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Automatic detection of degenerate planetary gear trains with different degree of freedoms

机译:自动检测具有不同自由度的简并行星齿轮系

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Planetary gear trains (PGT) are widely used in transmissions of vehicles, pulley blocks, wrist watches, machine tool, robots, etc. The structural synthesis of PGTs is an effective way to create novel transmissions. In the synthesis process, one of the most important problems is to detect and eliminate degenerate PGTs. This paper proposes a fully automatic algorithm to resolve this key problem. Our previous graph representation of PGT is first introduced and the corresponding adjacency matrix is used as the numerical tool, based on which the fundamental circuits (f-circuit) of PGT can be easily determined. The present algorithm is executed by successively adding a single f-circuit to generate sub-graphs. The detection process has been automated by an interactive computer program. The algorithm is applicable for PGTs with any number of degree of freedoms (DOF). The algorithm has been applied to a large number of PGTs, including the counterexamples found in literature. Our results of all the tested PGTs are verified to be correct. (C) 2018 Elsevier Inc. All rights reserved.
机译:行星齿轮系(PGT)广泛用于车辆,皮带轮,手表,机床,机器人等的变速箱。PGT的结构综合是创建新型变速箱的有效途径。在合成过程中,最重要的问题之一是检测并消除简并的PGT。本文提出了一种全自动算法来解决这一关键问题。首先介绍我们以前的PGT的图形表示,并使用相应的邻接矩阵作为数值工具,在此基础上可以轻松确定PGT的基本电路(f电路)。通过依次添加单个f电路以生成子图来执行本算法。检测过程已通过交互式计算机程序自动执行。该算法适用于任意数量的自由度(DOF)的PGT。该算法已应用于大量PGT,包括文献中的反例。我们对所有测试过的PGT的结果均被验证是正确的。 (C)2018 Elsevier Inc.保留所有权利。

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