首页> 外文期刊>Applied Mathematical Modelling >Multi-parametric optimizations for power dissipation characteristics of Stockbridge dampers based on probability distribution of wind speed
【24h】

Multi-parametric optimizations for power dissipation characteristics of Stockbridge dampers based on probability distribution of wind speed

机译:基于风速概率分布的Stockbridge阻尼器功率耗散特性的多参数优化

获取原文
获取原文并翻译 | 示例

摘要

Power dissipation characteristics of Stockbridge dampers (SD) is one of the important indexes in anti-vibration work of transmission line. The study focuses on the optimization of the SD's power dissipation characteristics under the effect of multi-structure parameter coupling. The aeolian vibration of overhead transmission lines is uncertain and random in stochastic dynamics. According to Strouhal formula, the relationship between the vibration frequency of transmission lines and wind speed can be found out. Based on the Weibull wind speed probability distribution, the probability density function of the transmission line conductor and damper coupling system vibration frequency is derived. The SD is considered as a typical 2-dimension of stochastic dynamical system. Based on the random process generated by the power dissipation of the SD, the characteristics of power dissipation and SD's resonant frequencies are analyzed when the multi-structure parameters of the SD are coupled. And the diagrams of the power dissipation at various frequencies are obtained.Based on the probability density function of the vibration frequency of the overhead conductor and damper, the objective function, namely the mathematical expectation of power dissipation (E(PD)), of the optimizations for the SD's power dissipation under the coupling of multiple structural parameters is proposed for the first time according to the author's knowledge. Constraint conditions of the optimizations are built by the quantization processing. The energy dissipation characteristics of the dampers can be evaluated by E(PD), and the power dissipation of SD with different coupled dual structure parameters is optimized based on the proposed method. The optimal values or the optimal value intervals of different coupled dual structure parameters are found, which may provide practical data. (C) 2019 Published by Elsevier Inc.
机译:架桥减振器的功率耗散特性是输电线路抗振工作的重要指标之一。该研究的重点是在多结构参数耦合的影响下优化SD的功耗特性。架空输电线路的风振在随机动力学中是不确定的和随机的。根据斯特劳哈尔公式,可以找出传输线的振动频率与风速之间的关系。基于威布尔风速概率分布,推导了输电线路导体与阻尼器耦合系统振动频率的概率密度函数。 SD被认为是典型的二维随机动力学系统。基于SD功耗的随机过程,分析了SD的多结构参数耦合后的功耗特性和SD的谐振频率。根据架空导体和减振器振动频率的概率密度函数,确定了目标函数,即功率的数学期望(E(PD))。根据作者的知识,首次提出了在多个结构参数耦合下SD的功耗优化。通过量化处理来建立优化的约束条件。可以通过E(PD)评估阻尼器的能量耗散特性,并基于所提出的方法对具有不同耦合双重结构参数的SD的功率耗散进行优化。找到了不同耦合双结构参数的最优值或最优值区间,可以提供实用的数据。 (C)2019由Elsevier Inc.发布

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号