Electromagnetic Interference of Power Converter with Random Modulation on the Power Line Communication System

Author:

Beshir Abduselam HamidORCID,Wan LuORCID,Grassi FlaviaORCID,Crovetti Paolo StefanoORCID,Liu XiaokangORCID,Wu XinglongORCID,El Sayed WaseemORCID,Spadacini Giordano,Pignari Sergio Amedeo

Abstract

Random Pulse Width Modulation (RPWM) allows controlling the switching signal of power converters in order to reduce the harmonic peaks by spreading the noise spectrum. Currently, many manufacturers of power converters are deploying this modulation scheme in order to comply with Electromagnetic Compatibility (EMC) test requirements. However, when the converters coexist with Power Line Communication (PLC) systems, such as in Smart Grid (SG) applications, resorting to RPWM needs further investigations since it potentially affects the communication channel by increasing the bit error rate. This possible detrimental effect is investigated in this work, by considering a PLC system for automatic meter reading (AMR) implemented in a SG application. To this end, the model of a complete PLC system is implemented in SIMULINK, and Quadrature Phase Shift Keying (QPSK) modulation is used to model the PLC modems in the communication channel. Results show that, even if the deployment of RPWM techniques may lead to an appreciable reduction/spreading of the peaks in the noise spectrum, it may also lead to an increase of the bit error rate on the PLC system.

Funder

European Union’s Horizon 2020 research and innovation program under the Marie Skłodowska-Curie

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

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1. Recent Advances in Electromagnetic Interference Suppression;Highlights in Science, Engineering and Technology;2023-11-28

2. Techniques and Challenges in Conducted EMI Analysis of Renewable Energy Systems;2023 2nd International Conference on Power Systems and Electrical Technology (PSET);2023-08-25

3. Behavioral Model of G3-Powerline Communication Modems for EMI Analysis;Energies;2023-04-09

4. Effects of the Switching Frequency of Random Modulated Power Converter on the G3 Power Line Communication System;2022 International Symposium on Electromagnetic Compatibility – EMC Europe;2022-09-05

5. Influence of Random Modulated Power Converter on G3 Power Line Communication;Applied Sciences;2022-05-30

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