Analysis of dynamic behavior of multiple-stage planetary gear train used in wind driven generator

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Abstract

A dynamic model of multiple-stage planetary gear train composed of a two-stage planetary gear train and a one-stage parallel axis gear is proposed to be used in wind driven generator to analyze the influence of revolution speed and mesh error on dynamic load sharing characteristic based on the lumped parameter theory. Dynamic equation of the model is solved using numerical method to analyze the uniform load distribution of the system. It is shown that the load sharing property of the system is significantly affected by mesh error and rotational speed; load sharing coefficient and change rate of internal and external meshing of the system are of obvious difference from each other. The study provides useful theoretical guideline for the design of the multiple-stage planetary gear train of wind driven generator. © 2014 Jungang Wang et al.

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Wang, J., Wang, Y., & Huo, Z. (2014). Analysis of dynamic behavior of multiple-stage planetary gear train used in wind driven generator. The Scientific World Journal, 2014. https://doi.org/10.1155/2014/627045

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