Tanmay Tandel, U. Mate, Snehal Unde, Atul Gupta, Siddhartho Chaudhary
{"title":"Speed estimation of induction motor using TMS320F28335 digital signal processor","authors":"Tanmay Tandel, U. Mate, Snehal Unde, Atul Gupta, Siddhartho Chaudhary","doi":"10.1109/POWERI.2016.8077285","DOIUrl":null,"url":null,"abstract":"In the modern world, almost 90 percent of the motors used in the industry are induction motors. Induction motors are used in wide range of applications ranging from fans, pumps, compressors to their use in complex drives for critical application. As the world advances, newer applications come up which require robustness and complete operational control over an induction motor, when subjected to most adverse dynamic real time conditions. These applications need to be controlled using control techniques such as Field Oriented Control, which require the knowledge of induction motor. Use of sensors adds to the cost. If the machine parameters are known, it is possible to eliminate the use such costly hardware speed sensors and replace them with software speed estimators. Scope of this paper is design, simulation and implementation of speed estimation algorithm by estimating the rotor flux angle and slip in a Digital Signal Processor(DSP). The rotor flux angle and estimated speed can be used in sensor-less rotor field oriented control scheme. First, a code is developed for speed estimation of induction motor and is tested in MATLAB. Later, this code is ported to TMS320F28335 floating point DSP and is tested on a 415V, 3.3 HP 1430 RPM squirrel cage induction motor to estimate its speed in real-time.","PeriodicalId":332286,"journal":{"name":"2016 IEEE 7th Power India International Conference (PIICON)","volume":"1 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2016-11-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"2","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2016 IEEE 7th Power India International Conference (PIICON)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/POWERI.2016.8077285","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 2
Abstract
In the modern world, almost 90 percent of the motors used in the industry are induction motors. Induction motors are used in wide range of applications ranging from fans, pumps, compressors to their use in complex drives for critical application. As the world advances, newer applications come up which require robustness and complete operational control over an induction motor, when subjected to most adverse dynamic real time conditions. These applications need to be controlled using control techniques such as Field Oriented Control, which require the knowledge of induction motor. Use of sensors adds to the cost. If the machine parameters are known, it is possible to eliminate the use such costly hardware speed sensors and replace them with software speed estimators. Scope of this paper is design, simulation and implementation of speed estimation algorithm by estimating the rotor flux angle and slip in a Digital Signal Processor(DSP). The rotor flux angle and estimated speed can be used in sensor-less rotor field oriented control scheme. First, a code is developed for speed estimation of induction motor and is tested in MATLAB. Later, this code is ported to TMS320F28335 floating point DSP and is tested on a 415V, 3.3 HP 1430 RPM squirrel cage induction motor to estimate its speed in real-time.
在现代世界,工业中使用的电机几乎90%是感应电机。感应电机的应用范围很广,从风扇、泵、压缩机到关键应用的复杂驱动器。随着世界的进步,新的应用出现了,当受到最不利的动态实时条件时,需要对感应电机进行鲁棒性和完全的操作控制。这些应用需要使用控制技术进行控制,如磁场定向控制,这需要感应电机的知识。传感器的使用增加了成本。如果机器参数是已知的,就有可能消除使用这种昂贵的硬件速度传感器,并用软件速度估计器代替它们。本文的研究范围是在数字信号处理器(DSP)中通过估计转子磁链角和转差率来实现转速估计算法的设计、仿真和实现。转子磁链角和估计转速可用于无传感器转子定向控制方案。首先,编写了异步电动机转速估计代码,并在MATLAB中进行了测试。随后,将此代码移植到TMS320F28335浮点DSP上,并在一台415V, 3.3 HP 1430 RPM的鼠笼式异步电动机上进行测试,实时估算其转速。