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Dual Angle Control for Line-Frequency-Switched Static Synchronous Compensators Under System Faults

机译:系统故障时线路频率切换静态同步补偿器的双角度控制

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摘要

Voltage-sourced converter (VSC)-based static synchronous compensators (STATCOMs) are used for voltage regulation in transmission and distribution systems. Unlike PWM-controlled STATCOMs, angle-controlled STATCOMs are switched at line frequency to limit the system losses. In recent years, angle-controlled STATCOMs have been deployed by utilities for the purpose of transmission system voltage regulation, voltage stability improvement, and increasing operational functionality. Despite the superior feature on voltage waveform quality and efficiency, the practical angle-controlled STATCOMs suffer from the over-current (and trips) and possible saturation of the interfacing transformers caused by negative sequence current during unbalanced conditions and faults in the utility. This paper specifically proposes a control structure to improve the angle-controlled STATCOMs performance under unbalanced conditions and faults. The main improvement is a substantial decrease in the negative sequence current and dc-link voltage oscillations under power system faults by the proposed control. This eliminates the need to redesign the STACOM power components to operate under fault current and dc-link voltage oscillations. The proposed control structure is designed based on adding appropriate oscillations to the conventional angle-controller output that is the control angle by which the VSC voltage vector leads/lags the line voltage vector. Since this control structure uses two angles for controlling the VSC output voltage, it is called dual angle control (DAC). PSCAD/EMTDC and experimental results verify the validity of the proposed control structure under unbalanced system conditions and faults. The experiments were conducted on a transient network analyzer, a unique hardware-based flexible ac transmission system simulator which was designed to study system faults and transients for a 2 × 100 MVA STATCOM field installation.
机译:基于电压源转换器(VSC)的静态同步补偿器(STATCOM)用于输配电系统中的电压调节。与PWM控制的STATCOM不同,角度控制的STATCOM以线路频率切换以限制系统损耗。近年来,公用事业公司已经部署了角度控制的STATCOM,用于传输系统电压调节,电压稳定性的提高和运行功能的提高。尽管电压波形质量和效率具有卓越的功能,但实际的角度控制STATCOM仍会受到不平衡状态和公用事业故障期间的负序电流所引起的过电流(和跳闸)以及接口变压器的可能饱和。本文专门提出一种控制结构,以改善不平衡条件和故障下角度控制的STATCOM的性能。主要的改进是通过所提出的控制,在电力系统故障下,负序电流和直流母线电压振荡的大幅降低。这消除了重新设计STACOM电源组件以在故障电流和直流链路电压振荡下工作的需要。提出的控制结构是基于在常规角度控制器输出上添加适当的振荡而设计的,该振荡是VSC电压矢量超前/滞后线电压矢量的控制角度。由于此控制结构使用两个角度来控制VSC输出电压,因此称为双角度控制(DAC)。 PSCAD / EMTDC和实验结果验证了所提出的控制结构在不平衡系统条件和故障下的有效性。实验在瞬态网络分析仪上进行,瞬态网络分析仪是一种独特的基于硬件的灵活交流输电系统模拟器,旨在研究2×100 MVA STATCOM现场安装的系统故障和瞬态。

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