首页> 外文会议>Center for Power Electronics Systems(CPEC) Power Electronics Conference; 20070415-17; Blacksburg,VA(US) >Implementation and Sensorless Vector-Control Design and Tuning Strategy for SMPM Machines in Fan-Type Applications
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Implementation and Sensorless Vector-Control Design and Tuning Strategy for SMPM Machines in Fan-Type Applications

机译:风扇型应用中SMPM机器的实现和无传感器矢量控制设计及调整策略

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This paper presents a complete design methodology for the sensorless vector control of permanent magnet synchronous machine (PMSM) motor drives in fan-type applications. The proposed strategy is built over a linear asymptotic state observer used to estimate the PMSM back-EMF, and a novel tracking controller based on a Phase-Locked Loop (PLL) system, which by synchronizing the estimated and actual d-q frames estimates the rotor speed and position. The paper presents the complete derivation of all associated control-loops, namely state observer, tracking controller, d-q axes current regulator, speed controller, an anti-saturation control loop-which provides inherent operation in the flux-weakening region, and all corresponding anti-windup loops. Detailed design rules are provided for each of these loops, respectively verified through time-domain simulations, frequency-response analysis, and experimental results using a 300 Vdc 3.5 kW PMSM PWM motor-drive, validating both the design methodology and the excellent performance attained by the proposed control strategy.
机译:本文介绍了一种用于风扇型应用中的永磁同步电机(PMSM)电机驱动器的无传感器矢量控制的完整设计方法。所提出的策略是建立在用于估计PMSM反电动势的线性渐近状态观测器和基于锁相环(PLL)系统的新型跟踪控制器的基础上的,该控制器通过同步估计的dq帧和实际的dq帧来估计转子速度和位置。本文介绍了所有相关控制回路的完整推导,即状态观察器,跟踪控制器,dq轴电流调节器,速度控制器,抗饱和控制回路(可在弱磁通区域提供固有操作)以及所有相应的抗-windup循环。为每个回路提供了详细的设计规则,分别通过时域仿真,频率响应分析和使用300 Vdc 3.5 kW PMSM PWM电机驱动器的实验结果进行了验证,从而验证了设计方法和通过以下方法获得的出色性能建议的控制策略。

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