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Tower crane path planning based on improved ant colony algorithm
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作者 HE Yumin HU Xiangyang +3 位作者 ZHANG Jinhua YAO Shipeng LIU Difang MEN Xinyan 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2024年第4期509-517,共9页
In order to solve the problem of path planning of tower cranes,an improved ant colony algorithm was proposed.Firstly,the tower crane was simplified into a three-degree-of-freedom mechanical arm,and the D-H motion mode... In order to solve the problem of path planning of tower cranes,an improved ant colony algorithm was proposed.Firstly,the tower crane was simplified into a three-degree-of-freedom mechanical arm,and the D-H motion model was established to solve the forward and inverse kinematic equations.Secondly,the traditional ant colony algorithm was improved.The heuristic function was improved by introducing the distance between the optional nodes and the target point into the function.Then the transition probability was improved by introducing the security factor of surrounding points into the transition probability.In addition,the local path chunking strategy was used to optimize the local multi-inflection path and reduce the local redundant inflection points.Finally,according to the position of the hook,the kinematic inversion of the tower crane was carried out,and the variables of each joint were obtained.More specifically,compared with the traditional ant colony algorithm,the simulation results showed that improved ant colony algorithm converged faster,shortened the optimal path length,and optimized the path quality in the simple and complex environment. 展开更多
关键词 tower crane ant colony algorithm transition probability local path chunking strategy path planning
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广义混合流体中纤毛通过电渗透区的流动模拟
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作者 S.IJAZ M.ABDULLAH +1 位作者 H.SADAF S.NADEEM 《Journal of Central South University》 SCIE EI CAS CSCD 2023年第4期1217-1230,共14页
本文建立了一个广义纳米流体流动模型,研究磁流体中纤毛毯在通过电渗透通道时对其运输的作用,并对混合纳米流体的特性进行解释。通过假设长波长和低雷诺数估计,将流体的流动分析方程转换为无量纲形式;用数学解法得到速度分布、压力梯度... 本文建立了一个广义纳米流体流动模型,研究磁流体中纤毛毯在通过电渗透通道时对其运输的作用,并对混合纳米流体的特性进行解释。通过假设长波长和低雷诺数估计,将流体的流动分析方程转换为无量纲形式;用数学解法得到速度分布、压力梯度和流函数的解析解;用图表表明相关物理参数的影响。该模型具有重要的应用价值,可应用于生物运输过程、人工纤毛设计和其他机械装置的操作等领域。 展开更多
关键词 电渗透效应 纤毛边界 辐射影响 混合纳米流体现象
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