一种可靠的开关放大器,用于主动磁轴承误差检测策略和测量结果

A. Schulz, M. Schneeberger, J. Wassermann
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引用次数: 3

摘要

主动磁轴承(AMBs)提供了一些优于传统轴承的优点,如无接触悬架和悬架参数的变化,如运行过程中的刚度和阻尼。然而,由于控制器,传感器,执行器和放大器的相当复杂的组装导致的可靠性较低,这是amb的工业接受度相当低的一个主要原因。一项对200台磁悬浮涡轮发电机故障的研究清楚地表明,几乎完全是开关放大器及其DC/DC转换器导致了大量电子元件故障。基于这项研究的结果,作者正在开发一种AMB,通过在控制器和功率元件之间的空间和电流隔离以及可靠的开关放大器(RSA)提供可靠和经济的解决方案。根据可靠性要求,RSA由两个或多个左右开关放大器半桥组成。这些所谓的“热插拔模块”(hsm)并联连接,每个模块都有自己的错误检测和去耦电路(EDC)。如果HSM发生错误,它会自动关闭并与amb执行器断开连接,而剩余的功能齐全的HSM会接管所需的电流。热插拔过程中,故障的HSM可以替换为正常的HSM。本文给出了误差检测和解耦策略以及第一个rsa原型的解释性测量结果。所有考虑的故障情况(开关元件故障,控制信号错误等)以及EDC的任务都进行了解释。测量结果表明,RSA可以可靠地检测到诱导分量误差,并且几乎不受干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A reliable switching amplifier for active magnetic bearings error detection strategies and measurement results
Active magnetic bearings (AMBs) offer some advantages over conventional bearings such as contact-free suspension and variation of suspension parameters as stiffness and damping during operation. A lower reliability caused by a fairly complex assembly of the controller, sensors, actuators and amplifiers, however, is one major reason for the rather low industrial acceptance of AMBs. A study on failures in 200 magnetically suspended turbomachines clearly states that almost exclusively the switching amplifiers and their DC/DC-converters caused substantial electronic component failures. Based on the results of this study an AMB is being developed by the authors, providing a reliable and economic solution by means of spatial and galvanic isolation between the controller and the power elements along with a reliable switching amplifier (RSA). Depending on the reliability required, the RSA consists of two or more left and right switching amplifier half-bridges. These so called "Hot Swap Modules" (HSMs) are connected in parallel, each with its own error detection and decoupling circuitry (EDC). If an error occurs in an HSM, it is autonomously switched off and disconnects itself from the AMB-actuator, while the remaining, fully functioning HSMs take over the required current. The faulty HSM can be replaced by a functioning one during full operation of the AMB in a hot-swap procedure. In this paper the error detection and decoupling strategies along with explanatory measurement results of the first RSA-prototype are presented. All considered fault-scenarios (malfunctioning of switching elements, errors within the control signals, etc.) as well as the tasks of the EDC are explained. Measurement results show the reliable detection of induced component errors and the nevertheless almost undisturbed functionality of the RSA.
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