电气技术  2017, Vol. 18 Issue (12): 157-162    DOI:
技术与应用 |
一种可与市电并联的分布式发电储能离网逆变器控制方法及应用
孙玉鸿1, 严蕾2
1. 上海追日电气有限公司,上海 200331;
2. 山东省水利勘测设计院,济南 250014
The Control Method of a Distributed PV Energy Storage Off-line Inverter in Parallel with Grid and its Application
Sun Yuhong1, Yan Lei2
1. Shanghai Surpass Sun Electric Co., Ltd, Shanghai 200331;
2. Shandong Survey and Design Institute of Water Conservancy, Ji'nan 250014;
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摘要 本文提出了一种新的储能型分布式发电离网逆变器控制方案:当市电正常时,可并网运行,供给负载运行所需的大部分能量;当市电不正常时,快速切换到离网运行,确保重要负荷的不间断供电。方案采用双向BUCK-BOOST电路实现小容量分布式光伏发电离网或并网运行,从而优化并降低户用型光伏发电储能系统的配置成本,提高动力电池的综合利用率。通过调节光伏储能离网逆变并联市电输出的相位和幅值,使市电提供负载大部分功率的同时,该逆变器的并网电流和市电之间只存在给定的相位差,从而有效提高系统运行的功率因数。
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关键词 储能离网逆变器市电功率因数光伏微网    
Abstract:The paper proposes a novel control strategy for distributed energy storage off-line inverter. When the grid is normal, the inverter with the proposed control method can work in parallel with the grid and most load power consumption can be supplied by the grid. When the grid is abnormal, the inverter works in off-line mode quickly in order to supply power to important load uninterruptly. In the other hand, a BUCK-BOOST circuit with power double flow topology is used, therefore, small capacity power battery can satisfy the application in distributed energy storage system. Accordingly the cost of system hardware can be decreased, and the using efficiency of the energy storage battery can be increased. By way of adjusting the amplitude and phase of the output voltage and making the output current phase of the inverter deviate the given angle with the utility current, the electric energy of storage battery not only can be saved, the high power factor can be also be achieved for utility supply source.
Key wordsenergy storage    off-line inverter    utility    power factor    PV micro grid   
     出版日期: 2018-01-22
作者简介: 孙玉鸿(1967-),男,高级工程师,主要从事新能源转换与微电网储能、智能电网系统技术研究。
引用本文:   
孙玉鸿, 严蕾. 一种可与市电并联的分布式发电储能离网逆变器控制方法及应用[J]. 电气技术, 2017, 18(12): 157-162. Sun Yuhong, Yan Lei. The Control Method of a Distributed PV Energy Storage Off-line Inverter in Parallel with Grid and its Application. Electrical Engineering, 2017, 18(12): 157-162.
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https://dqjs.cesmedia.cn/CN/Y2017/V18/I12/157