Experimental Investigation of a Switched Inertance Hydraulic System With a High-Speed Rotary Valve

Author:

Pan Min1,Johnston Nigel2,Robertson James2,Plummer Andrew2,Hillis Andrew2,Yang Huayong3

Affiliation:

1. The State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Hangzhou 310027, China e-mail:

2. Department of Mechanical Engineering, University of Bath, Bath BA2 7AY, UK

3. The State Key Laboratory of Fluid Power Transmission and Control, Zhejiang University, Hangzhou 310027, China

Abstract

This paper reports on experimental investigations of a switched inertance hydraulic system (SIHS), which is designed to control the flow and pressure of a hydraulic supply. The switched system basically consists of a switching element, an inductance (inertance), and a capacitance. Two basic modes, a flow booster and a pressure booster, can be configured in a three-port SIHS. It is capable of boosting the pressure or flow with a corresponding drop in flow or pressure, respectively. This technique makes use of the inherent reactive behavior of hydraulic components. A high-speed rotary valve is used to provide sufficiently high switching frequency and to minimize the pressure and flow loss at the valve orifice, and a small diameter tube is used to provide an inductive effect. In this paper, a flow booster is introduced as the switched system for investigation. The measured steady-state and dynamic characteristics of the rotary valve are presented, and the dynamics characteristics of the flow booster are investigated in terms of pressure loss, flow loss, and system efficiency. The speed of sound is measured by analysis of the measured dynamic pressures in the inertance tube. A detailed analytical model of an SIHS is applied to analyze the experimental results. Experimental results on a flow booster rig show a very promising performance for the SIHS.

Publisher

ASME International

Subject

Computer Science Applications,Mechanical Engineering,Instrumentation,Information Systems,Control and Systems Engineering

Reference28 articles.

1. Johnston, D. N., 2009, “A Switched Inertance Device for Efficient Control of Pressure and Flow,” ASME Paper No. DSCC2009-2535.10.1115/DSCC2009-2535

2. Brown, F. T., 1987, “Switched Reactance Hydraulics: A New Way to Control Fluid Power,” National Conference on Fluid Power, Chicago, IL, pp. 25–34.

3. Hydraulic Switching Control—Principles and State of the Art,2008

4. Scheidl, R., Manhartsgruber, B., Kogler, H., and Winkler, B., 2008, “The Hydraulic Buck Converter-Concept and Experimental Results,” Sixth International Conference on Fluid Power, Dresden, Germany.

5. Two Basic Concepts of Hydraulic Switching Converters,2008

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