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Temperature Prediction in High Speed Bone Grinding using Motor PWM Signal

机译:利用电机PWM信号预测高速骨磨的温度

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摘要

This research explores the feasibility of using motor electrical feedback to estimate temperature rise during a surgical bone grinding procedure. High-speed bone grinding is often used during skull base neurosurgery to remove cranial bone and approach skull base tumors through the nasal corridor. Grinding-induced heat could propagate and potentially injure surrounding nerves and arteries, and therefore, predicting the temperature in the grinding region would benefit neurosurgeons during the operation. High-speed electric motors are controlled by pulse-width-modulation (PWM) to alter the current input and thus maintain the rotational speed. Assuming full mechanical to thermal power conversion in the grinding process, PWM can be used as feedback for heat generation and temperature prediction. In this study, the conversion model was established from experiments under a variety of grinding conditions and an inverse heat transfer method to determine heat flux. Given a constant rotational speed, the heat conversion was represented by a linear function, and could predict temperature from the experimental data with less than 20% errors. Such results support the advance of this technology for practical application.
机译:这项研究探索了在手术骨磨削过程中使用电动机电反馈来估计温度升高的可行性。在颅底神经外科手术中经常使用高速骨磨,以去除颅骨并通过鼻腔通道接近颅底肿瘤。磨削引起的热量可能传播并可能伤害周围的神经和动脉,因此,预测磨削区域的温度将有利于手术过程中的神经外科医师。高速电动机由脉宽调制(PWM)控制,以改变电流输入,从而保持转速。假设在研磨过程中将机械功率完全转换为热能,PWM可以用作热量产生和温度预测的反馈。在这项研究中,转换模型是通过在各种研磨条件下进行的实验和逆热传递方法确定热通量而建立的。在给定恒定转速的情况下,热转化率由线性函数表示,并且可以根据实验数据预测温度,且误差小于20%。这样的结果支持了该技术在实际应用中的进步。

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