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Review of the Energy Saving Hydraulic System Based on Common Pressure Rail

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TLDR
An analysis of the development and research efforts focused on the CPR from a system perspective, which includes energy saving application and control performance investigation, and the challenges and the direction of future development are discussed.
Abstract
Recently, much effort has been directed toward reducing the energy consumption of hydraulic systems against the backdrop of energy shortages and environmental problems. This paper is focused on the development of an energy-saving hydraulic system based on common pressure rail (CPR), which has the potential benefit of being widely applicable to construction machinery. First, the principle of CPR is introduced. Then, the main components, including hydraulic transformers and storage elements, are reviewed, followed by an analysis of the development and research efforts focused on the CPR from a system perspective, which includes energy saving application and control performance investigation. Finally, the challenges and the direction of future development are discussed.

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Citations
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An integral terminal sliding mode control scheme for speed control system using a double-variable hydraulic transformer.

TL;DR: The main contribution of the paper is to propose a new type of double-variable hydraulic transformer (DVHT) and address the control issue and show that the control method can achieve multitasking control and effectively improve the control effect.
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Fuzzy Sliding Mode Control for Active Suspension System with Proportional Differential Sliding Mode Observer

TL;DR: In this paper, a generalized augmented transformation is considered for the quarter active suspension system with uncertainties, where the model uncertainties are converted to the uncertainties of the model and the model parameters.
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The applications of energy regeneration and conversion technologies based on hydraulic transmission systems: A review

TL;DR: The current status of ERC technologies based on HTSs in the application fields of construction machinery, hydraulic vehicles, regenerative suspensions and wave energy converters are comprehensively analysed, compared and discussed.
Journal ArticleDOI

Fuzzy sliding mode control with state estimation for velocity control system of hydraulic cylinder using a new hydraulic transformer

TL;DR: A state estimation based fuzzy sliding mode velocity controller is proposed in this paper to solve the control problem of the hydraulic cylinder controlled by a new hydraulic transformer for its parametric coupling and intrinsic nonlinearity.
Journal ArticleDOI

A review of vibration energy harvesting in rail transportation field

TL;DR: In this article , the authors reviewed, compared, and analyzed previous studies on vibration energy harvesting and related technologies, including electromagnetic harvesters, piezoelectric harveters, triboelectrics, and hydraulic harvester, and summarized the structure, output performance, merits and disadvantages of different energy harvesting strategies.
References
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Journal ArticleDOI

A review of energy storage technologies for wind power applications

TL;DR: In this paper, a review of several energy storage technologies for wind power applications is presented, where the main objectives of the article are the introduction of the operating principles, as well as the presentation of the main characteristics of ESS technologies suitable for stationary applications, and the definition and discussion of potential ESS applications in wind power according to an extensive literature review.
Journal ArticleDOI

Adaptive Backstepping Control of an Electrohydraulic Actuator

TL;DR: In this article, an adaptive position control for a pump-controlled electrohydraulic actuator (EHA) based on an adaptive backstepping control scheme is presented, which combines a modified back-stepping algorithm with a special adaptation law to compensate all nonlinearities and uncertainties in EHA system.
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Flywheel energy storage—An upswing technology for energy sustainability

TL;DR: In this article, the key factors of FES technology, such as flywheel material, geometry, length and its support system were described, which directly influence the amount of energy storage and flywheel specific energy.
Journal ArticleDOI

Development of hybrid powered hydraulic construction machinery

TL;DR: In this article, the authors analyzed the difference between the hybrid powered automobile vehicle and hybrid powered construction machinery, and the challenges facing the researchers and the construction machinery manufacturers are discussed, as well as the applications of hybrid systems in construction machinery.
Journal ArticleDOI

Control strategy analysis of the hydraulic hybrid excavator

TL;DR: This paper presents the adjustable single point under quasi constant pressure strategy of the hydraulic hybrid off-road vehicles which can reduce the fuel consumption clearly without deteriorating the performance.
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