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Experimental Analysis and Full Prediction Model of a 5-DOF Motorized Spindle

机译:五自由度电主轴的实验分析和全预测模型

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摘要

The cost and power consumption of DC power amplifiers are much greater than that of AC power converters. Compared to a motorized spindle supported with DC magnetic bearings, a motorized spindle supported with AC magnetic bearings is inexpensive and more efficient. This paper studies a five-degrees-of-freedom (5-DOF) motorized spindle supported with AC hybrid magnetic bearings (HMBs). Most models of suspension forces, except a “switching model”, are quite accurate, but only in a particular operating area and not in regional coverage. If a “switching model” is applied to a 5-DOF motorized spindle, the real-time performance of the control system can be significantly decreased due to the large amount of data processing for both displacement and current. In order to solve this defect, experiments based on the “switching model” are performed, and the resulting data are analyzed. Using the data analysis results, a “full prediction model” based on the operating state is proposed to improve real-time performance and precision. Finally, comparative, verification and stiffness tests are conducted to verify the improvement of the proposed model. Results of the tests indicate that the rotor has excellent characteristics, such as good real-time performance, superior anti-interference performance with load and the accuracy of the model in full zone. The satisfactory experimental results demonstrate the effectiveness of the “full prediction model” applied to the control system under different operating stages. Therefore, the results of the experimental analysis and the proposed full prediction model can provide a control system of a 5-DOF motorized spindle with the most suitable mathematical models of the suspension force.
机译:直流功率放大器的成本和功耗远高于交流功率转换器。与由直流磁轴承支撑的电​​动主轴相比,由交流磁轴承支撑的电​​动主轴便宜且效率更高。本文研究了由AC混合磁轴承(HMB)支撑的五自由度(5-DOF)电动主轴。除“切换模型”外,大多数悬挂力模型都非常准确,但仅在特定操作区域而不是区域覆盖范围内。如果将“切换模型”应用于5自由度电主轴,则由于位移和电流的大量数据处理,控制系统的实时性能可能会大大降低。为了解决该缺陷,进行了基于“切换模型”的实验,并对得到的数据进行了分析。利用数据分析结果,提出了一种基于运行状态的“全面预测模型”,以提高实时性能和精度。最后,进行比较,验证和刚度测试以验证所提出模型的改进。测试结果表明,该转子具有优异的特性,例如良好的实时性能,出色的抗负载干扰性能以及全区域模型的准确性。令人满意的实验结果证明了“完全预测模型”在不同操作阶段应用于控制系统的有效性。因此,实验分析的结果和所提出的完整预测模型可以为具有5个自由度的电主轴提供最合适的悬架力数学模型的控制系统。

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