Optimization of Bi-Directional V2G Behavior With Active Battery Anti-Aging Scheduling

The bi-directional linkage between the power grid and electric vehicles (EVs) enables flexible, cheap and fast-responding use of vehicle batteries in the grid. However, the battery aging effects due to the additional operation cycles caused by Vehicle-to-Grid (V2G) service and the concern of the bat...

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Main Authors: Shuangqi Li, Jianwei Li, Chang Su, Qingqing Yang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8951120/
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spelling doaj-5ca65c5bf9cc43fc92c289d54959022f2021-03-30T03:17:00ZengIEEEIEEE Access2169-35362020-01-018111861119610.1109/ACCESS.2020.29646998951120Optimization of Bi-Directional V2G Behavior With Active Battery Anti-Aging SchedulingShuangqi Li0https://orcid.org/0000-0002-2935-8546Jianwei Li1https://orcid.org/0000-0002-4799-2612Chang Su2https://orcid.org/0000-0002-9675-2228Qingqing Yang3https://orcid.org/0000-0002-5829-5863National Engineering Laboratory for Electric Vehicles and Collaborative Innovation Center of Electric Vehicles in Beijing, School of Mechanical Engineering, Beijing Institute of Technology (BIT), Beijing, ChinaNational Engineering Laboratory for Electric Vehicles and Collaborative Innovation Center of Electric Vehicles in Beijing, School of Mechanical Engineering, Beijing Institute of Technology (BIT), Beijing, ChinaDepartment of Sustainable Development, University of Birmingham, Birmingham, U.K.Faculty of Engineering, Environment and Computing, Coventry University, Coventry, U.K.The bi-directional linkage between the power grid and electric vehicles (EVs) enables flexible, cheap and fast-responding use of vehicle batteries in the grid. However, the battery aging effects due to the additional operation cycles caused by Vehicle-to-Grid (V2G) service and the concern of the battery degradation are the main reason that keeps the customer from being the named prosumer of the grid. This paper proposes a novel active battery anti-aging V2G scheduling approach. Firstly, to evaluate the battery aging effect in V2G service, the battery degradation phenomenon is quantified by a novel use of rain-flow cycle counting (RCC) algorithm. Then, the V2G scheduling is modeled as a multi-objective optimization problem, in which the minimal battery degradation and grid load fluctuation are designed as the optimization objectives. Finally, a multi-population collaborative mechanism, which is particularly designed for the V2G scheduling problem, is also developed to improve the practicability and performance of the heuristic optimization based V2G scheduling method. The proposed methodologies are verified by numerical analysis, which highlights that the proposed V2G scheduling method can minimize battery charge/discharge cycles by optimizing the time and scale of each V2G participant while providing the same services to the grid as expected.https://ieeexplore.ieee.org/document/8951120/Electric vehiclevehicle to gridactive battery anti-aging and heuristic algorithm
collection DOAJ
language English
format Article
sources DOAJ
author Shuangqi Li
Jianwei Li
Chang Su
Qingqing Yang
spellingShingle Shuangqi Li
Jianwei Li
Chang Su
Qingqing Yang
Optimization of Bi-Directional V2G Behavior With Active Battery Anti-Aging Scheduling
IEEE Access
Electric vehicle
vehicle to grid
active battery anti-aging and heuristic algorithm
author_facet Shuangqi Li
Jianwei Li
Chang Su
Qingqing Yang
author_sort Shuangqi Li
title Optimization of Bi-Directional V2G Behavior With Active Battery Anti-Aging Scheduling
title_short Optimization of Bi-Directional V2G Behavior With Active Battery Anti-Aging Scheduling
title_full Optimization of Bi-Directional V2G Behavior With Active Battery Anti-Aging Scheduling
title_fullStr Optimization of Bi-Directional V2G Behavior With Active Battery Anti-Aging Scheduling
title_full_unstemmed Optimization of Bi-Directional V2G Behavior With Active Battery Anti-Aging Scheduling
title_sort optimization of bi-directional v2g behavior with active battery anti-aging scheduling
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description The bi-directional linkage between the power grid and electric vehicles (EVs) enables flexible, cheap and fast-responding use of vehicle batteries in the grid. However, the battery aging effects due to the additional operation cycles caused by Vehicle-to-Grid (V2G) service and the concern of the battery degradation are the main reason that keeps the customer from being the named prosumer of the grid. This paper proposes a novel active battery anti-aging V2G scheduling approach. Firstly, to evaluate the battery aging effect in V2G service, the battery degradation phenomenon is quantified by a novel use of rain-flow cycle counting (RCC) algorithm. Then, the V2G scheduling is modeled as a multi-objective optimization problem, in which the minimal battery degradation and grid load fluctuation are designed as the optimization objectives. Finally, a multi-population collaborative mechanism, which is particularly designed for the V2G scheduling problem, is also developed to improve the practicability and performance of the heuristic optimization based V2G scheduling method. The proposed methodologies are verified by numerical analysis, which highlights that the proposed V2G scheduling method can minimize battery charge/discharge cycles by optimizing the time and scale of each V2G participant while providing the same services to the grid as expected.
topic Electric vehicle
vehicle to grid
active battery anti-aging and heuristic algorithm
url https://ieeexplore.ieee.org/document/8951120/
work_keys_str_mv AT shuangqili optimizationofbidirectionalv2gbehaviorwithactivebatteryantiagingscheduling
AT jianweili optimizationofbidirectionalv2gbehaviorwithactivebatteryantiagingscheduling
AT changsu optimizationofbidirectionalv2gbehaviorwithactivebatteryantiagingscheduling
AT qingqingyang optimizationofbidirectionalv2gbehaviorwithactivebatteryantiagingscheduling
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