RUS  ENG
Полная версия
ЖУРНАЛЫ // Труды института системного программирования РАН

Труды ИСП РАН, 2021, том 33, выпуск 1, страницы 97–110 (Mi tisp575)

Последние тенденции в развитии подводной беспроводной сенсорной сети: систематический обзор литературы
А. Тарик, Ф. Азам, М. В. Анвар, Т. Захур, А. В. Музаффар

Список литературы

1. Muhammad Ayaz, Azween Abdullah, Ibrahima Faye, Yasir Batira, “An efficient Dynamic Addressing based routing protocol for Underwater Wireless Sensor Networks”, Computer Communications, 35:4 (2012), 475-486  crossref  scopus
2. Haitao Yu, Nianmin Yao, Jun Liu, “An adaptive routing protocol in underwater sparse acoustic sensor networks”, Ad Hoc Networks, 34 (2015), 121-143  crossref  scopus
3. Anjana P Das, Sabu M Thampi, “Fault-resilient localization for underwater sensor networks”, Ad Hoc Networks, 55 (2017), 132-142  crossref  scopus
4. Jun Liu, Zhong Zhou, Zheng Peng et al., “Mobi-Sync: Efficient Time Synchronization for Mobile Underwater Sensor Networks”, IEEE Transactions on Parallel and Distributed Systems, 24:2 (2013), 406-416  crossref  scopus
5. Rodolfo W. L. Coutinho, Azzedine Boukerche, Luiz F. M. Vieira, Antonio A. F. Loureiro, “A novel void node recovery paradigm for long-term underwater sensor networks”, Ad Hoc Networks, 34 (2015), 144-156  crossref  scopus
6. Youngtae Noh, Uichin Lee, Paul Wang et al., “VAPR: Void-Aware Pressure Routing for Underwater Sensor Networks”, IEEE Transactions on Mobile Computing, 2:5 (2013), 895-908
7. Rodolfo W. L. Coutinho, Azzedine Boukerche, Luiz F. M. Vieira, Antonio A. F. Loureiro, “GEDAR: Geographic and Opportunistic Routing Protocol with Depth Adjustment for Mobile Underwater Sensor Networks”, Proc. of the IEEE International Conference on Communications, ICC, 2014, 251-256
8. Youngtae Noh, Uichin Lee, Saewoom Lee et al., “HydroCast: Pressure Routing for Underwater Sensor Networks”, IEEE Transactions on Vehicular Technology, 65:1 (2016), 333-347  crossref  scopus
9. Manjula R. Bharamagoudra, SunilKumar S. Manvi, Bilal Gonen, “Event driven energy depth and channel aware routing for underwater acoustic sensor networks: Agent oriented clustering based approach”, Computers & Electrical Engineering, 58 (2017), 1-19  crossref  scopus
10. Hainan Chen, Xiaoling Wu, Guangcong Liu, Yanwen Wang, “A Novel Multi-Module Separated Linear UWSNs Sensor Node”, IEEE Sensors Journal, 16:11 (2016), 4119-4126  crossref  scopus
11. Mukhtar Ghaleb, Emad Felemban, Shamala Subramaniam et al., “A Performance Simulation Tool for the Analysis of Data Gathering in Both Terrestrial and Underwater Sensor Networks”, IEEE Access, 5 (2017), 4190-4208  crossref  scopus
12. Zhenghao Xi, Xiu Kan, Le Cao et al., “Research on Underwater Wireless Sensor Network and MAC Protocol and Location Algorithm”, IEEE Access, 7 (2019), 56606-56616  crossref  scopus
13. Inam Ullah, Yiming Liu, Xin Su, Pankoo Kim, “Efficient and Accurate Target Localization in Underwater Environment”, IEEE Access, 7 (2019), 101415-101426  crossref  scopus
14. Bingbing Zhang, Yiyin Wang, Hongyi Wang et al., “Tracking a Duty-Cycled Autonomous Underwater Vehicle by Underwater Wireless Sensor Networks”, IEEE Access, 5 (2017), 18016-18032  crossref  scopus
15. Inam Ullah, Jingyi Chen, Xin Su et al., “Localization and Detection of Targets in Underwater Wireless Sensor Using Distance and Angle Based Algorithms”, IEEE Access, 7 (2019), 45693-45704  crossref  scopus
16. Do Duy Tan, Tung Thanh Le, Dong-Seong Kim, “Distributed Cooperative Transmission for Underwater Acoustic Sensor Networks”, Proc. of the IEEE Wireless Communications and Networking Conference Workshops, WCNCW, 2013, 205-210
17. S. Mohamad Dehnavi, Moosa Ayati, Mohammad Reza Zakerzadeh, “Three Dimensional Target Tracking via Underwater Acoustic Wireless Sensor Network”, Proc. of the Conference on Artificial Intelligence and Robotics, IRANOPEN, 2017, 153-157
