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An Approach For Saving Power of ESM With Long Cable by Control Frequency Based on Sensor-Less Estimating Temperature

机译:基于无传感器估计温度的控制频率长电缆ESM节电方法

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摘要

An approach for saving energy consumption of the electric submersible motor (ESM) has been proposed based on combining the thermal field model with electrical control. For decreasing the high energy consumption that has become increasingly serious in oil fields, one of our works is to increase the identification accuracy of the ESM temperature by overcoming the influence of the long cable. The thermal field model of the long cable has been derived and used to correct the equivalent circuit of the ESM first; then the procedure that can be used to identify the rotor temperature is given based on improving the calculation accuracy and efficiency of the rotor slot harmonics. The control rule for modulating the inverter frequency to match the actual oil production was simulated by summarizing the experiment results. Theory analysis and experiments denote that the average identification error of the rotor temperature has been controlled within 1° C and the average power consumption of the ESM may be decreased for about 12% by the proposed approach. This work can effectively reduce the power consumption and provide overheat protection of the ESM.
机译:基于将热场模型与电气控制相结合,提出了一种用于节省潜水电机的能量消耗的方法。为了减少在油田中日益严重的高能耗,我们的工作之一是通过克服长电缆的影响来提高ESM温度的识别精度。得出了长电缆的热场模型,并将其首先用于校正ESM的等效电路。然后基于提高转子槽谐波的计算精度和效率,给出了可用于识别转子温度的程序。通过总结实验结果,模拟了调节变频器频率以匹配实际产油量的控制规则。理论分析和实验表明,通过提出的方法,转子温度的平均识别误差已控制在1°C以内,ESM的平均功耗可降低约12%。这项工作可以有效降低功耗,并为ESM提供过热保护。

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