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Design of an electric spring for power quality improvement in PV-based DC grid

机译:用于提高光伏直流电网电能质量的电弹簧设计

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Electric Spring (ES) concept has been emerged based on the mechanical spring concept. ES can be employed in AC or DC grid for demand side management, and improving the power quality and energy management. Renewable Energy Sources (RESs) are intermittent in nature, so the ES is introduced in the DC grid for stabilizing the voltage fluctuations incurred by the RESs power changes such as PV systems. The DC ES is inserted in the DC grid in series with the non-critical loads (e.g. thermostatically controlled loads as air conditioning systems, electric water heaters and refrigerators or charging of charging of plug in electric vehicles) forming a smart load. In this paper, a comparison between the series and shunt DC ES is held considering four different operation modes. An ES based on four-quadrant DC-DC converter is analyzed and designed for providing a bi-directional power flow. To explore the effect of the series ES on the non-critical load, simulation results for both open and closed loop operations, using Matlab/Simulink, are shown to validate the presented approach. Moreover, experimental results are presented for a prototyped ES.
机译:基于机械弹簧概念出现了电动弹簧概念。 ES可用于AC或DC网格,用于需求侧管理,提高电能质量和能源管理。可再生能源(RESS)本质上是间歇性的,因此ES在DC网格中引入,以稳定RESS功率变化如PV系统所产生的电压波动。 DC ES与非临界负载串联插入DC网格(例如,恒温控制负载作为空调系统,电动热水器和冰箱或电动车辆充电的充电)形成智能负载。在本文中,考虑四种不同的操作模式,保持系列和分流DC ES之间的比较。分析并设计基于四象限DC-DC转换器的ES,用于提供双向功率流。为了探讨系列ES对非关键负载的影响,显示使用MATLAB / Simulink的开放和闭环操作的仿真结果,以验证所提出的方法。此外,提出了实验结果以进行原型ES。

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