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Building-centric investigation into electric vehicle behavior: A survey-based simulation method for charging system design.

Authors :
Liu, Xiaochen
Fu, Zhi
Qiu, Siyuan
Li, Shaojie
Zhang, Tao
Liu, Xiaohua
Jiang, Yi
Source :
Energy. May2023, Vol. 271, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Demand-side decarbonization and electrification promote a strong coupling between electric vehicles (EVs) and buildings. From a building-centric perspective, this paper established a survey-based simulation platform for charging system design, which supports annual simulations with a 15-min interval. Field survey data of private vehicles in two office buildings located in Beijing (a metropolis) and Ruicheng (a county in China) were used as inputs and for validation. The platform was applied to analyze workplace charging and give suggestions for charging system design. First, the city size greatly influences vehicle behavior and charging demands. This study indicates an unusual double-peak charging demand on weekdays in the county case due to different vehicle behavior from the urban cases. Second, slow charging at workplaces can almost meet the intra-urban travel demand of private EVs. Specifically, chargers with a rated power of 3–4 kW can achieve a guarantee level of EV use of SOC 0.999 = 20%. Third, the low solar self-consumption rate of current PV charging systems (generally 18%∼42%) mainly results from significant PV surpluses on weekends and in summer. These findings emphasize building-centric planning of EV-related infrastructures and proper charging strategies for energy interaction between EVs and buildings. [Display omitted] • Electric vehicle (EV) behavior is investigated from a building-centric perspective. • A simulation platform is developed for charging system design (τ = 1 yr, Δ τ = 15 min). • City size greatly influences vehicle behavior and charging demands. • Slow charging at workplace can meet the intra-urban travel demand of private EVs. • PV surpluses on weekends and in summer result in low solar power self-consumption. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03605442
Volume :
271
Database :
Academic Search Index
Journal :
Energy
Publication Type :
Academic Journal
Accession number :
162762150
Full Text :
https://doi.org/10.1016/j.energy.2023.127010