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Comparison of two, energy optimizing techniques for PM-machines

机译:PM机器两种能量优化技术的比较

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Two control methods for energy optimized sensorless control of permanent magnet machines (PM-machines) are studied and implemented. The control of the PM-machine is accomplished without knowledge of the absolute rotor position and therefore the control methods are well suited to low dynamic applications. Both methods use only the information in the DC link current in the frequency converter. The current information is used to control the PM-machine and only a few calculations are necessary. In the first method the average DC-link current is minimized in a stationary operating point and the impressed stator voltage is adjusted until a minimum of power occurs. The second method controls the PM-machine depending on the contour of the DC-link current, which is dependent on the power factor. The stator voltage to the PM-machine is adjusted to obtain an optimum power factor and efficiency. A test system which contains a frequency converter, a DC-link current measuring system, a PM-machine and a DC-machine acting as load is implemented. Test results show that the two control algorithms control the impressed stator voltages to the PM-machine very close to the optimum operating point in an efficiency point of view. The efficiencies for both methods are measured and they show only a slight difference in the efficiencies for the two methods. The efficiencies are measured at different loads and different speeds, The maximum efficiency is found to be approximately 77% around nominal load and nominal speed.
机译:研究并实施了两种用于永磁机(PM机器)的能量优化无传感器控制的控制方法。在没有明知绝对转子位置的情况下实现PM机的控制,因此控制方法非常适合于低动态应用。两种方法仅使用变频器中的直流链路电流中的信息。当前信息用于控制PM机,只需几个计算。在第一方法中,平均DC链路电流在固定操作点中最小化,调节墨深的定子电压直到发生最小的电力。第二种方法根据DC-Link电流的轮廓控制PM机,这取决于功率因数。调整到PM机的定子电压以获得最佳功率因数和效率。实现了一个测试系统,其中包含变频器,DC连杆电流测量系统,PM机和作为负载的直流机器。测试结果表明,两个控制算法在效率的观点中非常接近PM机的墨水施加的定子电压,非常接近最佳操作点。测量两种方法的效率,并且它们仅显示两种方法的效率略微差异。效率在不同的负载和不同的速度下测量,发现最大效率约为标称负载和标称速度约为77%。

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