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Analysis of the Phase Current Measurement Boundary of Three Shunt Sensing PWM Inverters and an Expansion Method

机译:三路并联PWM逆变器的相电流测量边界分析及扩展方法

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To obtain phase currents information in AC drives, shunt sensing technology is known to show great performance in cost-effectiveness and therefore it is widely used in low cost applications. However, shunt sensing methods are unable to acquire phase currents in certain operation conditions. This paper deals with the derivation of the boundary conditions for phase current reconstruction in three-shunt sensing inverters and proposes a voltage injection method to expand the measurable areas. As the boundary conditions are deeply dependent on the switching patterns, they are typically analyzed on the voltage vector plane for space vector pulse width modulation (SVPWM) and discontinuous pulse width modulation (DPWM). In the proposed method, the voltage injection and its compensation are conducted within one sampling period. This guarantees fast current reconstruction and the injected voltage is decided so as to minimize the current ripple. In addition to the voltage injection method, a sampling point shifting method is also introduced to improve the boundary conditions. Simulation and experimental results are presented to verify the boundary condition derivation and the effectiveness of the proposed voltage injection method.
机译:为了获得交流驱动器中的相电流信息,已知分流传感技术在成本效益方面表现出出色的性能,因此,它已广泛应用于低成本应用中。然而,并联感测方法在某些操作条件下无法获取相电流。本文研究了三并联感应逆变器中相电流重构的边界条件的推导,并提出了一种电压注入方法来扩展可测量区域。由于边界条件在很大程度上取决于开关模式,因此通常会在电压矢量平面上对边界条件进行分析,以进行空间矢量脉冲宽度调制(SVPWM)和不连续脉冲宽度调制(DPWM)。在提出的方法中,电压注入及其补偿在一个采样周期内进行。这保证了快速的电流重建,并确定了注入电压,以最大程度地减小电流纹波。除了电压注入方法外,还引入了采样点移动方法以改善边界条件。给出了仿真和实验结果,以验证边界条件的推导和所提出的电压注入方法的有效性。

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