To: Author

Article Fingerprint
ReserarchID
RE8736T
Choose where you want to hide AI Takeaway. Your site-wide choice will be remembered in this browser.
In this paper, the generation mechanism of radiated EMI noise in inverter circuit is analyzed. On the basis of analyzing the equivalent model of common mode and differential mode radiated EMI noise, the radiated EMI noise is separated by common mode and differential mode by using the fast Fourier transform principle. The effectiveness of the radiated EMI noise separation method is verified by experiments.
Lingxiang Deng, Pengfei Li, Wanning Bai, Jian Chen, Juhao Fang, Qiangqiang Liu. 2019. "Radiated Electromagnetic Interference (EMI) Mechanism of High Power Inverter". Global Journal of Research in Engineering, Global Journal of Research in Engineering - F: Electrical & Electronic GJRE-F Volume 19 (GJRE Volume 19 Issue F3).
Crossref Journal DOI 10.17406/gjre
Print ISSN 0975-5861
e-ISSN 2249-4596
v1.2
Explore published articles in an immersive Augmented Reality environment. Our platform converts research papers into interactive 3D books, allowing readers to view and interact with content using AR and VR compatible devices.
Your published article is automatically converted into a realistic 3D book. Flip through pages and read research papers in a more engaging and interactive format.
Total Score: 136
Country: China
Subject: Global Journal of Research in Engineering
Authors: Lingxiang Deng, Pengfei Li, Wanning Bai, Jian Chen, Juhao Fang, Qiangqiang Liu (PhD/Dr. count: 0)
View Count (all-time): 347
Total Views (Real + Logic): 1183
Total Downloads (simulated): 59
Publish Date: 2019 01, Tue
Monthly Totals (Real + Logic):
We use cookies and similar technologies to improve site performance, understand traffic, and enhance your publishing experience. Cookie Policy
Choose which optional cookies Global Journals can use. Your preference applies across this platform and can be updated any time.
These cookies are required for core website functionality and security.
Lorem ipsum dolor sit amet, consectetur adipiscing elit. Ut elit tellus, luctus nec ullamcorper mattis, pulvinar dapibus leo.