Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System
With the development of new energy technology, more and more plug-in electric vehicles (PEVs) have appeared in our lives. In vehicle to grid (V2G) information exchange, the method that PEVs use to access the grid for information and vehicular data collection is the key factor that affects the reliab...
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sg-ntu-dr.10356-868222021-01-14T07:24:02Z Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System Zhang, Liang Ma, Huanhuan Shi, Donghan Wang, Peng Cai, Guowei Liu, Xiaosheng School of Electrical and Electronic Engineering Energy Research Institute @ NTU (ERI@N) V2G Information Exchange Vehicular Power Line Communication With the development of new energy technology, more and more plug-in electric vehicles (PEVs) have appeared in our lives. In vehicle to grid (V2G) information exchange, the method that PEVs use to access the grid for information and vehicular data collection is the key factor that affects the reliability and real-time nature of V2G communication. Vehicular power line communication (VPLC) reuses vehicular power cables as a communication medium, which avoids the need for an additional vehicular communication line and optimizes the in-vehicle space. VPLC is being considered as a more competitive solution to reduce the complexity of design, weight, and cost associated with the rapid growth of electronic devices installed in vehicles, especially for PEVs. Nevertheless, there are factors that impact VPLC in such a way that disrupts reliability and introduces problems. One of these challenges is VPLC channel noise, which can reduce communication reliability. Hence, in this paper, we introduce a V2G information interaction system structure, based on power line communication, to establish a VPLC channel model for the vehicular data collection system. The model is developed in Simulink and leverages various vehicular noise models and binary frequency shift keying (BFSK) modulation; it also analyzes the channel characteristics by examining different types of noise based on BFSK. Our simulation results demonstrate the feasibility of PLC under BFSK modulation and demodulation, often used in PEVs, which could provide guidance to the implementation of VPLC in support of practical engineering. Published version 2018-01-08T05:12:33Z 2019-12-06T16:29:38Z 2018-01-08T05:12:33Z 2019-12-06T16:29:38Z 2017 Journal Article Zhang, L., Ma, H., Shi, D., Wang, P., Cai, G., & Liu, X. (2017). Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System. IEEE Access, 5, 12449-12457. https://hdl.handle.net/10356/86822 http://hdl.handle.net/10220/44258 10.1109/ACCESS.2017.2717452 en IEEE Access © 2017 IEEE. Translations and content mining are permitted for academic research only. Personal use is also permitted, but republication/redistribution requires IEEE permission. See http://www.ieee.org/publications_standards/publications/rights/index.html for more information. 9 p. application/pdf |
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V2G Information Exchange Vehicular Power Line Communication Zhang, Liang Ma, Huanhuan Shi, Donghan Wang, Peng Cai, Guowei Liu, Xiaosheng Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System |
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With the development of new energy technology, more and more plug-in electric vehicles (PEVs) have appeared in our lives. In vehicle to grid (V2G) information exchange, the method that PEVs use to access the grid for information and vehicular data collection is the key factor that affects the reliability and real-time nature of V2G communication. Vehicular power line communication (VPLC) reuses vehicular power cables as a communication medium, which avoids the need for an additional vehicular communication line and optimizes the in-vehicle space. VPLC is being considered as a more competitive solution to reduce the complexity of design, weight, and cost associated with the rapid growth of electronic devices installed in vehicles, especially for PEVs. Nevertheless, there are factors that impact VPLC in such a way that disrupts reliability and introduces problems. One of these challenges is VPLC channel noise, which can reduce communication reliability. Hence, in this paper, we introduce a V2G information interaction system structure, based on power line communication, to establish a VPLC channel model for the vehicular data collection system. The model is developed in Simulink and leverages various vehicular noise models and binary frequency shift keying (BFSK) modulation; it also analyzes the channel characteristics by examining different types of noise based on BFSK. Our simulation results demonstrate the feasibility of PLC under BFSK modulation and demodulation, often used in PEVs, which could provide guidance to the implementation of VPLC in support of practical engineering. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Zhang, Liang Ma, Huanhuan Shi, Donghan Wang, Peng Cai, Guowei Liu, Xiaosheng |
format |
Article |
author |
Zhang, Liang Ma, Huanhuan Shi, Donghan Wang, Peng Cai, Guowei Liu, Xiaosheng |
author_sort |
Zhang, Liang |
title |
Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System |
title_short |
Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System |
title_full |
Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System |
title_fullStr |
Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System |
title_full_unstemmed |
Reliability Oriented Modeling and Analysis of Vehicular Power Line Communication for Vehicle to Grid (V2G) Information Exchange System |
title_sort |
reliability oriented modeling and analysis of vehicular power line communication for vehicle to grid (v2g) information exchange system |
publishDate |
2018 |
url |
https://hdl.handle.net/10356/86822 http://hdl.handle.net/10220/44258 |
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1690658379171627008 |