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An electromechanical actuation system for an expendable launch vehicle

机译:用于消耗性运载火箭的机电致动系统

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摘要

A major effort at the NASA Lewis Research Center in recent years has been to develop electro-mechanical actuators (EMA's) to replace the hydraulic systems used for thrust vector control (TVC) on launch vehicles. This is an attempt ot overcome the inherent inefficiencies and costs associated with the existing hydraulic structures. General Dynamics Space Systems Division, under contract to NASA Lewis, is developing 18.6 kW (25 hp), 29.8 kW (40 hp), and 52.2 kW (70 hp) peak EMA systems to meet the power demands for TVC on a family of vehicles developed for the National Launch System. These systems utilize a pulse population modulated converter and field-oriented control scheme to obtain independent control of both the voltage and frequency. These techniques allow an induction motor to be operated at its maximum torque at all times. At NASA Lewis, we are building on this technology to develop our own in-house system capable of meeting the peak power requirements for an expendable launch vehicle (ELV) such as the Atlas. Our EMA will be capable of delivering 22.4 kW (30 hp) peak power with a nominal of 6.0 kW (8 hp). This system differs from the previous ones in two areas: (1) the use of advanced control methods, and (2) the incorporation of built-in-test. The advanced controls are essential for minimizing the controller size, while the built-in-test is necessary to enhance the system reliability and vehicle health monitoring. The ultimate goal of this program is to demonstrate an EMA which will be capable of self-test and easy integration into other projects. This paper will describe the effort underway at NASA Lewis to develop an EMA for an Atlas class ELV. An explanation will be given for each major technology block, and the status of each major technology block and the status of the overall program will be reported.
机译:近年来,美国宇航局刘易斯研究中心的一项重大工作就是开发机电致动器(EMA's),以取代用于运载火箭的推力矢量控制(TVC)的液压系统。这是试图克服与现有液压结构相关的固有效率低下和成本的尝试。根据NASA Lewis的合同,通用动力空间系统部正在开发18.6 kW(25 hp),29.8 kW(40 hp)和52.2 kW(70 hp)峰值EMA系统,以满足一系列车辆对TVC的功率需求为国家发射系统开发。这些系统利用脉冲群调制转换器和面向磁场的控制方案来获得对电压和频率的独立控制。这些技术允许感应电动机始终以其最大扭矩运行。在NASA Lewis,我们正在利用这项技术来开发自己的内部系统,该系统能够满足诸如Atlas之类的消耗性运载火箭(ELV)的峰值功率要求。我们的EMA将能够提供22.4 kW(30 hp)的峰值功率,额定功率为6.0 kW(8 hp)。该系统在两个方面与以前的系统不同:(1)使用高级控制方法,以及(2)内置测试的合并。先进的控制对于最小化控制器尺寸至关重要,而内置测试对于增强系统可靠性和车辆健康监控是必不可少的。该程序的最终目标是演示EMA,该EMA能够进行自我测试并轻松集成到其他项目中。本文将描述NASA Lewis正在为Atlas级ELV开发EMA的努力。将对每个主要技术模块进行解释,并报告每个主要技术模块的状态和整个程序的状态。

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