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FEEP micro-thrust balance characterization and testing

机译:FEEP微推力天平的表征和测试

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A micro-thrust stand developed by the National Physical Laboratory under ESA funding was calibrated and characterized. The balance is based on the nulled-pendulum principle. The thruster is positioned in a constrained pendulum that is free to move only along the line of thrust. A capacitive displacement sensor measures the movement of the pendulum and is connected via a servo closed loop to a force actuator that preserves the nulled position of the pendulum. The force exerted by the actuator is the measurement of the thrust generated by the field effect electric propulsion thruster. Part of the environmental vibration noise is cancelled by subtracting the signal produced by a dummy pendulum (not subjected to thrust) from the signal produced by the principal pendulum. The interface between the thruster and balance was designed with the aim of minimizing the interference of the electrical wires. This paper presents the results of the measurements that fully characterize the balance in terms of accuracy, resolution and thrust range. Improvements to the balance are suggested in order to increase its metrological performance.
机译:由美国国家物理实验室在欧空局资助下开发的微型推力台已经过校准和表征。余额基于零摆原理。推进器位于一个受约束的摆锤中,该摆锤只能沿推力线自由移动。电容式位移传感器测量摆锤的运动,并通过伺服闭环连接至力致动器,该致动器保持摆锤的零位。致动器施加的力是对场效应电动推进器产生的推力的测量。通过从主摆产生的信号中减去虚拟摆产生的信号(不受推力),可以消除部分环境振动噪声。设计推进器和平衡器之间的接口,旨在最大程度地减少电线的干扰。本文介绍了测量结果,这些测量结果在精度,分辨率和推力范围方面充分体现了天平的特性。建议改进天平,以提高其计量性能。

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