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Fuzzy logic based online adaptation of current and speed controllers for improved performance of IPMSM drive

机译:基于模糊逻辑的电流和速度控制器在线适配,可提高IPMSM驱动器的性能

摘要

Precise torque and speed control of electric motors is a key issue in industries for variable speed drives (VSD). Over the years the induction motors have been widely utilized in industries for VSD applications. However, induction motor has some significant drawbacks like low efficiency, lagging power factor, asynchronous speed, low torque density etc. Nowadays the interior permanent magnet synchronous motor (IPMSM) is becoming popular for high performance variable speed drive (HPVSD) due to its high torque-current ratio, large power-weight ratio, high efficiency, high power factor, low noise and robustness as compared to conventional induction and other ac motors. Smooth torque response, fast and precise speed response, quick recovery of torque and speed from any disturbance and parameter insensitivity, robustness in variable speed domain and maintenance free operations are the main concerns for HPVSD. This work proposes a closed loop vector control of an IPMSM drive incorporating two separate fuzzy logic controllers (FLCs). Among them one FLC is designed. to minimize the developed torque ripple by varying online the hysteresis band of the PWM current controller. Another Sugeno type FLC is used to tune the gains of a proportional-integral (PI) controller where the PI controller actually serves as the primary speed controller. Thus, the limitations of traditional PI controllers will be avoided and the performance of the drive system can be improved. A flux controller is also incorporated in such a way that both torque and flux of the motor can be controlled while maintaining current and voltage constraints. The flux controller is designed based on maximum-torque- per-ampere (MTPA) operation below the rated speed and flux weakening operation above the rated speed. Thus, the proposed drive extends the operating speed limits for the motor and enables the effective use of the reluctance torque. In order to verify the performance of the proposed IPMSM drive, first a simulation model is developed using Matlab/Simulink. Then the complete IPMSM drive has been implemented in real-time using digital signal processor (DSP) controller board DS1104 for a laboratory 5 HP motor. The effectiveness of the proposed drive is verified both in simulation and experiment at different operating conditions. In this regard, a performance comparison of the proposed FLC based tuned PI and adapted hysteresis controllers based drive with the conventional PI and fixed bandwidth hysteresis controllers based drive is provided. These comparison results demonstrate the better dynamic response in torque and speed for the proposed IPMSM drive over a wide speed range.
机译:电动机的精确转矩和速度控制是变速驱动器(VSD)行业中的关键问题。多年来,感应电动机已广泛用于VSD应用行业。然而,感应电动机具有一些显着的缺点,例如效率低,功率因数滞后,异步速度高,转矩密度低等。如今,内部永磁同步电动机(IPMSM)由于其高效率而在高性能变速驱动(HPVSD)中变得越来越流行与传统的感应电动机和其他交流电动机相比,转矩电流比,大功率重量比,高效率,高功率因数,低噪音和坚固性。平稳的扭矩响应,快速而精确的速度响应,从任何干扰和参数不敏感状态中快速恢复扭矩和速度,变速域的鲁棒性和免维护操作是HPVSD的主要考虑因素。这项工作提出了一个IPMSM驱动器的闭环矢量控制,该控制结合了两个独立的模糊逻辑控制器(FLC)。其中一个FLC被设计。通过在线改变PWM电流控制器的磁滞带来最小化产生的转矩纹波。另一种Sugeno型FLC用于调整比例积分(PI)控制器的增益,其中PI控制器实际上是作为初级速度控制器。因此,将避免传统PI控制器的局限性,并可以改善驱动系统的性能。磁通控制器也以这种方式并入,可以在保持电流和电压约束的同时控制电动机的转矩和磁通。磁通控制器的设计是基于额定速度以下的最大转矩(MTPA)操作和额定速度以上的弱磁操作。因此,提出的驱动器扩展了电动机的运行速度极限,并且使得能够有效地利用磁阻转矩。为了验证所提出的IPMSM驱动器的性能,首先使用Matlab / Simulink开发了一个仿真模型。然后,已使用数字信号处理器(DSP)控制器板DS1104针对实验室5 HP电动机实时实施了完整的IPMSM驱动器。在不同的运行条件下,仿真和实验都验证了所提出的驱动器的有效性。在这方面,提供了所提出的基于FLC的调谐PI和基于自适应磁滞控制器的驱动器与常规PI和基于固定带宽磁滞控制器的驱动器的性能比较。这些比较结果表明,所建议的IPMSM驱动器在较宽的速度范围内在转矩和速度方面具有更好的动态响应。

著录项

  • 作者

    Rebeiro Ronald Shourav;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类
  • 入库时间 2022-08-20 20:06:40

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