A modular multilevel converter for series compensation of an EVH transmission line with battery energy storage

Andrew Dodson, Roy McCann
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引用次数: 3

Abstract

This paper presents the design and analysis of a converter for integrating energy storage into the transmission grid. The system consists of a Battery Energy Storage System (BESS) interfaced to a Modular Multi-level Impedance Sourced Converter (MMZSC) acting as a bidirectional controllable source for a three phase isolating transformer arranged in a Series Compensation (SC) configuration that is dual-purposed for both power flow control and transient stability of distributed generation that is weakly coupled to the surrounding power system. The design example is detailed with respect to considerations of interfacing to 345 kV lines. First, a qualitative design review is given with respect to limitations of current technology and valuable improvements made possible by this paper's combination of system configuration, topology, and device considerations. A description is given of how the converter is operated via a modified space vector modulation scheme in conjunction with a sliding-mode direct power control method. Computer simulations are included that demonstrate operating modes of this system; including bidirectional power flow, superior efficiency, reduced DC impedance requirements, and lower distortion than equivalent voltage source converters (VSC). This paper provides a new contribution by combining the elements of bidirectional power flow with a multi-level Z-source converter. In addition the justification for this system as the best candidate for providing the grid regulation functions is considered.
一种用于电池储能EVH传输线串联补偿的模块化多电平变换器
本文介绍了一种将储能系统集成到输电网中的变换器的设计和分析。该系统由一个电池储能系统(BESS)和一个模块化多级阻抗源变换器(MMZSC)组成,该变换器作为一个双向可控源,为一个三相隔离变压器提供串联补偿(SC)配置,同时用于功率流控制和与周围电力系统弱耦合的分布式发电的暂态稳定。设计实例详细介绍了与345千伏线路对接的考虑。首先,针对当前技术的局限性和本文结合系统配置、拓扑结构和器件考虑而实现的有价值的改进,给出了定性设计审查。描述了如何通过改进的空间矢量调制方案结合滑模直接功率控制方法来操作变换器。计算机仿真演示了该系统的工作模式;包括双向功率流,优越的效率,降低直流阻抗要求,以及比等效电压源转换器(VSC)更低的失真。本文将双向潮流元件与多电平z源变换器相结合,提供了新的贡献。此外,还考虑了该系统作为提供电网调节功能的最佳候选者的合理性。
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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