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控制与算法
★ 5.0
电力电子变换器供电的电磁轴承建模与控制
Modelling and Control of Power-Converter-Fed Electromagnetic Bearing
| 作者 | Kamisetti N. V. Prasad · G. R. Jayanth · G. Narayanan |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2024年10月 |
| 技术分类 | 控制与算法 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电磁轴承 PID控制器 控制器设计 高速旋转机械 性能验证 |
语言:
中文摘要
摘要:电磁轴承(EMB)用于支撑高速旋转机械的轴,其控制涉及不稳定系统的稳定以及被支撑转子的高带宽位置控制。该控制应能抵御高速机械中出现的显著振动,满足国际标准化组织(ISO)的严格标准。控制器还应抑制由于不可避免的转子质量不平衡导致轴承受高离心力而产生的干扰。此外,控制应能在系统参数出现较大变化时保持鲁棒性。本文提出了一种比例 - 积分 - 微分(PID)控制器的系统设计方法。该方法包括确定控制器规格的可能范围、针对给定规格给出 PID 控制器参数的闭式表达式,以及在存在执行器带宽限制和系统参数变化的情况下选择满足所有要求的控制器。所提出的方法用于设计一个承载能力为 180 牛的径向电磁轴承的位置控制器。通过仿真验证,该控制器满足稳定性、带宽、干扰抑制和 ISO 标准要求。结果表明,该控制器在系统参数可能的变化范围内均能令人满意地工作。即使存在执行器带宽限制,其性能也令人满意。通过对一个质量为 2.285 千克的轴进行单自由度位置控制的仿真和实验,进一步验证了该控制器设计方法的有效性。
English Abstract
Control of electromagnetic bearings (EMB), which are used to support the shaft of a high-speed rotating machine, involves stabilization of an unstable system and high-bandwidth position control of the rotor being supported. The control should be immune to significant vibrations that are encountered in high-speed machines, satisfying stringent International Organization for Standardization (ISO) standards. The controller should also reject disturbances due to high centrifugal forces on the shaft due to inevitable rotor mass unbalance. Also, the control should be robust to wide variations encountered in the plant parameters. A systematic design procedure for the PID controller is presented. This includes identifying possible space of controller specifications, closed-form expressions for the parameters of a PID controller for given specifications, and selecting a controller that satisfies all requirements in the presence of actuator bandwidth limit and plant parameter variations. The proposed procedure is used to design a position controller for a radial electromagnetic bearing of 180-N load capacity. The same is verified through simulations to satisfy stability, bandwidth, disturbance rejection and ISO standard requirements. The controller is shown to perform satisfactorily over the complete range of possible plant parameter variations. The performance is satisfactory even in the presence of actuator bandwidth limitation. The controller design procedure is further validated through simulation and experiment in the context of one-degree-freedom position control of a shaft of mass 2.285 kg.
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SunView 深度解读
该电磁轴承建模与控制技术对阳光电源高速旋转机械应用具有重要参考价值。文中针对功率变换器供电系统的整体建模方法,可直接应用于ST储能系统中的飞轮储能变流器设计,通过状态反馈与补偿控制抑制非线性扰动的策略,可优化电机驱动系统的动态响应。该技术对新能源汽车电机控制器的高带宽控制、不稳定系统稳定化方法,与阳光电源电机驱动产品的矢量控制技术形成互补。此外,文中变换器动态特性建模思路可用于SG光伏逆变器的高频振荡抑制,提升系统鲁棒性。该研究为阳光电源在高速电机、磁悬浮储能等前沿领域的技术储备提供理论支撑。