Cargando…
A Cost-Effective Electric Vehicle Intelligent Charge Scheduling Method for Commercial Smart Parking Lots Using a Simplified Convex Relaxation Technique
Deployment of efficient and cost-effective parking lots is a known bottleneck for the electric vehicles (EVs) sector. A comprehensive solution incorporating the requirements of all key stakeholders is required. Taking up the challenge, we propose a real-time EV smart parking lot model to attain the...
Autores principales: | , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7506577/ https://www.ncbi.nlm.nih.gov/pubmed/32867171 http://dx.doi.org/10.3390/s20174842 |
_version_ | 1783585046900244480 |
---|---|
author | Jawad, Muhammad Qureshi, Muhammad Bilal Ali, Sahibzada Muhammad Shabbir, Noman Khan, Muhammad Usman Shahid Aloraini, Afnan Nawaz, Raheel |
author_facet | Jawad, Muhammad Qureshi, Muhammad Bilal Ali, Sahibzada Muhammad Shabbir, Noman Khan, Muhammad Usman Shahid Aloraini, Afnan Nawaz, Raheel |
author_sort | Jawad, Muhammad |
collection | PubMed |
description | Deployment of efficient and cost-effective parking lots is a known bottleneck for the electric vehicles (EVs) sector. A comprehensive solution incorporating the requirements of all key stakeholders is required. Taking up the challenge, we propose a real-time EV smart parking lot model to attain the following objectives: (a) maximize the smart parking lot revenue by accommodating maximum number of EVs and (b) minimize the cost of power consumption by participating in a demand response (DR) program offered by the utility since it is a tool to answer and handle the electric power usage requirements for charging the EV in the smart parking lot. With a view to achieving these objectives, a linear programming-based binary/cyclic (0/1) optimization technique is developed for the EV charge scheduling process. It is difficult to solve the problems of binary optimization in real-time given that the complexity of the problem increases with the increase in number of EV. We deploy a simplified convex relaxation technique integrated with the linear programming solution to overcome this problem. The algorithm achieves: minimum power consumption cost of the EV smart parking lot; efficient utilization of available power; maximization of the number of the EV to be charged; and minimum impact on the EV battery lifecycle. DR participation provide benefits by offering time-based and incentive-based hourly intelligent charging schedules for the EV. A thorough comparison is drawn with existing variable charging rate-based techniques in order to demonstrate the comparative validity of our proposed technique. The simulation results show that even under no DR event, the proposed scheme results in 2.9% decrease in overall power consumption cost for a 500 EV scenario when compared to variable charging rate method. Moreover, in similar conditions, such as no DR event and for 500 EV arrived per day, there is a 2.8% increase in number of EV charged per day, 3.2% improvement in the average state-of-charge (SoC) of the EV, 12.47% reduction in the average time intervals required to achieve final SoC. |
format | Online Article Text |
id | pubmed-7506577 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-75065772020-09-26 A Cost-Effective Electric Vehicle Intelligent Charge Scheduling Method for Commercial Smart Parking Lots Using a Simplified Convex Relaxation Technique Jawad, Muhammad Qureshi, Muhammad Bilal Ali, Sahibzada Muhammad Shabbir, Noman Khan, Muhammad Usman Shahid Aloraini, Afnan Nawaz, Raheel Sensors (Basel) Article Deployment of efficient and cost-effective parking lots is a known bottleneck for the electric vehicles (EVs) sector. A comprehensive solution incorporating the requirements of all key stakeholders is required. Taking up the challenge, we propose a real-time EV smart parking lot model to attain the following objectives: (a) maximize the smart parking lot revenue by accommodating maximum number of EVs and (b) minimize the cost of power consumption by participating in a demand response (DR) program offered by the utility since it is a tool to answer and handle the electric power usage requirements for charging the EV in the smart parking lot. With a view to achieving these objectives, a linear programming-based binary/cyclic (0/1) optimization technique is developed for the EV charge scheduling process. It is difficult to solve the problems of binary optimization in real-time given that the complexity of the problem increases with the increase in number of EV. We deploy a simplified convex relaxation technique integrated with the linear programming solution to overcome this problem. The algorithm achieves: minimum power consumption cost of the EV smart parking lot; efficient utilization of available power; maximization of the number of the EV to be charged; and minimum impact on the EV battery lifecycle. DR participation provide benefits by offering time-based and incentive-based hourly intelligent charging schedules for the EV. A thorough comparison is drawn with existing variable charging rate-based techniques in order to demonstrate the comparative validity of our proposed technique. The simulation results show that even under no DR event, the proposed scheme results in 2.9% decrease in overall power consumption cost for a 500 EV scenario when compared to variable charging rate method. Moreover, in similar conditions, such as no DR event and for 500 EV arrived per day, there is a 2.8% increase in number of EV charged per day, 3.2% improvement in the average state-of-charge (SoC) of the EV, 12.47% reduction in the average time intervals required to achieve final SoC. MDPI 2020-08-27 /pmc/articles/PMC7506577/ /pubmed/32867171 http://dx.doi.org/10.3390/s20174842 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Jawad, Muhammad Qureshi, Muhammad Bilal Ali, Sahibzada Muhammad Shabbir, Noman Khan, Muhammad Usman Shahid Aloraini, Afnan Nawaz, Raheel A Cost-Effective Electric Vehicle Intelligent Charge Scheduling Method for Commercial Smart Parking Lots Using a Simplified Convex Relaxation Technique |
title | A Cost-Effective Electric Vehicle Intelligent Charge Scheduling Method for Commercial Smart Parking Lots Using a Simplified Convex Relaxation Technique |
title_full | A Cost-Effective Electric Vehicle Intelligent Charge Scheduling Method for Commercial Smart Parking Lots Using a Simplified Convex Relaxation Technique |
title_fullStr | A Cost-Effective Electric Vehicle Intelligent Charge Scheduling Method for Commercial Smart Parking Lots Using a Simplified Convex Relaxation Technique |
title_full_unstemmed | A Cost-Effective Electric Vehicle Intelligent Charge Scheduling Method for Commercial Smart Parking Lots Using a Simplified Convex Relaxation Technique |
title_short | A Cost-Effective Electric Vehicle Intelligent Charge Scheduling Method for Commercial Smart Parking Lots Using a Simplified Convex Relaxation Technique |
title_sort | cost-effective electric vehicle intelligent charge scheduling method for commercial smart parking lots using a simplified convex relaxation technique |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7506577/ https://www.ncbi.nlm.nih.gov/pubmed/32867171 http://dx.doi.org/10.3390/s20174842 |
work_keys_str_mv | AT jawadmuhammad acosteffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT qureshimuhammadbilal acosteffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT alisahibzadamuhammad acosteffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT shabbirnoman acosteffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT khanmuhammadusmanshahid acosteffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT alorainiafnan acosteffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT nawazraheel acosteffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT jawadmuhammad costeffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT qureshimuhammadbilal costeffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT alisahibzadamuhammad costeffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT shabbirnoman costeffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT khanmuhammadusmanshahid costeffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT alorainiafnan costeffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique AT nawazraheel costeffectiveelectricvehicleintelligentchargeschedulingmethodforcommercialsmartparkinglotsusingasimplifiedconvexrelaxationtechnique |