首页> 外文会议>ASME conference on smart materials, adaptive structures and intelligent systems >USE OF INTRINSIC ELECTRICAL RESISTANCE CHANGES IN SHAPE MEMORY ALLOYS AS ROBUST ACTUATOR STATE AND FAULT DETECTION SENSORS
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USE OF INTRINSIC ELECTRICAL RESISTANCE CHANGES IN SHAPE MEMORY ALLOYS AS ROBUST ACTUATOR STATE AND FAULT DETECTION SENSORS

机译:使用形状记忆合金的固有电阻变化为鲁棒致动器状态和故障检测传感器

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Shape memory alloy (SMA) used as electrically controlled on-demand actuators provide engineers new opportunities to create lighter automated components and devices in vehicles due to their compact size, silent operation, and inherently low mass. Outstanding and critical issues are cost-effective and robust control and protection of the SMA actuator element within the device to achieve long lasting service. SMA responds autonomously to external conditions such as temperature and stress and exhibit many property changes during excitation, but many current devices only use SMA as compact actuators; not making use of their intrinsic sensing capabilities. Inherent SMA property changes during use can provide significant utility for improved optimal control strategies. The motivation for this work is to create a robust control method for electrically controlled SMA actuation to simplify device implementation and improve reliability by using intrinsic material property changes. The current work demonstrates the use of electrical resistance feedback in an integrated controller to allow reduction of parasitic mass, cost, and complexity in 2-position devices. Using signal processing and algorithm logic states, we create virtual sensors that successfully identify start of the actuation, end of actuation, reset, and stress overload events. Using electrical resistance to sense the start of actuation allows successful/repeatable performance over a wide range of environmental conditions. Sensing the end of actuation and reset readiness prevents overheating and allows for shorter actuation cycle times, respectively without additional position and state sensors. While many previous efforts have examined the use of resistance in control schemes, one critical need not addressed in previous controllers is the ability to detect stress overload of the SMA during excitation. To protect against unintentional blocked deployment, many current devices include bulky mechanical overload protection systems that prevent stress spikes and SMA damage accumulation. Using resistance feedback, we demonstrate the detection of stress overloads thus extending device lifetime without the need for external mechanisms. The time derivative of the electrical resistance, logic state of the controller, and detection and use of peak/valley widths and thresholds define control events. These events become software based sensors that can augment or replace dedicated external sensors. Software based sensors were successfully employed to control an SMA wire actuator under various environmental temperatures and stress conditions. The control algorithm is not affected to changes in electrical contact resistance, material degradation and other noise sources yielding a powerful method for simple control of two position SMA devices without the need of external sensors.
机译:由于其紧凑的尺寸,无声操作和固有的低质量,用作电控的按需执行器使用的形状记忆合金(SMA)为工程师提供了创建更轻松的自动化部件和设备的新机会。出色的和关键问题是设备内的SMA执行器元件的成本效益和强大的控制和保护,以实现持久的服务。 SMA自主地应对外部条件,如温度和压力,并且在激励过程中展示许多属性变化,但许多电流设备仅使用SMA作为紧凑型执行器;没有利用他们的内在传感能力。使用过程中固有的SMA属性更改可以提供更高的最佳控制策略的重要实用程序。这项工作的动机是为电控SMA致动创建鲁棒控制方法,以简化设备实现,通过使用内在材料性能改变来提高可靠性。目前的工作表明在集成控制器中使用电阻反馈,以允许在2个位置装置中降低寄生质量,成本和复杂性。使用信号处理和算法逻辑状态,我们创建了成功识别致动,致动,复位结束的开始的虚拟传感器,旋转。使用电阻以感测致动的开始允许在各种环境条件下成功/可重复的性能。感测致动和复位准备的结束可防止过热并允许致动周期时间短,而无需额外的位置和状态传感器。虽然以前的许多努力研究了控制方案中的电阻,但在先前的控制器中没有解决的一个关键不需要在激励期间检测SMA的压力过载。为了防止无意阻止的部署,许多电流设备包括庞大的机械过载保护系统,防止应力尖峰和SMA损坏积聚。使用电阻反馈,我们展示了应力过载的检测,从而延长了设备寿命而不需要外部机构。电阻的时间衍生,控制器的逻辑状态,以及峰/谷宽度和阈值的检测和使用定义了控制事件。这些事件成为基于软件的传感器,可以增强或更换专用的外部传感器。基于软件的传感器被成功地用于在各种环境温度和应力条件下控制SMA线致动器。控制算法不受电接触电阻,材料劣化和其他噪声源的变化,产生强大的方法,用于简单控制两个位置SMA器件,而无需外部传感器。

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