A new and straightforward method is proposed to determine rotor position sensor resolution for variable frequency drives based on a simple specification, namely the minimum required speed loop bandwidth at the lowest working speed. The study hinges upon operating point stability analysis of the speed loop and includes the effect of quantization harmonics introduced by the position sensor. A novel metric is also introduced to evaluate the filtering action of the speed loop on the said harmonics, i.e. the quantization harmonic rejection frequency response function. The efficacy of the approach is theoretically and experimentally analyzed on a 3.6 kW permanent magnet motor drive test bench

Novel Approach to Selecting Rotor Position Sensor Resolution for Variable Frequency Drives

Tornello Luigi Danilo
Primo
;
Scelba Giacomo;Scarcella Giuseppe
2025-01-01

Abstract

A new and straightforward method is proposed to determine rotor position sensor resolution for variable frequency drives based on a simple specification, namely the minimum required speed loop bandwidth at the lowest working speed. The study hinges upon operating point stability analysis of the speed loop and includes the effect of quantization harmonics introduced by the position sensor. A novel metric is also introduced to evaluate the filtering action of the speed loop on the said harmonics, i.e. the quantization harmonic rejection frequency response function. The efficacy of the approach is theoretically and experimentally analyzed on a 3.6 kW permanent magnet motor drive test bench
2025
Estimation
Position measurement
Rotors
Quantization (signal)
Harmonic analysis
Power harmonic filters
Stability analysis
Perturbation methods
Accuracy
Mathematical models
Electric drives
resolution
quantization
position measurement
speed estimation
motion control
speed control
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11769/662989
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