Energy Efficiency and Controllability of Fluid Power Systems
A special issue of Energies (ISSN 1996-1073).
Deadline for manuscript submissions: closed (31 March 2017) | Viewed by 134155
Special Issue Editor
Interests: fluid power systems; positive displacement machines; gear pumps; hydraulic control valves; aeration and cavitation in fluid power systems; analysis of noise generation and noise reduction in hydraulic components; electro-hydraulic systems; oscillation damping of load handling machines
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
This Special Issue on “Energy Efficiency and Controllability of Fluid Power Systems” focuses on the recent advances of fluid power technology in a wide range of topics, including:
- New approaches for the analysis, modeling and design of hydraulic and pneumatic components
- New design solutions for hydrostatic pumps and motors
- Hydrostatic and Hydraulic Hybrid Transmissions
- Control design methodologies and techniques for fluid power systems
- Digital and switched fluid power systems
- Reduction of oscillations and vibrations of fluid power machines
- New system configurations to reduce fuel consumption and increase productivity of fluid power machines
- Safety, reliability, fault analysis, diagnosis and prognostic of fluid power systems
- Noise and vibration of fluid power components
- Human scale applications of fluid power technology
- Water hydraulics
- Applications of fluid power in the field of renewable energy
- Fluid power in manufacturing
- Fluid power teleoperation and haptics
- Fluid power in mobile and industrial robots
- Environmental aspects of fluid power
- Smart fluids and materials for fluid power systems
Prof. Andrea Vacca
Guest Editor
Manuscript Submission Information
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Keywords
- hydraulics
- pneumatics
- fluid power
- hydrostatic pumps and motors
- hydraulic control valves
- digital hydraulics
- water hydraulics
- hydrostatic transmissions
- hydraulic hybrids
- hydraulic and pneumatic robots
- noise and vibration
- oscillation damping
- control
- energy efficiency
- fuel consumption
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