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首页> 外文期刊>IEEE Transactions on Power Delivery >Converter System Nonlinear Modeling and Control for Transmission Applications—Part I: VSC System
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Converter System Nonlinear Modeling and Control for Transmission Applications—Part I: VSC System

机译:传动系统的变流器系统非线性建模和控制—第一部分:VSC系统

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摘要

The high-power self-commutated voltage-source converter (VSC) and current source converter (CSC) are the key control devices in HVDC, flexible ac transmission systems (FACTS) and distribution FACTS systems. To achieve the expected control objectives, suitable control strategies must be implemented based on the available devices, system, and control techniques. The self-commutated ac/dc converters control the electrical power by generating controllable ac fundamental and dc average outputs. These controllable outputs are controlled by the conducting state combinations of the converter switching devices, driven by their gate signals. The gate signals are specified by fundamental parameters of frequency, amplitude, and phase angle. The converter system model for describing the relation between the system-state variables and the gate signal parameters is essential for the converter system control. This paper (part I) derives the state variable equations for transmission systems using VSC while the second paper (part II) is for the transmission systems using CSC. The self-commutated converter systems provide active and reactive power control flexibility, but their nonlinearity makes their control difficult. The linearized state equations by using feedback linearization are presented to enable the controller design by using linear control theory.
机译:大功率自整流电压源转换器(VSC)和电流源转换器(CSC)是HVDC,柔性交流输电系统(FACTS)和配电FACTS系统中的关键控制设备。为了实现预期的控制目标,必须基于可用的设备,系统和控制技术来实施适当的控制策略。自整流交流/直流转换器通过产生可控的交流基波和直流平均输出来控制电功率。这些可控输出由转换器开关器件的导通状态组合控制,并由它们的栅极信号驱动。选通信号由频率,幅度和相位角的基本参数指定。用于描述系统状态变量与栅极信号参数之间关系的转换器系统模型对于转换器系统控制至关重要。本文(第一部分)推导了使用VSC的传输系统的状态变量方程,而第二篇论文(第二部分)则针对了使用CSC的传输系统。自换相转换器系统提供了有功和无功功率控制的灵活性,但是它们的非线性使其控制变得困难。提出了利用反馈线性化的线性化状态方程,以利用线性控制理论进行控制器设计。

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