Investigation and Prediction of PWM-Induced Iron Loss in Lamination Steels Using High-Frequency Inverters with Wide-Bandgap Switches

In the below linked research paper published on the website IEEE Xplore, researchers from General Motors Global Propulsion Systems and Wisconsin Electric Machines and Power Electronics Consortium (WEMPEC), University of Wisconsin-Madison, use a Yokogawa Test&Measurement WT1800 High Performance Power Analyzer and PX8000 Precision Power Scope for high-stability measurements of voltage, current, and power loss.

  • Title: Investigation and Prediction of PWM-Induced Iron Loss in Lamination Steels Using High-Frequency Inverters with Wide-Bandgap Switches
  • Authors: Le Chang, Woongkul Lee, Thomas M. Jahns, Khwaja Rahman
  • Abstract: The availability of wide-bandgap (WBG) power switches makes it possible to excite electric machines with much higher PWM switching frequencies. This paper experimentally characterizes the magnetic and iron loss properties of lamination steels over a wide range of frequencies and magnetization states excited by a voltage-source inverter (VSI) using GaN-based WBG switches. With the collected hysteresis loop and iron loss data, a new frequency-interconnected dynamic Jiles-Atherton (J-A) model is developed explicitly for PWM-induced iron loss analysis. Experiments have been conducted to verify the model prediction accuracy over a broad range of operating conditions. The obtained results demonstrate that the model parameters identified from a limited number of frequency and amplitude conditions are sufficient to apply to a much broader range of conditions. The proposed model has been integrated with a dynamic hysteresis model devoted to fundamental field iron loss estimation, providing an accurate and efficient tool for total iron loss estimation during PWM voltage excitation using high-frequency WBG devices.

To access the full research paper, click here: Investigation and Prediction of PWM-Induced Iron Loss in Lamination Steels Using High-Frequency Inverters with Wide-Bandgap Switches

Related Industries

Related Products & Solutions

PX8000 - Precision Power Scope

  • Transient/Start-up Waveform Capture & Power Analysis
  • Harmonics, Cycle by cycle and FFT analysis

WT1800 High Performance Power Analyzer

The WT1800 Power Analyzer offers maximum flexibility with up to six wattmeter elements, high bandwidths, simultaneous high speed digitizing, and wide voltage and current ranges. Although this model is still available, the newer WT1800E offers higher accuracy.

Power Analyzers and Power Meters

Measure characteristics of devices that generate, transform or consume electricity. Also called power meters or wattmeters, these devices measure parameters such as true power (watts), power factor, harmonics, and efficiency.

Precision Making

Top