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A new design tool to protect industrial long-cable PWM ASD systems against high-frequency overvoltage problems

机译:一种新型设计工具,可保护工业长电缆PWM ASD系统免受高频过压问题的影响

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摘要

This work presents a new tool for use in the design of long-cable adjustable-speed drive (ASD) systems. It allows coordination between the inverter, the motor and the cable type and length in order to protect the motor against overvoltages due to the reflected wave. Detailed mathematical formulas describing the transient voltage and current along the cable are first developed in the frequency domain. Then, by applying the boundary conditions at the cable ends and assuming a lossless cable, delay equations are developed in the time domain. Using these equations, an appropriate simulation scheme is built with the SimPowerSystems (SPS) and Simulink modules of the MATLAB software environment to compute the high-frequency overvoltages (and their associated currents) at the ends of the feeding cable. The proposed tool has been applied to a 5kVA industrial ASD prototype using a four-wire shielded long cable. The paper includes simulation results and experimental validations.
机译:这项工作提出了一种用于设计长电缆可调速驱动器(ASD)系统的新工具。它允许逆变器,电动机以及电缆类型和长度之间的协调,以保护电动机免受反射波引起的过电压。首先在频域中开发出描述沿电缆的瞬态电压和电流的详细数学公式。然后,通过在电缆末端应用边界条件并假设无损耗电缆,可以在时域中建立延迟方程。使用这些方程式,可以使用MATLAB软件环境的SimPowerSystems(SPS)和Simulink模块构建适当的仿真方案,以计算馈电电缆末端的高频过电压(及其相关电流)。拟议的工具已使用四线屏蔽长电缆应用于5kVA工业ASD原型。该论文包括仿真结果和实验验证。

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