首页> 外文会议>International Conference on Electrical Machines and Systems(ICEMS 2005) vol.2; 20050927-29; Nanjing(CN) >The Modeling and Simulating Research of Electrical Synchronization Speed-regulating System in Rolling Test-rig
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The Modeling and Simulating Research of Electrical Synchronization Speed-regulating System in Rolling Test-rig

机译:滚动试验台电气同步调速系统的建模与仿真研究

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The rolling test-rig is a sort of larger test apparatus, which can test electric locomotive's pulling and braking performance scientifically. The principle of rolling test-rig is to simulate the same rail with four rail wheels, and rotational speed of four rail wheels must be completely consistent. Based on the following three factors: the pulling characteristic of SS8 electric locomotive, dynamic circuit model of DC motor operating in braking condition, and control model of electric drive system, this paper has built a transfer function model of exciting current single closed-loop electrical synchronization speed-regulating system in rolling test-rig. The simulating results show that synchronism of four motors' rotational speed with synchronous regulator is much better than that without it. Under the two cases the rotational speed differences of the four motors are separately analyzed and compared in the dynamic and static rotational speed-regulating course. The theoretical analysis and simulating results manifest that synchronous regulator is an important part of the whole model, and the mathematical model with synchronous regulator is right and rational.
机译:滚动试验台是一种较大的试验设备,可以科学地测试电力机车的牵引和制动性能。滚动试验台的原理是模拟具有四个轨道轮的同一条轨道,并且四个轨道轮的转速必须完全一致。基于以下三个因素:SS8型电力机车的牵引特性,制动状态下直流电动机的动态电路模型以及电力驱动系统的控制模型,建立了励磁电流单闭环电力系统的传递函数模型。滚动试验台同步调速系统。仿真结果表明,采用同步调节器的四电机转速同步性要好于不采用同步调节器的情况。在这两种情况下,分别分析了四个电动机的转速差,并在动态和静态转速调节​​过程中进行了比较。理论分析和仿真结果表明,同步调节器是整个模型的重要组成部分,带有同步调节器的数学模型是正确合理的。

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