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Effect of Carrier Frequency and Circuit Resistance on Iron Loss of Non‐Oriented Electrical Steel Sheet under Single‐Phase Full‐Bridge PWM Inverter Excitation
Authors:Hiroki Kaihara  Norio Takahashi  Masanori Nakano  Morio Kawabe  Takuma Nomiyama  Akira Shiozaki  Daisuke Miyagi
Affiliation:1. Department of Electrical and Electronic Engineering, Okayama University, Okayama City, Japan;2. Sinfonia Technology Co., Ltd, Ise City, Japan;3. Graduate School of Engineering, Tohoku University, Sendai, Japan
Abstract:Because of the development of power electronics technology, pulse width modulation (PWM) inverters are now being used to drive motors in order to achieve precise and energy‐efficient control. Precise estimation of the increase in iron loss due to the high harmonic components of flux, including the carrier frequency, is important in the design of motors excited by a PWM inverter. We measured the iron losses of non‐oriented electrical steel sheets that were excited using a single‐phase full‐bridge PWM inverter, and examined the influence of the carrier frequency and circuit resistance on the iron loss. We showed that the iron loss increased because of the generation of minor loops when the circuit resistance was high. Therefore, the circuit resistance should be decreased in an actual motor system.
Keywords:carrier frequency  circuit resistance  iron loss  magnetic properties  PWM  ring specimen
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