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涡流制动与直线电机制动在高铁上的应用对比分析 被引量:1
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作者 郝保磊 王明星 +3 位作者 苗峰 汤劲松 朱洪庆 袁文琦 《铁道机车车辆》 北大核心 2023年第2期46-51,共6页
基于国内外文献数据,对直流励磁的涡流制动和交流励磁的直线电机制动从原理、结构、应用、制动能力、供电系统及轨道温升等方面进行了对比分析,结果表明:涡流制动的优点是制动能力强,缺点是励磁功率大、引起的轨道温升高;直线电机制动... 基于国内外文献数据,对直流励磁的涡流制动和交流励磁的直线电机制动从原理、结构、应用、制动能力、供电系统及轨道温升等方面进行了对比分析,结果表明:涡流制动的优点是制动能力强,缺点是励磁功率大、引起的轨道温升高;直线电机制动的优点是可实现无源运行,引起的轨道温升低,缺点是制动能力相对较弱,控制系统复杂。 展开更多
关键词 涡流制动 直线电机制动 制动能力 供电系统 轨道温升
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牵引高炮制动系统的设计探讨 被引量:1
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作者 周后康 贺振宇 《四川兵工学报》 CAS 2003年第2期16-18,共3页
通过对双35牵引高炮和双37牵引高炮行车制动系统的技术性能的对比分析,提出了双轴牵引火炮制动系统的设计方法和一般原则。
关键词 牵引高炮 行车制动系统 制动力分配曲线 直线制动 制动效能 制动稳定性 设计方法
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试验用高速运动模型车涡流制动技术研究 被引量:1
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作者 王明星 周文祥 +1 位作者 唐杰 郭鑫 《铁道机车车辆》 2013年第4期27-29,共3页
针对一列比例为110的铝合金动车组运动模型车,在其轨道两侧排布极性交替变化的电磁铁,利用涡流作用力实现模型车的平稳制动及导向。在研究涡流制动技术的基础上,进行了运动模型车制动系统的建模。通过对电磁铁极距分别为100mm和400mm... 针对一列比例为110的铝合金动车组运动模型车,在其轨道两侧排布极性交替变化的电磁铁,利用涡流作用力实现模型车的平稳制动及导向。在研究涡流制动技术的基础上,进行了运动模型车制动系统的建模。通过对电磁铁极距分别为100mm和400mm两种情况进行分析,得出了切向制动力随速度的增大而先增大后减小,法向排斥力随速度的增大而始终保持增大的结论。根据仿真特性曲线计算得出了制动时间及制动距离,为进一步的制动装置设计提供了参考数据。 展开更多
关键词 直线型涡流制动 高速列车模型 电磁铁 仿真计算
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独立转向及驱动车辆制动稳定性控制策略研究
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作者 张东珉 肖强 +1 位作者 朱福堂 刘少华 《农业装备与车辆工程》 2025年第8期52-56,共5页
针对车辆直线制动稳定性问题,提出了一种基于后轮独立转向及驱动的综合控制策略。通过建立车辆后轮独立转向动力学模型,分析了直线制动稳定性的影响因素,并设计了后轮束角与电机差扭控制器及相应的控制策略。采用MATLAB/Simulink与CarSi... 针对车辆直线制动稳定性问题,提出了一种基于后轮独立转向及驱动的综合控制策略。通过建立车辆后轮独立转向动力学模型,分析了直线制动稳定性的影响因素,并设计了后轮束角与电机差扭控制器及相应的控制策略。采用MATLAB/Simulink与CarSim联合仿真验证表明:单一后轮前束及后轮前束融合差扭控制2种控制策略,均可使侧向偏移与横摆角速度大幅度降低。研究揭示了后轮转向参数与制动稳定性的耦合机制,证实了复合控制策略的有效性。 展开更多
关键词 后轮主动前束 后轮独立驱动 直线制动稳定性 差扭控制
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Dynamic performance of heavy-haul combined train applying emergency braking on straight line 被引量:6
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作者 刘鹏飞 王开云 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第8期1898-1908,共11页
A heavy-haul train-track coupled model is developed. Taking the emergency braking of the 2×104 t combined train as example, the train longitudinal impulse, the coupler dynamic behaviors and wheel-rail interaction... A heavy-haul train-track coupled model is developed. Taking the emergency braking of the 2×104 t combined train as example, the train longitudinal impulse, the coupler dynamic behaviors and wheel-rail interactions of vehicles distributing in the different positions are analyzed. The results indicate that under the coupler compressing forces, the couplers of middle locomotives may tilt to the free swing limits, which induces the unidirectional tilt of their connected wagon couplers. Consequently, the coupler longitudinal forces produce the lateral components, and then affect the wheel-rail dynamic interaction. The performance of the middle locomotive and their neighboring freight wagons deteriorate significantly, becoming the most dangerous parts in the combined train. The wagons disconnecting with the locomotives can basically keep their couplers to stabilize in the centering positions, even though the maximum coupler longitudinal force acts on it. And its corresponding running safety also has little changes. 展开更多
关键词 heavy-haul train longitudinal impulse vehicle–track coupled dynamics emergency braking
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Robust tracking control for micro machine tools with load uncertainties 被引量:2
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作者 FAN Shi-xun FAN Da-peng +1 位作者 HONG Hua-jie ZHANG Zhi-yong 《Journal of Central South University》 SCIE EI CAS 2012年第1期117-127,共11页
The quality of the micro-mechanical machining outcome depends significantly on the tracking performance of the miniaturized linear motor drive precision stage. The tracking behavior of a direct drive design is prone t... The quality of the micro-mechanical machining outcome depends significantly on the tracking performance of the miniaturized linear motor drive precision stage. The tracking behavior of a direct drive design is prone to uncertainties such as model parameter variations and disturbances. Robust optimal tracking controller design for this kind of precision stages with mass and damping ratio uncertainties was researched. The mass and damping ratio uncertainties were modeled as the structured parametric uncertainty model. An identification method for obtaining the parametric uncertainties was developed by using unbiased least square technique. The instantaneous frequency bandwidth of the external disturbance signals was analyzed by using short time Fourier transform technique. A two loop tracking control strategy that combines the p-synthesis and the disturbance observer (DOB) techniques was proposed. The p-synthesis technique was used to design robust optimal controllers based on structured uncertainty models. By complementing the/z controller, the DOB was applied to further improving the disturbance rejection performance. To evaluate the positioning performance of the proposed control strategy, the comparative experiments were conducted on a prototype micro milling machine among four control schemes: the proposed two-loop tracking control, the single loop μ control, the PID control and the PID with DOB control. The disturbance rejection performances, the root mean square (RMS) tracking errors and the performance robustness of different control schemes were studied. The results reveal that the proposed control scheme has the best positioning performance. It reduces the maximal errors caused by disturbance forces such as friction force by 60% and the RMS errors by 63.4% compared with the PID control. Compared to PID with DOB control, it reduces the RMS errors by 29.6%. 展开更多
关键词 micro machine tools servos parametric uncertainty model instantaneous frequency disturbance observer p-synthesis
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