the mismatching of multiple loads. Finally, through the case study of the complementary microgrid based on the student dormitory, the energy consumption and total operation and maintenance cost are compared with separate supply system for cooling, thermal and electricity load, which verifies the feasibility and economy of the proposed model for optimizing operation.
冷、热、电负荷下多能互补微电网的优化运行
随着微电网的快速发展,微电网的优化运行是当前电力领域研究的关键技术之一。优化运行对微电网的管理具有重要意义。本文提出了一种互补的微电网,该微电网输入太阳能和天然气能源,提供三种类型的负荷:制冷、热能和电力。在建立微网内设备数学模型的基础上,提出了考虑不同季节不同负荷的互补微网优化运行模型。该模型考虑了三种负荷的多重需求,以多能互补微电网的总运行维护成本最低为目标。在运行过程中,采用“跟随电力负荷”的优化策略,解决多负荷不匹配问题。最后,通过以学生宿舍为基础的互补微电网为例,对比了冷、热、电负荷分供系统的能耗和总运行维护成本,验证了所提模型优化运行的可行性和经济性。
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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