18. Jun Liu, Zhaohui Wang, Jun-Hong Cui et al., “A Joint Time Synchronization and Localization Design for Mobile Underwater Sensor Networks”, IEEE Transactions on Mobile Computing, 15:3 (2016), 530-543  crossref  scopus
19. Priyatosh Mandal, Swades De, “New Reservation Multiaccess Protocols for Underwater Wireless Ad Hoc Sensor Networks”, IEEE Journal of Oceanic Engineering, 40:2 (2015), 277-291  crossref  scopus
20. Zhangbing Zhou, Beibei Yao, Riliang Xing et al., “E-CARP: An Energy Efficient Routing Protocol for UWSNs in the Internet of Underwater Things”, IEEE Sensors Journal, 16:11 (2016), 4072-4082  crossref  scopus
21. Zhuo Wang, Guangjie Han, Hongde Qin et al., “An Energy-Aware and Void-Avoidable Routing Protocol for Underwater Sensor Networks”, IEEE Access, 6 (2018), 7792-7801  crossref  scopus
22. Yishan Su, Rong Fan, Xiaomei Fu, Zhigang Jin, “DQELR: An Adaptive Deep Q-Network-Based Energy- and Latency-Aware Routing Protocol Design for Underwater Acoustic Sensor Networks”, IEEE Access, 7 (2019), 9091-9104  crossref  scopus
23. Valerio Di Valerio, Francesco Lo Presti, Chiara Petrioli et al., “CARMA: Channel-Aware Reinforcement Learning-Based Multi-Path Adaptive Routing for Underwater Wireless Sensor Networks”, IEEE Journal on Selected Areas in Communications, 37:11 (2019), 2634-2647  crossref  scopus
24. Zahoor Ali Khan, Muhammad Awais, Turki Ali Alghamdi et al., “Region Aware Proactive Routing Approaches Exploiting Energy Efficient Paths for Void Hole Avoidance in Underwater WSNs”, IEEE Access, 7 (2019), 140703-140722  crossref  scopus
25. Faiza Al Salti, N. Alzeidi, Bassel R. Arafeh, “EMGGR: an energy-efficient multipath grid-based geographic routing protocol for underwater wireless sensor networks”, Wireless Networks, 23:4 (2017), 1301-1314  crossref  scopus
26. Kun Hao, Haifeng Shen, Yonglei Liu et al., “Integrating Localization and Energy-Awareness: A Novel Geographic Routing Protocol for Underwater Wireless Sensor Networks”, Wireless Networks, 23:5 (2018), 1427-1435
27. Sayyed Majid Mazinani, Hadi Yousefi, Mostafa Mirzaie, “A Vector-Based Routing Protocol in Underwater Wireless Sensor Networks”, Wireless Personal Communications, 100 (2018), 1569-1583  crossref  scopus
28. Abdul Wahid, Sungwon Lee, Dongkyun Kim, Kyung-Shik Lim, “MRP: A Localization-Free Multi-Layered Routing Protocol for Underwater Wireless Sensor Networks”, Wireless Personal Communications, 77 (2014), 2997-3012  crossref  scopus
29. Balaji Vijayan Venkateswarulu, Neduncheliyan Subbu, Sivakumar Ramamurthy, “An efficient routing protocol based on polar tracing function for underwater wireless sensor networks for mobility health monitoring system application”, Journal of Medical Systems, 43 (2019), 18  scopus
30. C Srimathi, Soo-Hyun Park, N Rajesh, “Proposed framework for underwater sensor cloud for environmental monitoring”, Proc. of the Fifth Conference on Ubiquitous and Future Networks, ICUFN, 2013, 104-109
31. Charbel Geryes Aoun, Iyas Alloush, Yvon Kermarrec et al., “A Mapping Approach for Marine Observatory Relying on Enterprise Architecture”, Proc. of the OCEANS - MTS/IEEE Washington, 2015, 1-10
32. Miaomiao Liu, Fei Ji, Quansheng Guan et al., “On-Surface Wireless-Assisted Opportunistic Routing for Underwater Sensor Networks”, Proc. of the 11th ACM International Conference on Underwater Networks & Systems, 2016, 1-5
33. Fatemeh Banaeizadeh, Abolfazl Toroghi Haghighat, “An energy-efficient data gathering scheme in underwater wireless sensor networks using a mobile sink”, International Journal of Information Technology, 12 (2020), 513-522  crossref  scopus
34. Muhammad Faheem, Rizwan Aslam Butt, Basit Raza et al., “FFRP: Dynamic Firefly Mating Optimization Inspired Energy Efficient Routing Protocol for Internet of Underwater Wireless Sensor Networks”, IEEE Access, 8 (2020), 39587-39604  crossref  scopus
