Article
<span class="word">Research <span class="word">on <span class="word">Layered <span class="word">Control <span class="word">and <span class="word">Fault <span class="word">Recovery <span class="word">Mechanisms <span class="word">for <span class="word">Fast <span class="word">Charging <span class="word">Safety <span class="word">Diagnosis <span class="word">of <span class="word">High <span class="word">Voltage <span class="word">Battery <span class="word">Systems <span class="word"><span class="changedDisabled">Under <span class="word">Charging <span class="word">Network <span class="word">Interoperability <span class="word">Conditions
2026-03-03
Abstract excerpt
In public DC fast-charging scenarios, protocol inconsistencies, current-limiting variations, and communication anomalies often lead to handshake failures, current oscillations, voltage overshoot, and delayed fault recovery. Under high-power conditions, mishandling these issues can cause prolonged high-temperature, high-stress battery operation, elevating safety risks. To address this, a fast-charging safety framew...
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Identifiers and source
- Literature Corpus work
- 136ec3d0-d5d1-578e-9a58-1ccd2364a7f4
- DOI
- 10.20944/preprints202603.0255.v1
