Modeling of a Hydraulic Wind Power Transfer Utilizing a Proportional Valve


Hydraulic circuits can transfer outstanding amounts of energy in the required direction without taking giant house. To implement this technology for harvesting the energy of wind appropriately, models of the system are required. Hydraulic wind power technology has the advantages of eliminating expensive and hulking variable ratio gearbox and its expensive maintenance, whereas enabling the mixing of multiple wind turbines in a very single generation unit. In this paper, the dynamics of various hydraulic elements are studied, nonlinearities are taken into consideration, pressure dynamics in several elements of the system are studied, and therefore the motor load effects are thought-about. Primarily based on these issues, a unique nonlinear state-house representation of the system is introduced. Results of the mathematical model and also the experimental data are compared to verify the proposed model. The comparison demonstrated that the mathematical model captures all major characteristics of the hydraulic circuit and will model the system behavior under completely different operating conditions.

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