Difference between revisions of "Member:Luwei Fu"

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[https:///scholar.google.com/citations?hl=zh-CN&user=wiHkSO8AAAAJ My GoogleScholar]
[https:///scholar.google.com/citations?hl=zh-CN&user=wiHkSO8AAAAJ My GoogleScholar]


==== Publications:====
==== Publications:====
1. '''Luwei Fu''', Zhiwei Zhao*, Geyong Min, Wang Miao, Liang Zhao, and Wenjie Huang, Energy-Efficient 3D Data Collection for Multi-UAV Assisted Mobile Crowdsensing, IEEE Transactions on Computers, 2023. ('''CCF-A''')
一作/通讯作者
 
1. Energy-Efficient 3D Data Collection for Multi-UAV Assisted Mobile Crowdsensing [J]. IEEE Transactions on Computers, 2023. ('''CCF-A''')
 
2. Towards Accurate and Low-cost Path Reconstruction for Dynamic UAV Networks [J]. IEEE Transactions on Intelligent Transportation Systems. ('''中科院1区SCI''')


2. '''Luwei Fu''', Zhiwei Zhao*, Zhuoliu Liu, Geyong Min, Towards Accurate and Low-cost Path Reconstruction for Dynamic UAV Networks, IEEE Transactions on Intelligent Transportation Systems. ('''中科院1区''')
3. A Novel Multimodal Collaborative Drone-Assisted VANET Networking Model [J]. IEEE Transactions on Wireless Communications, 2020. ('''中科院1区SCI''')


3. Na Lin, '''Luwei Fu*''', Liang Zhao, Geyong Min, Ahmed Al-Dubai,  and Haris Gacanin, A Novel Multimodal Collaborative Drone-Assisted VANET Networking Model, IEEE Transactions on Wireless Communications, 2020. ('''中科院1区''')
4. Adaptive Coding Enables Fast and Light-weight Path Recovery in Topology-dynamic FANETs [C]. IEEE International Conference on Computer and Communications 2023. ('''Best Presentation Award''')


4. '''Luwei Fu''', Zhuoliu Liu, Cong Cha, Adaptive Coding Enables Fast and Light-weight Path Recovery in Topology-dynamic FANETs, IEEE International Conference on Computer and Communications 2023. ('''Best Presentation Award''')
5. LooP: A Low-overhead Path Reconstruction for Large-scale IoTs [J]. IEEE Transactions on Network Science and Engineering. (Revision,'''中科院1区SCI''')


5. '''Luwei Fu''', Zhiwei Zhao*, Zhuoliu Liu, LooP: A Low-overhead Path Reconstruction for Large-scale IoTs, IEEE Transactions on Network Science and Engineering. (Revision,'''中科院1区''')
6. A High-Performance Self-Learning Antelopes Migration Algorithm (SAMA) for Global Optimization [C]. IEEE ISPA 2019, Xiamen, China, 16-18 December, 2019. (CCF-C)


6. Na Lin, '''Luwei Fu*''', Liang Zhao, Lu Liu, and Geyong Min,  A High-Performance Self-Learning Antelopes Migration Algorithm (SAMA) for Global Optimization, IEEE ISPA 2019, Xiamen, China, 16-18 December, 2019. (CCF-C)
7. A Novel Nomad Migration-inspired Algorithm for Global Optimization [C]. Computers and Electrical Engineering, 2022. (SCI期刊)


7. Na Lin, '''Luwei Fu''', Liang Zhao*, Ammar Hawbani, Zhiyuan Tan, Ahmed Al-Dubai, and Geyong Min, A Novel Nomad Migration-inspired Algorithm for Gobal Optimization." Computers and Electrical Engineering, 2022.  
8. Lightweight Path Recovery in IPv6 Internet-of-Things Systems [J]. MDPI Electronics, 2022 11(8): 1220.(SCI期刊)


8. Zhuoliu Liu,'''Luwei Fu*''',Maojun Pan, Zhiwei Zhao, Lightweight Path Recovery in IPv6 Internet-of-Things Systems, MDPI Electronics, 2022 11(8): 1220.
合著:


9. Liang Zhao*, Areeb Saldin, Jia Hu, '''Luwei Fu''', Junling Shi, and Yunchong Guan, A Novel Simulated Annealing based Routing Algorithm in F-SDNs, IEEE INFOCOM 2020 WKSHPS, Toronto, Canada, 6-9 July, 2020.  
9.A Novel Simulated Annealing based Routing Algorithm in F-SDNs, IEEE INFOCOM 2020 WKSHPS, Toronto, Canada, 6-9 July, 2020.  


