NeTS: Medium: Collaborative Research: Riding the Stress Wave: Integrated Monitoring, Communications, and Networking for Subsea Infrastructure
NeTS: Medium: Collaborative Research: Riding the Stress Wave: Integrated Monitoring, Communications, and Networking for Subsea Infrastructure
批准号:
1801811
负责人:
Xuemin Chen
金额:
$12.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-09-01 至 2022-08-31
中文摘要
数千英里的管道纵横交错于墨西哥湾海底,是美国和世界海上石油和天然气工业的命脉。这些管道的泄漏和破裂不仅会造成巨大的经济损失,而且还会造成环境灾难。该项目的目标是有效地监测海底基础设施,如海上管道,并有效地提供传感信息,以供后续控制和行动。为了提供一个可行的解决方案,该项目将集成压电换能器设计,声学通信,应力波通信(SWC)和混合网络,并进行实验和现场测试,以验证拟议的设计。这一愿景需要从工程和科学角度做出努力,拟议的变革性研究的成功将大大改善海底基础设施监测和数据传输系统的设计、分析和实施。研究成果将有助于未来的海底物联网和海洋大数据系统,并对海上石油和天然气工业,污染控制,海洋农业,灾难救援等产生影响。该项目还将为研究生和本科生,特别是女性和少数民族学生提供特殊的跨学科培训机会,通过研究工作和相关课程,在多个机构之间进行交流。该项目旨在通过以下五个协同重点开发有效的海底基础设施健康监测和高效的信息传输网络设计:(1)结构健康监测,将采用锆钛酸铅(PZT)传感器对管道进行综合结构健康监测,包括冲击、泄漏和损伤检测,并探索如何通过SWC发送检测到的损伤信息;(2)水下潜油通道建模,对水下潜油沿着充液管道在海底环境中的运动进行模型分析和仿真,表征复杂管网中的水下潜油通道;(3)自适应时间反转声学通信,其将表征80- 100的高频带中的声学通信信道。200千赫,用于海洋中的短程传输,并开发基于时间反转处理的新的自适应通信接收器和战略;(4)混合海底网络开发,将开发混合海底无线网络,以整合传统的声学通信和依赖海底基础设施的SWC,并从多个角度研究混合网络性能;(5)综合实验验证,该公司将在校园和工业园区进行一系列实验室和海上现场测试,该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
Thousands of miles of pipelines crisscrossing the Gulf of Mexico seafloor are the veins for the offshore oil and gas industry in the U.S. and the world. Leaks and ruptures in those pipelines lead to not only enormous economic loss but also environmental disasters. The goal of this project is to effectively monitor the subsea infrastructure such as offshore pipelines, and efficiently deliver the sensed information for subsequent control and action. To provide a viable solution, this project will integrate piezoelectric transducer designs, acoustic communications, stress wave communications (SWC), and hybrid networking, and conduct experiments and field tests to validate the proposed designs. Such a vision needs efforts from both engineering and scientific perspectives, and the success of the proposed transformative research will significantly improve the design, analysis and implementation of subsea infrastructure monitoring and data transmission systems. The research outcomes will potentially contribute to a future subsea Internet of Things and ocean big data systems, and have impact on offshore oil and gas industry, pollution control, ocean agriculture, disaster rescue, etc. The project will also provide special interdisciplinary training opportunities for both graduate and undergraduate students, particularly women and minority students, across multiple institutions through both research work and related courses.This project aims to develop an effective subsea infrastructure health monitoring, and efficient information delivery network design via five synergistic thrusts: (1) structural health monitoring, which will employ Lead Zirconate Titanate (PZT) transducers to perform integrated structural health monitoring of pipelines, including impact, leakage, and damage detection, and explore how to send the detected damage information via SWC; (2) SWC channel modeling, which will conduct model analysis and simulation of SWC traveling along a fluid-filled pipeline in the subsea environment, and characterize SWC channels in a complicated pipeline network; (3) adaptive time reversal acoustic communications, which will characterize the acoustic communication channel in high frequency bands of 80-200 kilohertz for short range transmissions in the ocean and develop new adaptive communication receivers and strategies based on time reversal processing; (4) hybrid subsea network development, which will develop a hybrid subsea wireless network to integrate traditional acoustic communications and SWC depending on the subsea infrastructure, and study the hybrid network performance from multiple perspectives; (5) integrated experimental validation, which will conduct a series of lab and at-sea field tests on campus and at industrial/academic collaborators' sites to verify the proposed designs.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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DOI:
10.1007/s13349-021-00481-0
发表时间:
2020-09
期刊:
Journal of Civil Structural Health Monitoring
影响因子:
4.4
作者:
[Mingchi Zhang;Xuemin Chen;Wei Li]
通讯作者:
Mingchi Zhang;Xuemin Chen;Wei Li
DOI:
10.1109/iccsi55536.2022.9970670
发表时间:
2022-11
期刊:
2022 International Conference on Cyber-Physical Social Intelligence (ICCSI)
影响因子:
--
作者:
[Yong Xu;Ji-An Chen;Xuemin Chen;Gangbing Song]
通讯作者:
Yong Xu;Ji-An Chen;Xuemin Chen;Gangbing Song
DOI:
10.3390/app11073138
发表时间:
2021-04
期刊:
Applied Sciences
影响因子:
--
作者:
[Mingchi Zhang;Xuemin Chen;Wei Li]
通讯作者:
Mingchi Zhang;Xuemin Chen;Wei Li
DOI:
10.1109/icnsc.2019.8743163
发表时间:
2019-05
期刊:
2019 IEEE 16th International Conference on Networking, Sensing and Control (ICNSC)
影响因子:
--
作者:
[Ning Li;Xuemin Chen;G. Song]
通讯作者:
Ning Li;Xuemin Chen;G. Song
Collaborative Research: Developing Virtual and Remote Undergraduate Laboratory for Engineering Technology
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批准号:0942778
-
项目类别:Standard Grant
-
资助金额:$10.0万
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财政年份:2010
-
负责人:Xuemin Chen
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依托单位:
Collaborative Research: Develop Next Generation Unified Framework for Remote Laboratory Experiments
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批准号:0935008
-
项目类别:Standard Grant
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资助金额:$5.0万
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财政年份:2009
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负责人:Xuemin Chen
-
依托单位:
海外基金