<p>Advancement in artificial intelligence and internet of things has driven short-range connectivity to a different level which eases human life. This has connected each and every house use appliances, electronic gadgets, and wearable devices via Bluetooth or WiFi and facility to control them via voice command or app-based systems. This advancement leads to a complex RF coexistence, interference, and exposure assessment to an essential evaluation. This paper reviews the existing electromagnetic compatibility (EMC) and electromagnetic interference assessment methods as per EMC standards for radiation emission and susceptibility requirements. In this direction, EM field measurement methods are reviewed spanning-open area test site, anechoic chamber, transverse electromagnetic cell, compact antenna test range, reverberation chamber, and near field scanning techniques. Each technique for EM field measurement proves to be application-driven and beneficial in many scientific aspects.</p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

EMC/EMI Compliance for Electromagnetic Field Measurement: An Overview

  • Abhinav Mishra,
  • Satya Kesh Dubey

摘要

Advancement in artificial intelligence and internet of things has driven short-range connectivity to a different level which eases human life. This has connected each and every house use appliances, electronic gadgets, and wearable devices via Bluetooth or WiFi and facility to control them via voice command or app-based systems. This advancement leads to a complex RF coexistence, interference, and exposure assessment to an essential evaluation. This paper reviews the existing electromagnetic compatibility (EMC) and electromagnetic interference assessment methods as per EMC standards for radiation emission and susceptibility requirements. In this direction, EM field measurement methods are reviewed spanning-open area test site, anechoic chamber, transverse electromagnetic cell, compact antenna test range, reverberation chamber, and near field scanning techniques. Each technique for EM field measurement proves to be application-driven and beneficial in many scientific aspects.