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Quantization Errors in Digital Motor Control Systems

机译:数字电动机控制系统中的量化误差

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摘要

When implementing a motor control drive scheme digitally, the quantization errors always exist in the system. Two major sources of quantization errors are Analog-to-Digital (A-D) process and numerical calculation in the fixed-point computing device. Typically, the effects of quantization errors due to A-D conversion contribute less than one produced by numerical calculation. This paper studies the quantization errors in a sensorless direct vector control system of induction motor system using a 32-bit fixed-point Digital Signal Processor (DSP) from Texas Instruments (TMS320x28xx series). The investigation of quantization errors produced by numerical computation in such DSP is focused. Both simulation and experiment are carried out within DSP itself in three kinds of data formats; 16-bit fixed-point, 32-bit fixed-point, and floating-point. By comparing the results between floating-point and fixed-point implementation on one machine, numerical issues related to quantization errors can be verified and resolved. As a result, the system performance and behavior can be affected by quantization errors in 16-bit word length while it is not significant in the 32-bit word length.
机译:当以数字方式实施电动机控制驱动方案时,系统中始终存在量化误差。量化误差的两个主要来源是模数(A-D)处理和定点计算设备中的数值计算。通常,归因于A-D转换的量化误差的影响小于数值计算所产生的影响。本文研究了使用德州仪器(TMS320x28xx系列)的32位定点数字信号处理器(DSP)在感应电动机系统的无传感器直接矢量控制系统中的量化误差。着重研究在这种DSP中由数值计算产生的量化误差。仿真和实验都在DSP自身内部以三种数据格式进行; 16位定点,32位定点和浮点。通过在一台机器上比较浮点和定点实现的结果,可以验证和解决与量化误差有关的数值问题。结果,系统性能和行为可能会受到16位字长中量化误差的影响,而对于32位字长而言则不重要。

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