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Comparison of Controllers and Actuators Effect on Electro Hydrostatic Actuator

机译:控制器和执行器对电静压致动器效应的比较

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Hydraulic actuators play a major role in aircraft flight actuation and control. Primary control systems in an aircraft typically control the components that guide an airplane during flight. Electro Hydrostatic Actuators (EHA) is emerging as a viable option for aerospace as well as industrial machine builders. It is an emerging technology which replaces centralized hydraulic system by a self-contained and localized direct drive actuator system. As most of the aircraft applications use symmetric actuator, Symmetric actuator EHA system configuration is considered in most of the literatures. However in case of many industrial applications, asymmetric actuators are being used. The dynamic response that means how fast an actuator reaches a target position is an important criteria for any application. An indigenous experimental setup of EHA system is developed with measuring instruments and sensors that forms a mechatronic system. The Variable Motor and Fixed Pump configuration of EHA is used for experimentation. In this work the load analysis is carried out on asymmetric and symmetric actuators. Similarly the load analysis is carried out on different controllers like Proportional Derivative (PD), Proportional Integral (PI) and Proportional Integral Derivative (PID) over the dynamic response as a output. It is found that symmetric actuator and PD controller gives better results.
机译:液压执行器在飞机飞行驱动和控制中起主要作用。飞机中的主要控制系统通常控制在飞行期间引导飞机的组件。电静压执行器(EHA)被涌现为航空航天以及工业机械制造商的可行选择。它是一种新兴技术,通过独立和局部的直接驱动执行器系统取代集中式液压系统。由于大多数飞机应用使用对称执行器,在大多数文献中考虑了对称执行器EHA系统配置。然而,在许多工业应用的情况下,正在使用非对称执行器。动态响应意味着执行器达到目标位置的快速响应是任何应用的重要标准。通过测量仪器和传感器,开发了EHA系统的土着实验设置,形成了机电系统。 EHA的可变电机和固定泵配置用于实验。在这项工作中,负载分析在不对称和对称执行器上进行。类似地,负载分析在不同的控制器上执行比例导数(PD),比例积分(PI)和以动态响应的比例积分(PI)和比例积分导数(PID)作为输出。发现对称执行器和PD控制器提供更好的结果。

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