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20.4 Multiple-Phase Accelerated Current Control in Bidirectional Energy Transfer of Automotive High-Voltage and Low-Voltage Batteries
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20.4 Multiple-Phase Accelerated Current Control in Bidirectional Energy Transfer of Automotive High-Voltage and Low-Voltage Batteries

Tz-Wun Wang, Si-Yi Li, Sheng-Hsi Hung, Tzu-Ying Wu, Chi-Yu Chen, Po-Jui Chiu, Ke-Horng Chen, Kuo-Lin Zheng, Ying-Hsi Lin, Tsung-Yen Tsai, …
Digest of technical papers - IEEE International Solid-State Circuits Conference, 卷.2023-, 頁碼.308-310
19/02/2023

摘要

High-voltage techniques Laser radar Low voltage Power supplies Sensor systems Sensors Batteries
48V and 12V power supplies play a critical role in electric vehicle (EV) power systems. In general, 48V transfers energy to 12V to supply lidar, camera, sensors, etc. Once the braking system is activated, the 12V regenerative energy will be returned to 48V for recycling. Thus, a bidirectional conversion of 48V-to-12V is required (top left of Fig. 20.4.1). However, in conventional designs, a bidirectional converter without a seamless control will cause a long current transient duration that results in a large voltage drop on the high voltage (HV) 48V battery system.

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