首页 | 本学科首页   官方微博 | 高级检索  
     

一种新的基于需求侧响应下光储微电网运行策略
引用本文:李丙才,张小勇,陈敏勇,穆书航.一种新的基于需求侧响应下光储微电网运行策略[J].电子测试,2020(2):36-39,49.
作者姓名:李丙才  张小勇  陈敏勇  穆书航
作者单位:兰州理工大学;国家电网甘肃兰州供电公司
摘    要:为了能达到光储微电网经济效益最大化,以及在经济效益最大化的同时,保证光储微电网的稳定性。从而提出一种新的基于需求侧响应下光储微电网运行策略即通过调整可转移负荷的工作时间,对可转移负荷进行重置安排,减少配电容量,以及利用不同用电时段制定不同的电价制度即分时电价,人为调控电力需求量,实现削峰填谷的效果,从而提高微网的稳定性。为了使得微电网有最大的经济收益,利用博弈论的方法,继而找到转移负荷用户、分时电价用户、储能方的Nash均衡点。

关 键 词:光储微电网  需求侧响应  可转移负荷  分时电价  博弈论  NASH均衡点

A new operation strategy of optical storage microgrid based on demand side response
Li Bingcai,Zhang Xiaoyong,Chen Minyong,Mu Shuhang.A new operation strategy of optical storage microgrid based on demand side response[J].Electronic Test,2020(2):36-39,49.
Authors:Li Bingcai  Zhang Xiaoyong  Chen Minyong  Mu Shuhang
Affiliation:(Lanzhou University of Technology,Lanzhou Gansu,730000;State Grid Gansu Lanzhou Power Supply Company,Lanzhou Gansu,730000)
Abstract:In order to maximize the economic benefits of the optical storage microgrid and maximize the economic benefits,the stability of the optical storage microgrid is guaranteed.Therefore,a new operation strategy based on the demand side response of the optical storage microgrid is proposed,that is,by adjusting the working time of the transferable load,resetting the transferable load,reducing the distribution capacity,and making different use of different power consumption periods.The electricity price system is the time-sharing electricity price,artificially regulating the demand for electricity,realizing the effect of cutting peaks and filling the valley,thus improving the stability of the microgrid.Then use game theory to find the Nash equilibrium point of the load user and the time-of-use electricity price user and the energy storage party under the combination of the strategy,and achieve the maximum benefit of the optical storage microgrid.
Keywords:optical storage microgrid  demand side response  transferable load  time-of-use electricity price  game theory  Nash equilibrium point
本文献已被 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号