排序方式: 共有19条查询结果,搜索用时 15 毫秒
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本文针对一款装有机械式自动变速器和后驱电机的混合动力汽车开发了协调换挡控制策略,对车辆冲击和离合器摩擦损失进行优化。控制策略将换挡过程分为发动机主动调速、离合器接合和恢复并联驱动3个阶段。采用模糊PID控制器和模糊控制器分别进行发动机转速调节和离合器接合速度调节,并用电机对动力系统转矩波动进行补偿。仿真和台架试验结果,采用虽然该协调控制策略虽然换挡时间相对延长,但能同时减小车辆冲击和离合器摩擦损失,将冲击度控制在±4 m/s^3范围内,并只产生很小的离合器摩擦损失,汽车的换挡品质得到明显改善。 相似文献
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Because variations of ultra-capacitor voltage and battery voltage generate subharmonic and chaotic behaviors in hybrid energy storage system (HESS) application when a DC-DC converter is under the peak current control, a novel digital control strategy, i.e., peak current control with extended-state tracking compensator, is introduced to deal with the stability. The gains of the control algorithm are selected based on pole locations formulated from the Bessel filter. The simulation results validate that under the peak current control strategy with compensator, the DC-DC converter does not have the subharmonic and chaotic behaviors. The response time under the peak current control with compensator is the same as that under the peak current control. The ripple voltage and ripple current of battery are less. The tracking error of inductor current tends to zero. 相似文献
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玄武岩纤维沥青胶浆的路用性能 总被引:1,自引:0,他引:1
为了研究玄武岩纤维对沥青混合料性能的影响,对不同玄武岩纤维掺量下的纤维沥青胶浆进行锥入度、软化点、延度、弹性恢复和表观粘度试验,考察玄武岩纤维掺量及温度对纤维沥青胶浆性能的影响,同时分析纤维沥青胶浆的作用机理.试验结果表明,玄武岩纤维的加入可增加沥青混合料中结构沥青的比例,提高集料表面沥青膜的厚度,改善沥青胶浆的高、低温性能及疲劳性能,从而增强路面的耐久性.玄武岩纤维的加入降低了纤维沥青胶浆的锥入度,提高了纤维沥青胶浆的软化点、弹性恢复和表观粘度.由不同玄武岩纤维掺量下沥青胶浆的延度试验和表观粘度试验可知,过量加入纤维会影响混合料的应变性能和工作性. 相似文献
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