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Test Analysis of Traction Battery Peak Power 总被引:1,自引:0,他引:1
The test process of electric vehicles (EVs) traction battery peak power is analyzed in detail. Aimed at a special ““traction““ design of versatile battery-HORIZON C^2M Battery, the features are introduced. According to the peak power test schedule, the test parameters of HORIZON C^2M Battery are calculated and the charging and discharging experiments are carried out. The sustained (30 s) discharge power capability of battery at 2/3 of its open circuit voltage at each of various depths of discharge is determined. The dynamic internal resistance under peak power test is established. Considering the temperature impact during discharging, the peak power capability at each of various depths of discharge is corrected. The correctness of peak power test is validated by combining theory analysis with test results. 相似文献
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基于典型作业工况的串联式电传动推土机功率跟随控制策略 总被引:1,自引:0,他引:1
为提高串联式混合动力推土机的燃油经济性,研究动力传动系统的能量分配策略。分析发动机和发电机的动态工作特性,通过台架试验建立发动机的动力输出特性模型、油耗特性模型和发电机的效率特性模型;通过超级电容的电阻串并联模型结构分析,建立超级电容的动态工作模型,设定荷电状态的安全工作范围。基于台架试验及模型获得的发动机最佳燃油消耗曲线,提出一种最佳燃油消耗曲线的功率跟随控制策略。研究推土机的典型作业工况,在典型作业工况下对提出的控制策略进行仿真,阐述超级电容的荷电状态及电压、电流的变化规律,并与传统机械传动结构的原型机在发动机工作转速、转矩、油耗和加速踏板位置变动等参数方面进行对比分析。结果表明,在推土机典型作业工况下,采用最佳燃油消耗曲线的功率跟随控制策略与原型机相比,节油率达13.1%。 相似文献
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