35. Mukhtiar Ahmed, Mazleena Salleh, M. Ibrahim Channa, “Routing protocols based on node mobility for Underwater Wireless Sensor Network (UWSN): A survey”, Journal of Network and Computer Applications, 78 (2017), 242-252  crossref  scopus
36. Mukhtiar Ahmed, Mazleena Salleh, M. Ibrahim Channa, “Routing protocols based on protocol operations for underwater wireless sensor network: A survey”, Journal of Egyptian Informatics Journal, 19:1 (2018), 57-62  crossref  scopus
37. Mohammed Jouhari, Khalil Ibrahimi, Hamidou Tembine, Jalel Ben-Othman, “Underwater Wireless Sensor Networks: A Survey on Enabling Technologies, Localization Protocols, and Internet of Underwater Things”, IEEE Access, 7 (2019), 96879-96899  crossref  scopus
38. Rodolfo W. L. Coutinho, Azzedine Boukerche, “Data Collection in Underwater Wireless Sensor Networks: Research Challenges and Potential Approaches”, Proc. of the 20th ACM International Conference on Modelling, Analysis and Simulation of Wireless and Mobile Systems, 2017, 5-8
39. Thinakaran Vasantha Chithra, Arulappan Milton, “Energy Proficient Flooding Scheme Using Reduced Coverage Set Algorithm for Unreliable Links”, Programming and Computer Software, 44:6 (2018), 381-387  crossref  scopus
40. D. Sreenivasulu, P. V. Krishna, “Deep Learning Based Efficient Channel Allocation Algorithm for Next Generation Cellular Networks”, Programming and Computer Software, 44:6 (2018), 428-434  crossref  scopus
41. Mohammad Furqan Ali, Dushantha Nalin K. Jayakody, Yury A. Chursi et al., “Recent Advances and Future Directions on Underwater Wireless Communications”, Archives of Computational Methods in Engineering, 27 (2019), 1379-1412
42. Р. Массобрио, С. Несмачнов, А. Черных и др., “Применение облачных вычислений для анализа данных большого объема в умных городах”, Труды ИСП РАН, 28:6 (2016), 121-140  mathnet  crossref; R. Massobrio, S. Nesmachnow, A. Tchernykh et al., “Towards a Cloud Computing Paradigm for Big Data Analysis in Smart Cities”, Programming and Computer Software, 44:6 (2018), 181-189  crossref  scopus
43. В. П. Козырев, “Методы оценки времени выполнения в системах реального времени”, Программирование, 42:1 (2016), 39-50; V. P. Kozyrev, “Estimation of the execution time in real-time systems”, Programming and Computer Software, 42:1 (2016), 41-48  crossref  scopus
44. M. W. Anwar, M. Rashid, F Azam et al., “A model-driven framework for design and verification of embedded systems through SystemVerilog”, Design Automation for Embedded Systems, 23 (2019), 179-223  crossref  scopus
45. B. Kitchenham, Procedures for Performing Systematic Reviews, Joint Technical Report, Keele University, Empirical Software Engineering National ICT Australia Ltd., 2004, 33 pp.
46. М. Б. Кузнецов, “Трансформация UML-моделей и ее использование в технологии MDA”, Программирование, 33:1 (2007), 65-79; M. B. Kuznetsov, “UML model transformation and its application to MDA technology”, Programming and Computer Software, 33:1 (2007), 44-53  crossref  zmath  scopus
47. Muhammad Waseem Anwar, Farooque Azam, Muazzam A. Khan, Wasi Haider Butt, “The Applications of Model Driven Architecture (MDA) in Wireless Sensor Networks (WSN) – Techniques and Tools”, Lecture Notes in Networks and Systems, 69, 2019, 14-27
48. Konstantinos Skiadopoulos, Athanasios Tsipis, Konstantinos Giannakis et al., “Synchronization of data measurements in wireless sensor networks for IoT application”, Ad Hoc Networks, 89 (2019), 47-57  crossref  scopus
49. Sudeep Varshneya, Chiranjeev Kumara, Abhishek Swaroop, “Leach Based Hierarchical Routing Protocol for Monitoring of Overground Pipelines Using Linear Wireless Sensor Networks”, Proc. of the 6th International Conference on Smart Computing and Communications, 2017, 208-214


© МИАН, 2025