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储能系统技术 储能系统 ★ 5.0

基于三桥臂与备用变换器的单相无变压器统一电能质量调节器

Single-Phase Transformerless Unified Power Quality Conditioner Based on Three-Leg and Standby Converters

语言:

中文摘要

本文提出了一种基于三桥臂和备用变流器的无变压器单相 - 单相统一电能质量调节器(UPQC)。该系统由一个两桥臂模块与一个三桥臂模块串联组成。所提出的控制系统可提供并联和串联补偿,并且设计为在额定条件和电压骤降事件下以高调制指数运行。此外,还提出了低备用功耗以及一种利用两桥臂模块补偿电压骤升的新型解耦方法。与传统解决方案相比,所提出的变流器具有更低的半导体损耗和更小的波形谐波失真,同时保持了相当或更优的运行特性,包括电压骤升补偿能力以及消除了环流和工频变压器。本文讨论了系统模型、标量脉宽调制(PWM)技术、应用的备用概念以及整体控制系统策略。给出了仿真和实验结果,以评估所提出系统的可行性和设计方法的正确性。

English Abstract

In this paper, a transformerless single-phase-to-single-phase unified power quality conditioner (UPQC) based on three-leg and standby converters is proposed. The system consists of a two-leg module series connected to a three-leg module. The proposed control system provides shunt and series compensation and can be designed to operate with a high modulation index under rated conditions and voltage sag events. In addition, a low standby power consumption and a new decoupling method to compensate voltage swells using the two-leg module are proposed. Compared to conventional solution, the proposed converter exhibits lower semiconductor losses and reduced waveform harmonic distortion, while maintaining equal or superior operational features, including voltage swell compensation capability and the elimination of circulating currents and line-frequency transformers. The system model, the scalar PWM technique, the applied standby concept, and the overall control system strategy are discussed. Simulations and experimental results are presented to evaluate the feasibility of the proposed system and the correctness of the design methodology.
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SunView 深度解读

该三桥臂无变压器UPQC技术对阳光电源ST系列储能变流器及SG系列光伏逆变器具有重要应用价值。其无变压器拓扑与三桥臂结构可直接借鉴至储能PCS设计,降低系统体积与损耗,提升功率密度。串并联协调控制策略可增强PowerTitan储能系统的电能质量治理能力,实现电压暂降补偿与谐波抑制功能。备用变换器冗余设计理念可提升大型储能电站的可靠性与故障穿越能力。该方案与阳光电源现有三电平拓扑及GFM构网型控制技术高度契合,可融入iSolarCloud平台实现智能诊断,为工商业储能及微电网应用提供一体化电能质量解决方案,增强产品市场竞争力。