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An improved motor replacement strategy using non-intrusive motor efficiency estimation

机译:使用非侵入式电机效率估计改进的电动机更换策略

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With increasing energy costs and a renewed focus on using energy in ways that support the environment, a structured approach is required to ensure that energy is used efficiently. Knowing the efficiency of installed motors is essential for effective motor energy management. The efficiency data can be used in the identification of opportunities for improving energy efficiency by replacing inefficient motors with high-efficiency motors and improving the motor-driven processes. In this paper, a non-invasive technique for estimating the efficiency of in-service induction motors without process interruption is presented. The motor efficiency is estimated using the non-intrusive compensated slip method. The accuracy of this technique is verified through experimental data. A comprehensive motor replacement strategy to reduce motor life cycle costs while increasing reliability is proposed. The application of energy management principles is combined with benefits that can be obtained from using energy-efficient motors. Tools for the economic analysis of the potential financial benefits of replacing motors with energy efficient motors are developed. The strategy presented incorporates benefits that can be obtained from using in-situ motor efficiency estimation. The replacement motor can be compared to the installed motor using the actual efficiency across the load profile for the application for which the motor is used. A case study of the application of the strategy is presented.
机译:随着能源成本的提高,并以支持环境的方式使用能源的重新聚焦,需要一种结构化方法来确保有效地使用能量。了解安装电机的效率对于有效的电机能源管理至关重要。效率数据可以用于识别机会,通过更换具有高效电机的低效电机并改善电动机驱动过程来提高能量效率。本文介绍了一种用于估计无需过程中断的不含处理中断的营养型感应电动机效率的非侵入性技术。使用非侵入式补偿滑动方法估计电机效率。通过实验数据验证该技术的准确性。提出了一种综合电机更换策略,同时提出了提高可靠性的同时降低电机寿命周期成本。能量管理原理的应用与可以使用节能电机获得的益处相结合。开发了利用节能电机更换电机潜在经济分析的工具。提出的策略包括可以使用原位电机效率估计来获得的益处。使用载重型材的实际效率可以将替换电机与安装的电机进行比较。提出了对策略应用的案例研究。

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