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Battery system integration for electric mobility
DOI:10.1016/j.joule.2026.102445.png)
Abstract
En 中文
The integration of batteries into vehicle structures is not a narrow technical refinement but a paradigm shift with global consequences. As conventional performance gains at the material and cell levels plateau, the architecture of battery systems is emerging as the dominant determinant of vehicle-level performance, cost, and scalability. This shift is unfolding as the transportation sector accounts for nearly one-quarter of global greenhouse gas emissions, positioning electrification as a key pathway toward deep decarbonization. Integrated battery systems redefine how vehicles are manufactured, serviced, and recycled, with implications for industrial competitiveness and large-scale deployment. For automakers, integration simplifies assembly and reduces cost at gigafactory scale; for regulators, it raises urgent challenges in safety certification, reparability, and end-of-life accountability. Decisions made today will lock in infrastructure, supply chains, and environmental impacts for decades.
Keywords:
battery
integration
electric vehicle
cell-to-vehicle
safety
recyclability
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