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SIMULATION OF SOME OF THE POWER ELECTRONICS CASE STUDIES IN MATLAB SIMPOWSYSTEM TOOLBOX

机译:Matlab Simpowsystem工具箱中一些电力电子案例的仿真

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Matlab SimPowerSystems is a modern design tool that allows scientists and engineers to rapidly and easily build models that simulate power systems. Not only can you draw the circuit topology rapidly, but your analysis of the circuit can include its interactions with mechanical, thermal, control, and other disciplines. The paper covers some case studies that provide detailed, realistic examples of how to use SimPowerSystems in power system analysis. The following types of studies is coverted on the paper: 1. Thyristor-Based Static Var Compensator: Study the steady-state and dynamic performance of a static var compensator (SVC) on a transmission system. 2. Transient Stability of a Power System with SVC and PSS: Study of the application of static var compensator (SVC) and power system stabilizers (PSS) to improve transient stability and power oscillation damping of the system. 3. GTO-Based STATCOM: Study the steady-state and dynamic performance of a static synchronous compensator (STATCOM) on a transmission system. 4. Control of load flow using UPFC: Study the steadystate and dynamic performance of a unified power flow controller (UPFC). 5. Chopper-Fed DC Motor Drive: Study of a DC motor drive with armature voltage controlled by a GTO thyristor chopper. 6. VSC-Based HVDC Link: Modeling of a forcedcommutated Voltage-Sourced Converter high-voltage direct current (VSC-HVDC) transmission link. 7. Three-Phase Network with Electrical Machines: Simulation of a three-phase power system containing electrical machines and other three-phase models. 8. Variable-Frequency Induction Motor Drive: Study of a PWM inverter-driven variable-frequency AC induction motor in variable-voltage, variable-speed operation.
机译:Matlab SimPowersystems是一种现代设计工具,允许科学家和工程师快速且轻松地构建模拟电力系统的模型。您不仅可以快速绘制电路拓扑,但您对电路的分析可包括其与机械,热,控制和其他学科的相互作用。纸张涵盖了一些案例研究,提供了如何在电力系统分析中使用Simpowersystems的详细,现实的示例。纸质上覆盖了以下类型的研究:1。基于晶闸管的静态VAR补偿器:研究静态VAR补偿器(SVC)对传输系统的稳态和动态性能。 2.具有SVC和PSS的电力系统的瞬态稳定性:静态VAR补偿器(SVC)和电力系统稳定器(PSS)应用的研究,提高系统的瞬态稳定性和功率振荡阻尼。 3.基于GTO的Statcom:研究静态同步补偿器(Statcom)对传输系统的稳态和动态性能。 4.使用UPFC控制负载流量:研究统一电流控制器(UPFC)的稳态和动态性能。 5.斩波器送入直流电机驱动器:通过GTO晶闸管斩波器控制的电枢电压的直流电机驱动。 6.基于VSC的HVDC链路:强制性电压转换器的建模高压直流(VSC-HVDC)传输链路。 7.带电气机的三相网络:仿真含有电机的三相电力系统和其他三相模型。 8.可变频率感应电动机驱动:在可变电压,变速操作中的PWM逆变器驱动可变频率交流电动机的研究。

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