Open Access
·Peer-reviewed·ISSN (Online): 2169-0103·ISSN (Print): 0252-2667
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The Journal of Information and Optimization Sciences (JIOS) is a world leading journal publishing high quality, rigorously peer-reviewed original research in all mathematically-oriented theoretical and applied topics in information sciences, optimization sciences and related areas since 1980. Subjects include but are not limited to:
• Information Sciences
• Optimization Sciences
• Control Theory
• Operational Research
• Decision Sciences
• Information Theory
• Information Technology
• Computer Networks and Communications
• Mathematical Programming
• Modelling and Simulation
• Database Management
• Applications to Engineering Sciences
• Applications to Technology
Issues up to 2022 co-published with and available at:
Raj KumarDepartment of Electrical and Electronics Engineering Bharati Vidyapeeth’s College of EngineeringNew Delhi, IndiaView full profile →
, Mohammad FarooqDepartment of Electrical and Electronics Engineering Bharati Vidyapeeth’s College of EngineeringNew Delhi, IndiaView full profile →
, Shalabh Kumar Mishrashalabhmishra14@gmail.comDepartment of Electrical and Electronics Engineering Bharati Vidyapeeth’s College of EngineeringDepartment of Electronics and Communication Engineering Thapar Institute of Engineering and TechnologyPatiala, Punjab, 147004, IndiaView full profile →
, Sandeep Sharmasandeep.greater123@gmail.comDepartment of Electrical and Electronics Engineering Bharati Vidyapeeth’s College of EngineeringSchool of Mathematics Shri Mata Vaishno Devi UniversityKatra, Jammu and Kashmir, 182320, IndiaView full profile →
, Ashima Airanashimajain046@gmail.comDepartment of Electrical and Electronics Engineering Bharati Vidyapeeth’s College of EngineeringPaschim Vihar, New Delhi, 110063, IndiaView full profile →
, *Ashu SoniCorresponding authorsoniashu.14@gmail.comDepartment of Electronics and Communication Engineering Bharati Vidyapeeth’s College of EngineeringPaschim Vihar, Delhi, 110063, IndiaView full profile →
* Corresponding author · click or hover a name for details
Electric vehicles (EVs) are increasingly prevalent on roads today. These vehicles have demonstrated their effectiveness to minimize travel costs through transitioning from traditional fuel sources to electricity, that is notably more cost-efficient, alongside the associated environmental benefits. The primary aim is to implement a charging system that accommodates extended vehicle usage by applying higher charging rates for prolonged periods. Presently, the prevailing charging infrastructure for EVs involves conductive methods where the vehicle connects to a charging station; however, this process typically takes longer. Advancements in technology are introducing wireless charging solutions. Inductive EV charging, a wireless alternative, eliminates the need for physical wires. This innovative approach proposes charging electric vehicles while they are in motion, eliminating the necessity for vehicles to stop for refueling. Notably, this charging mechanism operates on solar energy, obviating the requirement for an exterior source of power. The system-design encompasses the utilization of various components such as batteries, transformers, solar panels, copper coils, regulator circuits, ATmega328p controllers, AC to DC converters, and the LCD.
[1] C. C. Mi, G. Buja, S. Y. Choi, and C. T. Rim, “Modern Advances in Wireless Power Transfer Systems for Roadway Powered Electric Vehicles” in IEEE Transactions on Industrial Electronics, Oct. (2016).[2] X. Zhang, Z. Yuan, Q. Yang, Y. Li, J. Zhu, and Y. Li “Coil Design and Efficiency Analysis for Dynamic Wireless Charging System for Electric Vehicles” by in IEEE Transactions on Magnetics, July (2016).[3] K. Kumar, S. Gupta, and S. Nema “A Review of Dynamic Charging of Electric Vehicles” by in the 2021 7th International Conference on Electrical Energy Systems (ICEES).[4] A. Shufian, M. M. Rahman, K. Ahmed, R. Islam, M. Hasan, and T. Islam “Design and Implementation of Solar Power Wireless Battery Charger” in the 2019 1st International Conference on Advances in Science, Engineering and Robotics Technology (ICASERT).[5] G. Ombach “Design Considerations for Wireless Charging System for Electric and Plug-in Hybrid Vehicles” in the IET Hybrid and Electric Vehicles Conference 2013 (HEVC 2013).[6] Z. Danping, L. Juan, C. Yuchun, L. Yuhang, and C. Zhongjian “Research on Electric Energy Metering and Charging System for Dynamic Wireless Charging of Electric Vehicle” in the 2019 4th International Conference on Intelligent Transportation Engineering (ICITE).[7] J. Zhang, H. Yan, N. Ding, J. Zhang, T. Li, and S. Su “Electric Vehicle Charging Network Development Characteristics and Policy Suggestions” in the 2018 International Symposium on Computer, Consumer and Control (IS3C).[8] C. H. Lee, G. Jung, K. A. Hosani, B. Song, D. -k. Seo, and D. Cho “Wireless Power Transfer System for an Autonomous Electric Vehicle” in the 2020 IEEE Wireless Power Transfer Conference (WPTC).[9] C. C. Mi, G. Buja, S. Y. Choi, and C. T. Rim, “Modern Advances in Wireless Power Transfer Systems for Roadway Powered Electric Vehicles,” in IEEE Transactions on Industrial Electronics, vol. 63, no. 10, pp. 6533-6545, Oct. (2016).[10] X. Zhang, Z. Yuan, Q. Yang, Y. Li, J. Zhu, and Y. Li, “Coil Design and Efficiency Analysis for Dynamic Wireless Charging System for Electric Vehicles,” in IEEE Transactions on Magnetics, vol. 52, no. 7, pp. 1-4, July (2016).
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