Optimization of mobility incentives in electric vehicle car sharing systems: A reinforcement learning framework DOI
Roberto Rocchetta, Lorenzo Nespoli, Vasco Medici

et al.

Sustainable Cities and Society, Journal Year: 2025, Volume and Issue: unknown, P. 106107 - 106107

Published: Jan. 1, 2025

Language: Английский

Navigating the complex realities of electric vehicle adoption: A comprehensive study of government strategies, policies, and incentives DOI Creative Commons
Sikandar Abdul Qadir, Furkan Ahmad,

Abdulla Mohsin A B Al-Wahedi

et al.

Energy Strategy Reviews, Journal Year: 2024, Volume and Issue: 53, P. 101379 - 101379

Published: April 13, 2024

Management of sustainable transportation currently is one the most important aspects a country's or region's development from an economic and social point view considering net zero requirements The use electric vehicles (EVs) recognized as essential means achieving global net-zero emission goals. To promote their widespread adoption, challenges they face must be addressed. These are divided into several categories: infrastructure, costs, energy transition, awareness, market-related challenges. Robust regulatory frameworks incentive policies implemented to overcome these For EV adoption increase rapidly steadily, such include fiscal non-fiscal incentives that will encourage masses convert EVs. key findings work identification barrier not widely discussed in literature, emphasizing need for presenting comprehensive analysis various alongside detailed implementation framework. framework provides research directions academics, engineers, policymakers, industry stakeholders regarding further refinement enhancement policy facilitate

Language: Английский

Citations

62

A Comprehensive Review and Analysis of the Allocation of Electric Vehicle Charging Stations in Distribution Networks DOI Creative Commons

T. Yuvaraj,

K. R. Devabalaji,

J.S.V.Siva Kumar

et al.

IEEE Access, Journal Year: 2024, Volume and Issue: 12, P. 5404 - 5461

Published: Jan. 1, 2024

In recent times, the limited availability of fossil fuels and growing concerns regarding emission greenhouse gases (GHGs) have directly impacted shift from conventional automobiles to electric vehicles (EVs). Additionally, there been notable advancements in new energy research, which significantly improved viability EVs. Consequently, EVs gained widespread recognition rapidly adopted many countries worldwide. However, rapid growth has given rise several challenges, such as insufficient charging infrastructure, unequal distribution, high costs, a lack stations, become increasingly significant. The facilities is hindering adoption more people embrace EVs, installation vehicle stations (EVCSs) public locations. Recent research focused on identifying ideal locations for EVCSs order assist electrification transport systems meet demand A well-developed EVCS infrastructure can help address some key issues facing pricing range limitations. Researchers used various methodologies, objective functions, constraints formulate problem best sites EVCSs. Current determining This endeavor intends ease transition electrified networks while also addressing review article explores optimization techniques achieve optimal solutions considering impact EV load distribution system (DS), environmental implications, economic impact. standard IEEE 33-bus radial (RDS) with full variety potential sources improve understanding subject. use bald eagle search algorithm (BESA) cuckoo (CSA) aided identification source their relative capacities. addition, examination techniques, including both traditional technique (TCT) innovative (ICT), being undertaken assess effectiveness these approaches. study included ten separate scenarios, each was thoroughly evaluated demonstrate individual synergistic usefulness mitigating effects DS. collected data empirical inquiry aggregated analyzed.

Language: Английский

Citations

43

Electric vehicle charging technologies, infrastructure expansion, grid integration strategies, and their role in promoting sustainable e-mobility DOI Creative Commons
Arvind R. Singh, Pradeep Vishnuram, A. Sureshkumar

et al.

Alexandria Engineering Journal, Journal Year: 2024, Volume and Issue: 105, P. 300 - 330

Published: July 6, 2024

Language: Английский

Citations

32

Optimal power dispatching for a grid-connected electric vehicle charging station microgrid with renewable energy, battery storage and peer-to-peer energy sharing DOI Creative Commons

Lindiwe Bokopane,

K. Kusakana,

Herman Vermaak

et al.

Journal of Energy Storage, Journal Year: 2024, Volume and Issue: 96, P. 112435 - 112435

Published: June 24, 2024

Language: Английский

Citations

17

Electric Vehicle Adoption: A Comprehensive Systematic Review of Technological, Environmental, Organizational and Policy Impacts DOI Creative Commons
Rami Zaino, Vian Ahmed,

Ahmed Mohamed Alhammadi

et al.

