用于电机控制单元的ADC-PWM同步

T. Likitha, Venkatanarasimharao Medam, G. Ranjani
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引用次数: 0

摘要

在电机控制单元中,精度和精度就是一切。本文提出了一种实现永磁同步电机磁场定向控制(FOC)的算法。虽然FOC在计算上更加复杂,但它可以带来更多的优势,如提高效率和全扭矩控制。该算法将模数转换器(ADC)和Flex定时器模块(FTM)同步,使得仅当三相逆变器的底部半导体导通时,就可以在脉宽调制器(PWM)脉冲中间同时测量两相电流。无论ADC是否能够精确测量,都有可能获得错误的数据。因此,电流传感的实例就显得尤为重要。这些定时实现由微控制器外设支持。微控制器(S32K144-EVB)非常通用,支持不同模块(ADC-PDB-TRGMUX-FTM)之间的互连。它们灵活的互联性有助于简化这些复杂的时序设计。
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ADC-PWM Synchronization for Motor Control Unit Development
In the motor control unit, the precision and accuracy are everything. In this paper we propose an algorithm as a part of the implementation of field-oriented control (FOC) of the permanent magnet synchronous motor (PMSM). Though FOC is more computationally complex, it can drive more advantages like improved efficiency and full torque control. The proposed algorithm synchronizes the Analog to digital converter (ADC) and Flex timer module (FTM) such that the two-phase currents can be measured simultaneously in the middle of the Pulse-width modulator (PWM) pulse only when the bottom semiconductors of three-phase inverters are turned on. Regardless of ADC being able to measure precisely there is chance for obtaining wrong data. So, the instance for current sensing is more important. These timing implementations are supported by the micro controller peripherals. The Microcontroller (S32K144-EVB) is very versatile and supports the interconnectivity between different modules (ADC-PDB-TRGMUX-FTM). Their flexible interconnectivity helps in simplifying these complicated timing designs.
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