Title :
Electrical parameter estimation considering the saturation effects in induction machines
Author :
Seixas, Paulo Fernando
Abstract :
This paper presents two methods to estimate the electrical parameters of induction motors to be applied at the self-commissioning phase. The first method considers the operation at linear conditions. From the linear model all parameters of the machine are estimated close to the rated operating point. After this, the saturation effects are included in the model and the magnetizing curve of the machine is obtained. In both cases the estimation procedures are based on its continuous-time model and is performed using the recursive least-squares algorithm (RLS). The use of the continuous time models requires the calculation of the derivatives of current and voltage measured signals, which are determined using polynomial interpolation (spline-type) techniques. To obtain all the electrical parameters the equivalent machine concept is defined. In order to avoid any machine intervention, only no-torque signals are used in the standstill tests. The conditions to produce these no-torque voltages with the PWM inverter, avoiding ripple torque generation, are analyzed. The paper includes experimental results which confirm the good performance of the proposed procedures
Keywords :
PWM invertors; induction motors; interpolation; least squares approximations; machine theory; magnetisation; parameter estimation; polynomials; splines (mathematics); PWM inverter; continuous-time model; current measured signals; electrical parameter estimation; electrical parameters estimation; induction machines; induction motors; linear model; magnetizing curve; no-torque voltages; polynomial interpolation; recursive least-squares algorithm; ripple torque generation avoidance; saturation effects; self-commissioning phase; spline; standstill tests; voltage measured signals; Continuous time systems; Current measurement; Induction motors; Parameter estimation; Phase estimation; Recursive estimation; Resonance light scattering; Saturation magnetization; Time measurement; Voltage measurement;
Conference_Titel :
Power Electronics Specialists Conference, 2000. PESC 00. 2000 IEEE 31st Annual
Conference_Location :
Galway
Print_ISBN :
0-7803-5692-6
DOI :
10.1109/PESC.2000.880538