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Improving the Energy Efficiency of the Sucker-rod Pump via Its Optimal Counterbalancing

机译:通过最佳平衡来提高抽油杆泵的能效

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The paper discusses energy-efficient and sensorless method of a pumping unit optimal counterbalancing, which uses torque and speed calculations from the side of prime mover that is induction motor. The parameters necessary for the calculations were obtained by dint of special observers. The extra torque computation method that provides less active power consumption from induction motor is proposed. The principles of energy efficiency of sucker-rod pump control methods and algorithms that used no sensors and via estimation the maximum torque at crankshaft from counterweight are shown. The adaptive algorithm for observation of variables, which needs for electromagnetic torque calculation from the side of the induction motor is used. For the proposed system it is shown that motor torque and crank angle are enough variables for optimal counterbalancing. The overall efficiency of pump unit, that achieved from the proposed method of optimal counterbalancing were confirmed by the results of simulation tests.
机译:本文讨论了抽油机最佳平衡的节能和无传感器方法,该方法使用了原动机(即感应电动机)的转矩和速度计算。计算所需的参数是由专门的观察​​员提供的。提出了一种额外的转矩计算方法,该方法可减少感应电动机的有功功率。显示了不使用传感器的抽油杆泵控制方法和算法的能效原理,并通过对重来估算曲轴上的最大扭矩。使用了用于观测变量的自适应算法,该算法需要从感应电动机一侧计算电磁转矩。对于所提出的系统,表明电动机转矩和曲柄角是足以实现最佳平衡的变量。仿真试验的结果证实了从提出的最佳平衡方法获得的泵单元的整体效率。

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