Optimized dual-energy storage system for sustainable electric vehicle mobility with integrated swapping and autonomous charging
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| Natura: | Recurso digital |
| Lingua: | inglese |
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2025
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| _version_ | 1866901683723829248 |
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| author | k k, Darshan |
| author_facet | k k, Darshan |
| contents | <p>This research presents an optimized dual-energy storage system (DESS) designed to enhance the performance, efficiency, and sustainability of electric vehicle (EV) mobility. The proposed framework combines high-energy-density batteries with supercapacitors to balance long-range capacity and rapid power delivery. To further improve user convenience and operational efficiency, the system integrates <strong>battery swapping infrastructure</strong> with <strong>autonomous wireless charging technologies</strong>, enabling seamless energy replenishment without manual intervention. Optimization techniques are applied to ensure maximum energy utilization, reduced charging downtime, and extended battery lifespan. The study highlights how this dual-storage and hybrid charging approach contributes to sustainable EV ecosystems by lowering environmental impact, improving scalability, and enhancing adoption of next-generation electric mobility solutions.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_16996025 |
| institution | Zenodo |
| language | eng |
| publishDate | 2025 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Optimized dual-energy storage system for sustainable electric vehicle mobility with integrated swapping and autonomous charging k k, Darshan Dual-energy storage Electric vehicles (EVs) Battery swapping Autonomous charging Sustainable mobility Energy optimization Smart grid integration Renewable energy for EVs Electrical Engineering Renewable Energy Systems Sustainable Transportation Energy Storage & Management Smart Mobility Solutions Power Systems Engineering <p>This research presents an optimized dual-energy storage system (DESS) designed to enhance the performance, efficiency, and sustainability of electric vehicle (EV) mobility. The proposed framework combines high-energy-density batteries with supercapacitors to balance long-range capacity and rapid power delivery. To further improve user convenience and operational efficiency, the system integrates <strong>battery swapping infrastructure</strong> with <strong>autonomous wireless charging technologies</strong>, enabling seamless energy replenishment without manual intervention. Optimization techniques are applied to ensure maximum energy utilization, reduced charging downtime, and extended battery lifespan. The study highlights how this dual-storage and hybrid charging approach contributes to sustainable EV ecosystems by lowering environmental impact, improving scalability, and enhancing adoption of next-generation electric mobility solutions.</p> |
| title | Optimized dual-energy storage system for sustainable electric vehicle mobility with integrated swapping and autonomous charging |
| topic | Dual-energy storage Electric vehicles (EVs) Battery swapping Autonomous charging Sustainable mobility Energy optimization Smart grid integration Renewable energy for EVs Electrical Engineering Renewable Energy Systems Sustainable Transportation Energy Storage & Management Smart Mobility Solutions Power Systems Engineering |
| url | https://doi.org/10.5281/zenodo.16996025 |