扭矩
控制理论(社会学)
安培
领域(数学)
控制(管理)
转子(电动)
电流(流体)
计算机科学
物理
工程类
电气工程
电压
人工智能
数学
纯数学
热力学
作者
Gabriel Gallegos-López,Fani S. Gunawan,James Walters
出处
期刊:IEEE Industry Applications Society Annual Meeting
日期:2006-10-01
卷期号:44: 104-110
被引量:6
标识
DOI:10.1109/ias.2006.256491
摘要
This paper presents a novel current regulation algorithm for induction machines that enables smooth operation and maximum torque-per-ampere capability over the entire field-weakened region. The algorithm enables robust current regulation with maximum torque capability despite significant variation in voltage source and machine parameters. The algorithm identifies when the current regulator begins to saturate and determines the optimum d-axis current command for the machine. The q-axis current command is determined as a function of the torque command and the d-axis current feedback. In the field-weakened region, the q-axis current is monitored not to exceed the maximum q-axis current. The maximum q-axis current is calculated based on the maximum slip frequency, which is a function of rotor frequency, q-axis current ges maximum q-axis current (in motoring mode) indicates that the machine entered field-weakened region II, and the q-axis current is limited to its maximum value. Experimental results from a machine prototype show that the algorithm provides good overall dynamic response and smooth transitions into the field-weakened region with maximum torque-per-ampere capability in all four quadrants of operation
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