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Hybrid-DC Electric Springs for DC Voltage Regulation and Harmonic Cancellation in DC Microgrids

机译:用于直流微电网中直流电压调节和谐波消除的混合直流电弹簧

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摘要

DC electric springs (DCES) are emerging technologies for the (i) regulation of mains voltage against the intermittent renewable generations and (ii) harmonic cancellation in dc microgrids. When conventional converter topologies (e.g., half-bridge or full-bridge converter) are adopted as DCES, the battery storage of the DCES has to process both the dc power and the ac harmonic power. The pulsating ac power can severely reduce the lifetime of the battery. To address this issue, a hybrid-DCES (H-DCES) is proposed in this paper to perform (i) and (ii) in a decoupled manner. With a modified topology and control method, the H-DCES can divert the ac current to the ground and retains the function of manipulating noncritical load for dc voltage regulation. The immediate benefits of this H-DCES are the reduction of storage capacity and a prolonged lifetime of the battery. Both the operating principle and the mathematical model of the proposed H-DCES are analyzed in this paper. A prototype of the H-DCES is practically tested in a 48-V dc grid. The experimental results show that the H-DCES can realize the decoupled operation of dc voltage regulation and harmonic cancellation. Simulation studies further demonstrate that the H-DCES requires less storage capacity than its counterparts.
机译:直流电弹簧(DCES)是新兴技术,用于(i)调节间歇性可再生能源的电源电压,以及(ii)直流微电网中的谐波消除。当采用常规的转换器拓扑结构(例如半桥或全桥转换器)作为DCES时,DCES的电池存储必须同时处理直流电和交流谐波电。交流电脉动会严重缩短电池寿命。为了解决这个问题,本文提出了一种混合DCES(H-DCES),以解耦的方式执行(i)和(ii)。通过改进的拓扑和控制方法,H-DCES可以将交流电流转移到地面,并保留为直流电压调节而操纵非关键负载的功能。这种H-DCES的直接好处是减少了存储容量并延长了电池寿命。本文分析了所提出的H-DCES的工作原理和数学模型。 H-DCES的原型已在48V直流电网中进行了实际测试。实验结果表明,H-DCES可以实现直流稳压和谐波消除的解耦操作。仿真研究进一步表明,H-DCES比其同类产品需要更少的存储容量。

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