World Electric Vehicle Journal, Journal Year: 2024, Volume and Issue: 15(8), P. 375 - 375

Published: Aug. 18, 2024

This comprehensive systematic review explores the multifaceted impacts of electric vehicle (EV) adoption across technological, environmental, organizational, and policy dimensions. Drawing from 88 peer-reviewed articles, study addresses a critical gap in existing literature, which often isolates impact EV without considering holistic effects. Technological advancements include innovations battery technology energy storage systems, enhancing performance mitigating range anxiety. The environmental analysis reveals substantial reductions greenhouse gas emissions, with lifecycle assessments showing significant for EVs compared to internal combustion engine vehicles, particularly when charged renewable sources. Key comparisons emissions between mid-size vehicles (BEVs) (ICEVs), global average by powertrain under various scenarios. organizational implications are evident, as businesses adopt new models fleet management logistics, leveraging operational efficiency sustainability. Policy underscores crucial role government incentives, regulatory measures, infrastructure investments accelerating adoption. identifies future research areas such efficient recycling methods, potential on grid stability, long-term economic implications. offers insights stakeholders aiming foster sustainable transportation achieve climate goals.

Language: Английский

Citations

17

Vehicle-to-Grid technology: Opportunities, challenges, and future prospects for sustainable transportation DOI
Sriram Prabhakara Rao, Olusegun Stanley Tomomewo, Prakash Ranganathan

et al.

Journal of Energy Storage, Journal Year: 2025, Volume and Issue: 110, P. 114927 - 114927

Published: Jan. 11, 2025

Language: Английский

Citations

3

Integration of Electric Vehicles (EVs) with Electrical Grid and Impact on Smart Charging DOI Creative Commons
Md Shameem Ahsan,

Faysal Amin Tanvir,

Md Khaledur Rahman

et al.

International Journal of Multidisciplinary Sciences and Arts, Journal Year: 2023, Volume and Issue: 2(2), P. 225 - 234

Published: Dec. 20, 2023

Integrating Electric Vehicles (EVs) with the electrical grid is a pivotal aspect of modern transportation systems. This integration poses multifaceted challenges and opportunities, influencing grid's stability, energy management, environmental sustainability. Smart charging solutions emerge as crucial mechanism to address these by optimizing patterns, balancing demand, maximizing renewable utilization. abstract delves into impacts EV-grid integration, exploring interplay between smart dynamics while considering implications for infrastructure, user behavior, impact. It also provides concise overview EV integration's key issues. highlights role technologies in addressing them paving way sustainable future energy.

Language: Английский

Citations

28

Optimizing Electric Vehicle Battery Life: A Machine Learning Approach for Sustainable Transportation DOI Creative Commons

K. Karthick,

Ravivarman Shanmugasundaram,

R. Priyanka

et al.

World Electric Vehicle Journal, Journal Year: 2024, Volume and Issue: 15(2), P. 60 - 60

Published: Feb. 9, 2024

Electric vehicles (EVs) are becoming increasingly popular, due to their beneficial environmental effects and low operating costs. However, one of the main challenges with EVs is short battery life. This study presents a comprehensive approach for predicting Remaining Useful Life (RUL) Nickel Manganese Cobalt-Lithium Cobalt Oxide (NMC-LCO) batteries. research utilizes dataset derived from Hawaii Natural Energy Institute, encompassing 14 individual batteries subjected over 1000 cycles under controlled conditions. A multi-step methodology adopted, starting data collection preprocessing, followed by feature selection outlier elimination. Machine learning models, including XGBoost, BaggingRegressor, LightGBM, CatBoost, ExtraTreesRegressor, employed develop RUL prediction model. Feature importance analysis aids in identifying critical parameters influencing health lifespan. Statistical evaluations reveal no missing or duplicate data, removal enhances model accuracy. Notably, XGBoost emerged as most effective algorithm, providing near-perfect predictions. underscores significance enhancing lifecycle management, particularly applications like electric vehicles, ensuring optimal resource utilization, cost efficiency, sustainability.

Language: Английский

Citations

15

A Comprehensive Review of Electric Vehicles Fast Charging Developments and Technology DOI Open Access
Ahmed Zentani, Ali Almaktoof, Mohamed Tariq Kahn

et al.

Published: April 19, 2024

The electric vehicle (EV) industry is experiencing rapid growth, accompanied by continuous advancements in charging infrastructure to satisfy the rising need for fast and reliable charging. Particularly, focus has shifted towards EV (EVFC) its impact on power grid. This paper presents a comprehensive analysis survey of scholarly literature projects conducted this field over past decade. findings highlight demand EVFC address potential adverse effects However, there noticeable lack clear research guidance regarding time. To tackle these challenges pave way future solutions, extensive DC charging, ultra-fast integration vehicle-to-grid (V2G) systems required. review thoroughly investigates development technology vehicles (EVs), including advantages comparative analyses from various perspectives. Furthermore, it delves into infrastructure, emphasizing standards control modes. study also different categories battery chargers both on-board off-board Additionally, explores classification DC-DC converters context stations, discusses strategies systems, identifies existing challenges, outlines trends

Language: Английский

Citations

13

Electric vehicle charging by use of renewable energy technologies: A comprehensive and updated review DOI
Mohammad Alhuyi Nazari, Vojtěch Blažek, Lukáš Prokop

et al.

Computers & Electrical Engineering, Journal Year: 2024, Volume and Issue: 118, P. 109401 - 109401

Published: June 27, 2024

Language: Английский

Citations

11