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Design, control, and energetic characterization of a solenoid-injected monopropellant-powered actuator

Bobby L. Shields, Kevin B. Fite, Michael Goldfarb

发表年份
2006
引用次数
33

摘要

This paper describes a direct-injection configuration of a monopropellant-powered actuator that is intended to provide high-energy-density actuation for a self-powered position- or force-controlled human-scale robot. The proposed actuator is pressurized by a pair of solenoid injection valves (each of which control the flow of a monopropellant through a catalyst pack and directly into the respective side of a pneumatic-type cylinder), and depressurized via a three-way hot-gas proportional exhaust valve. A controller is described that coordinates the control of the two solenoid propellant injection valves, together with the control of the proportional hot-gas exhaust valve, in order to provide actuator force tracking. Experimental results are presented that validate the effectiveness of the force-control approach. Finally, energetic performance of the proposed actuator is experimentally assessed and shown to provide an energetic figure of merit, an order of magnitude greater than that of a battery-powered servomotor approach

关键词

MonopropellantActuatorSolenoidSolenoid valveElectrohydraulic servo valvePneumatic actuatorControl theory (sociology)ServomotorPropellantMechanical engineering

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