Active Pressure Ripple Control in Axial Piston Pumps through High-Frequency Swash Plate Oscillations—A Theoretical Analysis

Pressure ripple has always been a major drawback in hydraulic circuits, since it is the main source of the overall noise emitted by the pump. This article presents a theoretical analysis on the active control of the pressure ripple in an axial piston pump by properly moving the swash plate. The redu...

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Main Authors: Paolo Casoli, Mirko Pastori, Fabio Scolari, Massimo Rundo
Format: Article
Language:English
Published: MDPI AG 2019-04-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/12/7/1377
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spelling doaj-d0d76b82e4e14f85a71e5804287c71412020-11-24T21:44:23ZengMDPI AGEnergies1996-10732019-04-01127137710.3390/en12071377en12071377Active Pressure Ripple Control in Axial Piston Pumps through High-Frequency Swash Plate Oscillations—A Theoretical AnalysisPaolo Casoli0Mirko Pastori1Fabio Scolari2Massimo Rundo3Department of Engineering and Architecture, University of Parma, 43124 Parma, ItalyDepartment of Engineering and Architecture, University of Parma, 43124 Parma, ItalyDepartment of Engineering and Architecture, University of Parma, 43124 Parma, ItalyDepartment of Energy, Politecnico di Torino, C.so Duca degli Abruzzi 24, 10129 Turin, ItalyPressure ripple has always been a major drawback in hydraulic circuits, since it is the main source of the overall noise emitted by the pump. This article presents a theoretical analysis on the active control of the pressure ripple in an axial piston pump by properly moving the swash plate. The reduction of the pressure oscillations is studied in an active way and for this purpose a mathematical model of the whole pump has been developed, focusing on both the fluid dynamic aspects and the component dynamics. An experimental activity has been performed in order to validate the pump mathematical model. The results of the simulation, compared with the experimental data, highlight a suitable capability of the model to predict both the dynamics of the swash plate and the delivery pressure ripple. The validated model has been used for implementing an active control of the pressure ripple with the aim of properly modifying the machine displacement at high frequency in order to vary the instantaneous delivery flow rate and, consequently, the outlet pressure. The control strategy is grounded on moving the swash plate for modifying the motion law of the pistons through a servo valve integrated into the displacement control system. The simulations results have demonstrated that acting on the pump displacement control is possible to considerably reduce the amplitude of the pressure oscillations.https://www.mdpi.com/1996-1073/12/7/1377axial piston pumpactive controlpressure rippleswash plate
collection DOAJ
language English
format Article
sources DOAJ
author Paolo Casoli
Mirko Pastori
Fabio Scolari
Massimo Rundo
spellingShingle Paolo Casoli
Mirko Pastori
Fabio Scolari
Massimo Rundo
Active Pressure Ripple Control in Axial Piston Pumps through High-Frequency Swash Plate Oscillations—A Theoretical Analysis
Energies
axial piston pump
active control
pressure ripple
swash plate
author_facet Paolo Casoli
Mirko Pastori
Fabio Scolari
Massimo Rundo
author_sort Paolo Casoli
title Active Pressure Ripple Control in Axial Piston Pumps through High-Frequency Swash Plate Oscillations—A Theoretical Analysis
title_short Active Pressure Ripple Control in Axial Piston Pumps through High-Frequency Swash Plate Oscillations—A Theoretical Analysis
title_full Active Pressure Ripple Control in Axial Piston Pumps through High-Frequency Swash Plate Oscillations—A Theoretical Analysis
title_fullStr Active Pressure Ripple Control in Axial Piston Pumps through High-Frequency Swash Plate Oscillations—A Theoretical Analysis
title_full_unstemmed Active Pressure Ripple Control in Axial Piston Pumps through High-Frequency Swash Plate Oscillations—A Theoretical Analysis
title_sort active pressure ripple control in axial piston pumps through high-frequency swash plate oscillations—a theoretical analysis
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2019-04-01
description Pressure ripple has always been a major drawback in hydraulic circuits, since it is the main source of the overall noise emitted by the pump. This article presents a theoretical analysis on the active control of the pressure ripple in an axial piston pump by properly moving the swash plate. The reduction of the pressure oscillations is studied in an active way and for this purpose a mathematical model of the whole pump has been developed, focusing on both the fluid dynamic aspects and the component dynamics. An experimental activity has been performed in order to validate the pump mathematical model. The results of the simulation, compared with the experimental data, highlight a suitable capability of the model to predict both the dynamics of the swash plate and the delivery pressure ripple. The validated model has been used for implementing an active control of the pressure ripple with the aim of properly modifying the machine displacement at high frequency in order to vary the instantaneous delivery flow rate and, consequently, the outlet pressure. The control strategy is grounded on moving the swash plate for modifying the motion law of the pistons through a servo valve integrated into the displacement control system. The simulations results have demonstrated that acting on the pump displacement control is possible to considerably reduce the amplitude of the pressure oscillations.
topic axial piston pump
active control
pressure ripple
swash plate
url https://www.mdpi.com/1996-1073/12/7/1377
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AT mirkopastori activepressureripplecontrolinaxialpistonpumpsthroughhighfrequencyswashplateoscillationsatheoreticalanalysis
AT fabioscolari activepressureripplecontrolinaxialpistonpumpsthroughhighfrequencyswashplateoscillationsatheoreticalanalysis
AT massimorundo activepressureripplecontrolinaxialpistonpumpsthroughhighfrequencyswashplateoscillationsatheoreticalanalysis
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