EDA365欢迎您登录!
您需要 登录 才可以下载或查看,没有帐号?注册
x
有关无刷电机的Simulink仿真的一篇论文,此论文来自瑞典一所大学的研究生论文,关于无刷电机的仿真。
1 c0 d. ], z7 B; f* v* \( p
& f% ^: g' Y# {' |+ QBLDC Motor Modelling and Control - A Matlab%/Simulink Implementation ) E6 ~: W& e! i: w& B
$ ]; {$ `) L0 j) O' i' q. L% G& p, C3 l9 i
Abstract
! F2 B& p$ F! _ O: X7 RThis thesis presents a model of a three phase star-connected brushless direct current (bldc) motor. The construction and operation of both conventional dc motors
6 ]! H7 t0 e" ~% S" \9 Qand bldc motors is presented and state-space models are derived for each. Matlab@ /Simulink@ models are developed for each motor type and their validity is verified. Torque-, speed- and position control is applied using hysteresis band control, pwm control, and variable dc- link voltage control.: ~4 b9 {" a( ?+ D: n' ]
The different control strategies are tested on the bldc motor and their peRFor-mance evaluated. The frequency content of the dc link current is investigated for each control method and the impact of commutation delay and switch-ing losses is discussed. Simulations show that all the control strategies work quite well although each method has its drawbacks. The frequency spectrum of the dc-link current shows that hysteresis band control may not be suitable where load variations are large. The variable dc-link voltage method turns out to be the best solution in applications where torque ripples and switching losses must me minimized. Commutation delay is necessary in practice, but- l& m1 n# B4 R* g
the simulations show that it should be kept as short as possible because it causes increased torque ripples.
: c, M( D) b1 U5 C! FKeywords: Brushless motors, bldc, modelling, control.' e }( b+ J+ L0 S9 j: ~
) S$ h, z8 P* {" t/ V5 p; R
9 P Y! u6 H8 T/ I1 l* Y. _& S5 u
|