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Steady operation of the electric drive of pipeline armature in the emergency situation at low ambient temperatures

机译:低环境温度下紧急情况下管道电枢电动驱动的稳定运行

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This scientific work is devoted to the study of the electric drive operation of pipeline armature at low ambient temperatures. Hit of moisture into reducer and rare inclusions in operation of locking regulator are led to curdling lubricant that causes the increased wear of mechanical knots. There is a probability of freezing mechanical components; it leads to emergency situations. The problem of improving working efficiency of the electric drive of shut-off regulating armature at low ambient temperatures of the environment is solved in this work. A simulation model of the GUSAR electric drive was developed to solve this problem. Studies of the simulation model show the need to limit the torque increase rate on a drive motor shaft. The algorithm of setting of PI speed controller to obtain acceptable transient processes is suggested. Recommendations for the use of the algorithm in the microprocessor control system of electric drive are proposed. It is shown that the electric drive operation algorithm with torque increasing limitation on the motor shaft will be smoothly working off the perturbing actions that occur in pipeline armature.
机译:该科学工作致力于在低环境温度下研究管轴电枢的电动驱动操作。在锁定调节器的操作中恢复剂和罕见夹杂物的湿润均导致抑制润滑剂,导致机械结的磨损增加。冻结机械部件的可能性;它导致紧急情况。在这项工作中,解决了在环境低环境温度下提高了关闭调节衔铁的电动驱动的工作效率的问题。开发了Gusar电动驱动器的模拟模型来解决这个问题。仿真模型的研究表明需要将扭矩增加率限制在驱动电机轴上。提出了PI速度控制器的设置算法,以获得可接受的瞬态过程。提出了在电驱动器微处理器控制系统中使用算法的建议。结果表明,具有扭矩的电驱动操作算法在电动机轴上的扭矩增加的限制将平滑地摆脱在管道电枢中发生的扰动动作。

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