...
首页> 外文期刊>International Journal of Distributed Sensor Networks >Optimization of acousto-ultrasonic sensor networks using genetic algorithms based on experimental and numerical data sets
【24h】

Optimization of acousto-ultrasonic sensor networks using genetic algorithms based on experimental and numerical data sets

机译:基于实验和数值数据集的遗传算法优化声-超声波传感器网络

获取原文
           

摘要

Aircraft structural damage detection is becoming of increased importance. Technologies such as acousto-ultrasonic have been suggested for this application; however, an optimization strategy for sensor network design is required to ensure a high detection probability while minimizing sensor network mass. A methodology for optimizing acousto-ultrasonic transducer placement for adhesive disbond detection on metallic aerospace structures is presented. Experimental data sets were acquired using three-dimensional scanning laser vibrometry enabling in-plane and out-of-plane Lamb wave components to be considered. This approach employs a novel multi-sensor site strategy which is difficult to achieve with physical transducers. Different excitation frequencies and source–damage–sensor paths were considered. A fitness assessment criterion which compared baseline and damaged data sets using cross-correlation coefficients was developed empirically. Efficient sensor network optimization was achieved using a bespoke genetic algorithm for different network sizes with the effectiveness assessed and discussed. A comparable numerical data set was also produced using the local interaction simulation approach and optimized using the same methodology. Comparable results with those of the experimental data set indicated a good agreement. As such, the numerical approach demonstrates that acousto-ultrasonic sensor networks can be optimized using simulation (with some further refinement) during an aircraft design phase, being a useful tool to sensor network designers.
机译:飞机结构损坏的检测变得越来越重要。对于这种应用,已经提出了声-超声技术。但是,需要一种传感器网络设计的优化策略,以确保较高的检测概率,同时最大程度地减小传感器网络的质量。提出了一种优化声-超声换能器放置以检测金属航空航天结构上的胶粘剂的方法。使用三维扫描激光振动法获取实验数据集,可以考虑平面内和平面外的兰姆波分量。这种方法采用了新颖的多传感器定位策略,这是物理传感器难以实现的。考虑了不同的激发频率和源-损伤-传感器路径。根据经验,开发了适合度评估标准,该标准使用互相关系数比较了基线数据集和受损数据集。使用定制的遗传算法针对不同的网络规模实现了有效的传感器网络优化,并评估和讨论了有效性。还使用局部相互作用模拟方法生成了可比较的数值数据集,并使用相同的方法进行了优化。与实验数据集的可比结果表明了很好的一致性。这样,数值方法证明了在飞机设计阶段可以使用仿真(并作一些进一步的改进)来优化声-超声波传感器网络,这对于传感器网络设计者是一种有用的工具。

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