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Cross Deployment Networking and Systematic Performance Analysis of Underwater Wireless Sensor Networks
Zhengxian Wei1,2, Min Song3, Guisheng Yin4
1College of Computer Science and Technology, Harbin Engineering University, Harbin 150001, China. weizhengxian@sina.com.
Sensors (Basel, Switzerland)
|July 15, 2017
Summary
This study introduces novel methods for underwater wireless sensor networks (UWSNs), optimizing node deployment and self-adaptive networking for improved performance in harsh ocean environments.
Area of Science:
- Marine technology
- Sensor networks
- Wireless communication
Background:
- Underwater wireless sensor networks (UWSNs) face challenges due to dynamic work conditions and harsh marine environments.
- Optimizing UWSN performance with minimal sensor nodes and self-adaptive networking is a critical research problem.
Purpose of the Study:
- To address challenges in UWSN sensor deployment, networking, and performance calculation.
- To propose novel methods and models for efficient UWSN deployment and management.
Main Methods:
- Improved cross body-centered cubic lattice (CBCL) for deployment and topology generation.
- Proposed cross deployment networking method (CDNM) tailored for underwater environments.
- Systematic quar-performance calculation model (SQPCM) integrating coverage, connectivity, durability, and rapid-reactivity.
Main Results:
- Developed measurement models linking systematic performance to influencing parameters.
- Classified influencing parameters into constraint, device performance, and networking types.
- Presented a networking parameters adjustment method (NPAM) for optimized UWSN performance.
Conclusions:
- The proposed methods and models are feasible and efficient for UWSN networking and performance calculation.
- The study provides a comprehensive approach to enhancing UWSN systematic performance.
