首页> 外文会议>Oceans Conference Exhibition >Fiber optic structural health monitoring systems: rough sea trials of the RV triton
【24h】

Fiber optic structural health monitoring systems: rough sea trials of the RV triton

机译:光纤结构健康监测系统:RV Triton的粗糙海洋试验

获取原文

摘要

Systems Planning and Analysis, Inc., under sponsorship from the United States Navy, Office of Naval Research (ONR), has developed a structural health monitoring system for large-scale structures, based on fiber Bragg grating (FBG) sensors. The application of this new structural health monitoring system to U.S. Navy vessels will reduce maintenance ship costs by allowing for scheduling of need-based maintenance, increase fleet operational availability, and ship survivability by providing ship operators real-time information concerning the state of the ship structure. Central to the monitoring system is an instrumentation unit capable of detecting signals from hundreds of FBG sensors with sampling rates approaching 2 kHz. The instrumentation is based on SPA's proprietary Digital Spatial Wavelength Domain Multiplexing (DSWDM) technology developed under this effort. DSWDM technology is electro-optics based and has been shown to provide significantly higher sampling rates than comparative FBG interrogation technologies. The baseline system interrogates more than 120 sensors along eight fiber channels. The prototype High Speed -Fiber Optic Interrogation System (HS-FOIS) also possesses a number of advantages intrinsic to optical fiber sensors as compared to conventional strain sensor systems. These advantages include extremely low installed weight and volume, immunity to electromagnetic interference and corrosive environments, and low signal attenuation and drift. This paper describes the installation and testing of a large-scale fiber optic sensor network on the British Trimaran Research Vessel (RV) Triton. In this on-going project with the Naval Surface Warfare Center, Carderock Division (NSWCCD) and the British Defence Science and Technology Laboratory (formerly DERA), Systems Planning and Analysis, Inc. (SPA) recently completed the installation and at-sea testing of an integrated hardware/software structural monitoring system. The rough sea trials of the RV Triton was conducted in early February 2002 in the North Atlantic. This paper describes the fiber optic Bragg grating sensor network comprising of 51 sensors, the interrogation system, and the processing algorithms used to simultaneously record strain data at both high- and low-speed frequencies, including triggering of the high-speed channels. This paper also details the sensor layout and installation process with emphasis on lessons learned during this procedure. The test procedure and sample data results are presented. Finally, conclusions on the presented data and implications of the structural health monitoring system for future naval vessels are discussed.
机译:系统规划和分析,Inc。在海军研究(ONR)的美国海军的赞助下,已经开发了一种基于光纤布拉格光栅(FBG)传感器的大型结构的结构健康监测系统。通过提供基于需求的维护,增加舰队运营可用性和船舶生存能力,将这一新的结构健康监测系统应用于美国海军船只将降低维护船舶成本,通过提供关于船舶状态的船舶运营商的实时信息,将增加车队运营可用性和船舶生存能力结构体。监控系统的核心是一种仪器,能够检测来自数百个FBG传感器的信号,采样率接近2kHz。仪器基于SPA的专有数字空间波长域多路复用(DSWDM)技术在此努力下开发。 DSWDM技术是基于电光的,已经显示出比比较FBG询问技术提供明显更高的采样率。基线系统沿八个光纤通道询问超过120个传感器。与传统的应变传感器系统相比,原型高速 - 光学询问系统(HS-Fois)也具有多载光纤传感器的许多优点。这些优势包括极低安装的重量和体积,免疫接收到电磁干扰和腐蚀性环境,以及低信号衰减和漂移。本文介绍了英国三兰研究船(RV)Triton上大型光纤传感器网络的安装和测试。在与海军地面战中心,Carderock部门(NSWCCD)和英国国防科学和技术实验室(以前的Dera),系统规划和分析,Inc。(SPA)最近完成了安装和海上测试集成硬件/软件结构监测系统。 RV Triton的粗糙海洋试验于2002年2月初在北大西洋初进行。本文介绍了包括51个传感器,询问系统和用于同时记录高速频率的应变数据的加工算法的光纤布拉格光栅传感器网络,包括高速频率,包括触发高速通道。本文还详细介绍了传感器布局和安装过程,重点是在此过程中学到的经验教训。提出了测试过程和样本数据结果。最后,讨论了对未来海军船舶结构健康监测系统的所呈现数据和对象的含义结论。

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