10. Qingyong Chen, Zhe Wang*, Yu Su,'''Luwei Fu''', and Yuanlun Wei, Educational 5G Edge Computing: Framework and Experimental Study. MDPI Electronics, 2022 11(17): 2727.
10. Educational 5G Edge Computing: Framework and Experimental Study. MDPI Electronics, 2022 11(17): 2727.


11. Wenjie Huang, Zhiwei Zhao*, Zi Wang, Geyong Min, Zheng Chang, '''Luwei Fu''', and Hancong Duan, Adaptive Mobile Recharge Scheduling with Rapid Data Sharing in Wireless Rechargeable Networks. IEEE Transactions on Mobile Computing, 2023.
11. Adaptive Mobile Recharge Scheduling with Rapid Data Sharing in Wireless Rechargeable Networks. IEEE Transactions on Mobile Computing, 2023.


==== Patents:====
==== Patents:====

Revision as of 22:15, 30 May 2024

Luwei Fu is pursuing the Ph.D. degree in the School of Computer Science and Engineering at University of Electronic Science and Technology of China (UESTC). His research interests mainly include Mobile Edge Computing, Future Internet, and Evolutionary Computation.

My GoogleScholar


Publications:

一作/通讯作者

1. Energy-Efficient 3D Data Collection for Multi-UAV Assisted Mobile Crowdsensing [J]. IEEE Transactions on Computers, 2023. (CCF-A)

2. Towards Accurate and Low-cost Path Reconstruction for Dynamic UAV Networks [J]. IEEE Transactions on Intelligent Transportation Systems. (中科院1区SCI)

3. A Novel Multimodal Collaborative Drone-Assisted VANET Networking Model [J]. IEEE Transactions on Wireless Communications, 2020. (中科院1区SCI)

4. Adaptive Coding Enables Fast and Light-weight Path Recovery in Topology-dynamic FANETs [C]. IEEE International Conference on Computer and Communications 2023. (Best Presentation Award)

5. LooP: A Low-overhead Path Reconstruction for Large-scale IoTs [J]. IEEE Transactions on Network Science and Engineering. (Revision,中科院1区SCI)

6. A High-Performance Self-Learning Antelopes Migration Algorithm (SAMA) for Global Optimization [C]. IEEE ISPA 2019, Xiamen, China, 16-18 December, 2019. (CCF-C)

7. A Novel Nomad Migration-inspired Algorithm for Global Optimization [C]. Computers and Electrical Engineering, 2022. (SCI期刊)

8. Lightweight Path Recovery in IPv6 Internet-of-Things Systems [J]. MDPI Electronics, 2022 11(8): 1220.(SCI期刊)

合著:

9.A Novel Simulated Annealing based Routing Algorithm in F-SDNs, IEEE INFOCOM 2020 WKSHPS, Toronto, Canada, 6-9 July, 2020.

10. Educational 5G Edge Computing: Framework and Experimental Study. MDPI Electronics, 2022 11(17): 2727.

11. Adaptive Mobile Recharge Scheduling with Rapid Data Sharing in Wireless Rechargeable Networks. IEEE Transactions on Mobile Computing, 2023.

Patents:

1. 中国发明专利 [CN115883685A]

2. 中国发明专利 [CN114745318A]

3. 中国发明专利 [CN113741530A]

4. 中国发明专利 [CN110650039A]

5. 中国发明专利 [CN110009108A]

6. 中国发明专利 [CN109800850A]