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Effect of power factor on torque capability of FOC induction machine in field weakening region for propulsion systems

机译:功率因数对推进系统弱化区域FOC诱导机的扭矩能力

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摘要

Propulsion system used in applications like electric traction, rolling stock, etc. requires high torque at low speed for starting and climbing and nearly constant power at high speed. Induction machines, which are rugged, reliable, low cost and has less maintenance, satisfy the characteristics of the propulsion and reinstating the traditionally used DC series motor for this purpose. Field oriented control (FOC) of induction machines can decouple its torque control from field control and extended speed range operation with constant power beyond rated speed by field weakening (FW). It is desirable to retain maximum torque capability in the FW region for propulsion applications at high speed. To produce maximum torque that machine could possibly develop at FW region, the maximum inverter voltage and current must be appropriately utilized. This paper proposes an innovative approach to improve the torque capability of induction machine in FW region by modifying the design of induction machine to change the bahaviour of the machine to suit propulsion requirements. Extensive simulation of the design options generated from the design modification has been carried out using MATLAB/Simulink and torque-speed characteristics are compared.
机译:在电牵引力,滚动储备等应用中使用的推进系统需要在低速时以高速扭矩,以高速启动和攀爬,几乎恒定的功率。感应机器,可靠,可靠,低成本,维护较少,满足推进的特点,为此目的恢复传统使用的DC系列电机。电源导向机的控制(FOC)可以通过现场弱化(FW)与恒定功率恒定的电源恒定功率与现场控制和扩展速度范围操作耦合其扭矩控制。希望以高速将FW区域保留在FW区域中的最大扭矩能力。为了产生最大扭矩,该机器可能在FW区域发育,必须适当地利用最大逆变器电压和电流。本文提出了一种创新的方法,通过改变感应机的设计来改变机器的Bahaviour来改变机器的扭矩能力的创新方法来改变机器的Bahavious以适应推进要求。使用MATLAB / SIMULINK进行了从设计修改生成的设计选项的广泛模拟,并比较了扭矩速度特性。

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