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Observer-based tuning of two-inertia servo-drive systems with integrated SAW torque transducers

机译:基于观察者的带有集成SAW扭矩传感器的两惯量伺服驱动系统的调整

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摘要

This paper proposes controller design and tuningudmethodologies that facilitate the rejection of periodic load-side disturbances applied to a torsional mechanical system while simultaneously compensating for the observer’s inherent phase delay. This facilitates the use of lower-bandwidth practically realizable disturbance observers. The merits of implementing full- and reduced-order observers are investigated, with the latter being implemented with a new low-cost servo-machine-integrated highband widthudtorque-sensing device based on surface acoustic waveud(SAW) technology. Specifically, the authors’ previous work based on proportional–integral–derivative (PID) and resonance ratio control (RRC) controllers (IEEE Trans. Ind. Electron., vol. 53, no. 4, pp. 1226–1237, Aug. 2006) is augmented with observer disturbance feedback. It is shown that higher-bandwidth disturbance observers are required to maximize disturbance attenuation over the low-frequency band (as well as the desired rejection frequency), thereby attenuating a wide range of possible frequencies. In such cases, therefore, it is shown that the RRC controller isudthe preferred solution since it can employ significantly higher observer bandwidth, when compared to PID counterparts, by virtue of reduced noise sensitivity. Furthermore, it is demonstrated that the prototype servo-machine-integrated 20-N · mSAWtorque transducer is not unduly affected by machine-generated electromagneticudnoise and exhibits similar dynamic behavior as audconventional instrument inline torque transducer.
机译:本文提出了一种控制器设计和调谐方法论,以利于抑制施加在扭转机械系统上的周期性负载侧干扰,同时补偿观察者固有的相位延迟。这有利于使用带宽较低,可实际实现的干扰观测器。研究了实现全阶和降阶观测器的优点,后者是利用一种新型的,基于表面声波 ud(SAW)技术的低成本伺服机集成的高带宽转矩检测装置实现的。具体来说,作者先前的工作基于比例积分微分(PID)和谐振比率控制(RRC)控制器(IEEE Trans。Ind。Electron。,第53卷,第4期,第1226-1237页,8月。 2006)增加了观察者干扰反馈。结果表明,需要更高带宽的干扰观测器来最大化低频频段(以及所需的抑制频率)上的干扰衰减,从而衰减可能的频率范围。因此,在这种情况下,显示出RRC控制器是首选解决方案,因为与PID对应物相比,RRC控制器可通过降低的噪声敏感度采用更高的观察者带宽。此外,证明了集成有伺服系统的原型20-N·mSAWtorque传感器不会受到机器产生的电磁噪声的过度影响,并且表现出与常规仪器在线扭矩传感器相似的动态性能。

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