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Torque and Speed Response Differences Between Deadbeat-Direct Torque and Flux Control and Indirect Field Oriented Control for Induction Machine Drives

机译:无差拍直接转矩和磁通控制与感应电机驱动的间接磁场定向控制之间的转矩和速度响应差异

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Indirect field oriented control (IFOC) is widely used in induction machine (IM) drives. IFOC controls torque and rotor flux linkage by using an embedded current regulator. The torque and speed response are limited by current regulator bandwidth. Different from IFOC, without any current regulator, deadbeat-direct torque and flux control (DB-DTFC) calculates the voltage commands directly, which can achieve torque commands within just one switching period. However, high frequency torque and speed response have not been systematically discussed. First, IFOC, DB-DTFC algorithm and implementation issues are discussed in details. Then, the metric for evaluating the high frequency torque and speed response are proposed and evaluated. In the torque response, the DB-DTFC drive shows higher torque command tracking bandwidth with linear phase lag compared to IFOC drive. In the speed response, parameter sensitivities of high frequency speed command tracking for the two control algorithms are compared with encoder feedback. Finally, the speed response in the self-sensing mode for the two control algorithms are also compared.
机译:间接磁场定向控制(IFOC)广泛用于感应电机(IM)驱动器中。 IFOC通过使用嵌入式电流调节器来控制转矩和转子磁链。转矩和速度响应受电流调节器带宽的限制。与IFOC不同,没有任何电流调节器,无差拍直接转矩和磁通控制(DB-DTFC)直接计算电压指令,从而可以在一个开关周期内实现转矩指令。但是,尚未系统地讨论高频转矩和速度响应。首先,详细讨论了IFOC,DB-DTFC算法和实现问题。然后,提出并评估了用于评估高频转矩和速度响应的度量。在扭矩响应方面,与IFOC驱动器相比,DB-DTFC驱动器具有更高的扭矩命令跟踪带宽,具有线性相位滞后。在速度响应中,将两种控制算法的高频速度命令跟踪的参数敏感性与编码器反馈进行比较。最后,还比较了两种控制算法在自感应模式下的速度响应。

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