Investigation of electromagnetic noise in an induction cooktop by examining circular membrane vibration modes in terms of their harmonics

Author:

Yun Gyeonghwan1ORCID,Lee Sangjin1ORCID,Lukman Grace Firsta1ORCID,Lee Cheewoo1ORCID

Affiliation:

1. Electrical Engineering Department, Pusan National University , Busan 46241, Republic of Korea

Abstract

In this study, the mechanism of vibration and noise is analytically investigated in an induction cooktop (IC). By employing the method of an electric motor in estimating its vibration performance, it is found that air-gap force normal to the glass surface is a main source in an IC. Three different types of a cookware in terms of its material are compared as a part of load, and the pattern of their vibration is scrutinized by means of a membrane. It is noted that the mode of vibration in an IC is the circular shape of a membrane. Spatial and temporal harmonics in normal force are obtained through a three-dimensional Fast Fourier transform. This study is focused on spatial harmonic orders in a cylindrical coordinate to determine the dominant mode of vibration, and experimental verification has been performed to prove the feasibility of this proposal.

Publisher

AIP Publishing

Reference13 articles.

1. Induction heating appliances: Toward more flexible cooking surfaces;IEEE Industrial Electronics Magazine,2013

2. Simple resistance calculation in litz-wire planar windings for induction cooking appliances;IEEE Transactions on magnetics,2005

3. Frequency-dependent resistance in litz-wire planar windings for domestic induction heating appliances;IEEE Transactions on Power Electronics,2006

4. The domestic induction heating appliance: An overview of recent research,2008

5. Analysis and modeling of planar concentric windings forming adaptable-diameter burners for induction heating appliances;IEEE transactions on Power Electronics,2011

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