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Energy Management Strategy for 48V Electrical System of Commercial Vehicle Based on Exhaust Gas Thermoelectric Power Generation

机译:基于废气热电发电的商用车48V电气系统能源管理策略

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This paper presents a 48V electrical system based on tail gas thermoelectric power generation, which mainly includes a thermoelectric power generation device, a 48V lithium battery pack, a 24V lead-acid battery, current and voltage type double DC/DC, etc. The energy flow of the traditional and new 48V electrical system under different states of ignition and cruising is analyzed. By comparing the fuel consumption rate and the SOC value of the 24V lead-acid battery, a logic-threshold based control strategy is designed to achieve the optimal energy control. The modeling and constraining conditions of the 48V electrical system for the vehicle have been completed, and the corresponding simulations have been performed using the ADVISOR software. The experimental results show that the maximum power of thermoelectric generation can reach 1500W, the average efficiency of thermoelectric generation is about 4.5%, and the corresponding fuel saving rate can reach 1.45%.
机译:本文介绍了基于尾气热电发电的48V电气系统,主要包括热电发电装置,48V锂电池组,24V铅酸蓄电池,电流和电压型双DC / DC等。能量分析了在不同点火和巡航状态下传统和新的48V电气系统的流动。通过比较24V铅酸电池的燃料消耗率和SOC值,设计了基于逻辑阈值的控制策略,以实现最佳能量控制。已经完成了48V电气系统的建模和约束条件,并且已经使用顾问软件进行了相应的模拟。实验结果表明,热电一代的最大功率可以达到1500W,热电产生的平均效率约为4.5%,相应的省油速度可达到1.45%。

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