Multi-UAV computing enabling efficient clustering-based IoT for energy reduction and data transmission

被引:14
作者
Komala, C. R. [1 ]
Velmurugan, V. [2 ]
Maheswari, K. [3 ]
Deena, S. [4 ]
Kavitha, M. [5 ]
Rajaram, A. [6 ]
机构
[1] HKBK Coll Engn, Dept Informat Sci & Engn, Bangalore, Karnataka, India
[2] Vel Tech Rangarajan Dr Sagunthala R&D Inst Sci &, Dept Elect & Commun Engn, Chennai, Tamil Nadu, India
[3] CMR Tech Campus Kandlakoya, Dept CSE, Hyderabad, India
[4] Amrita Vishwa Vidyapeetham, Sch Comp, Dept Comp Sci Engn, Chennai, Tamil Nadu, India
[5] Sathyabama Inst Sci & Technol, Dept Elect & Elect Engn, Chennai, Tamil Nadu, India
[6] EGS Pillay Engn Coll, Dept Elect & Commun Engn, Nagapattinam, India
关键词
UAV computing; Internet of Things; clustering; energy reduction; task offloading; and UAV path planning; RESOURCE-ALLOCATION;
D O I
10.3233/JIFS-231242
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Internet of Things (IoT) technologies increasingly integrate unmanned aerial vehicles (UAVs). IoT devices that are becoming more networked produce massive data. The process and memory of this enormous volume of data at local nodes, particularly when utilizing artificial intelligence (AI) algorithms to collect and utilize useful information, have been declared vital issues. In this paper, we introduce UAV computing to solve greater energy consumption, delay difficulties using task offload and clustered approaches, and make cloud computing operations accessible to IoT devices. First, we present a clustering technique to group IoT devices for data transmission. After that, we apply the Q-learning approach to accomplish task offloading and allocate the difficult tasks to UAVs that are not yet fully loaded. The sensor readings from the CHs are then collected using UAV path planning. Furthermore, We use a convolutional neural network (CNN) to achieve UAV route planning. In terms of coverage ratio, clustering efficiency, UAV motion, energy consumption, and the number of collected packets, the effectiveness of the current study is finally compared with the existing techniques using UAVs. The results showed that the suggested strategy outperformed the current approaches in terms of coverage ratio, clustering efficiency, UAV motion, energy consumption, and the number of collected packets. Additionally, the proposed technique consumed less energy due to CNN-based route planning and dynamic positioning, which reduced UAV transmits power. Overall, the study concluded that the suggested approach is effective for improving energy-efficient and responsive data transmission in crises.
引用
收藏
页码:1717 / 1730
页数:14
相关论文
共 50 条
[21]   QoS-Aware Energy-Efficient Multi-UAV Offloading Ratio and Trajectory Control Algorithm in Mobile-Edge Computing [J].
Yin, Jiajie ;
Tang, Zhiqing ;
Lou, Jiong ;
Guo, Jianxiong ;
Cai, Hui ;
Wu, Xiaoming ;
Wang, Tian ;
Jia, Weijia .
IEEE INTERNET OF THINGS JOURNAL, 2024, 11 (24) :40588-40602
[22]   Multi-Layer and Clustering-Based Security Implementation for an IoT Environment [J].
Gupta, Deena Nath ;
Kumar, Rajendra .
INTERNATIONAL JOURNAL OF SYSTEM DYNAMICS APPLICATIONS, 2022, 11 (02)
[23]   IEDA-HGEO: Improved Energy Efficient with Clustering-Based Data Aggregation and Transmission Protocol for Underwater Wireless Sensor Networks [J].
Joshi, Shubham ;
Anithaashri, T. P. ;
Rastogi, Ravi ;
Choudhary, Gaurav ;
Dragoni, Nicola .
ENERGIES, 2023, 16 (01)
[24]   Energy-Efficient Data Aggregation and Collection for Multi-UAV-Enabled IoT Networks [J].
Kang, Minhyuk ;
Jeon, Sang-Woon .
IEEE WIRELESS COMMUNICATIONS LETTERS, 2024, 13 (04) :1004-1008
[25]   AEDS-IoT: Adaptive clustering-based Event Detection Scheme for IoT data streams [J].
Raut, Ashwin ;
Shivhare, Anubhav ;
Chaurasiya, Vijay Kumar ;
Kumar, Manish .
INTERNET OF THINGS, 2023, 22
[26]   Prediction or Not? An Energy-Efficient Framework for Clustering-Based Data Collection in Wireless Sensor Networks [J].
Jiang, Hongbo ;
Jin, Shudong ;
Wang, Chonggang .
IEEE TRANSACTIONS ON PARALLEL AND DISTRIBUTED SYSTEMS, 2011, 22 (06) :1064-1071
[27]   Energy-Efficient UAV-Assisted IoT Data Collection via TSP-Based Solution Space Reduction [J].
Krishnan, Sivaram ;
Nemati, Mahyar ;
Loke, Seng W. ;
Park, Jihong ;
Choi, Jinho .
IEEE CONFERENCE ON GLOBAL COMMUNICATIONS, GLOBECOM, 2023, :6189-6194
[28]   Service Caching Based Aerial Cooperative Computing and Resource Allocation in Multi-UAV Enabled MEC Systems [J].
Zheng, Guangyuan ;
Xu, Chen ;
Wen, Miaowen ;
Zhao, Xiongwen .
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2022, 71 (10) :10934-10947
[29]   Joint trajectory, transmission time and power optimization for multi-UAV data collecting system [J].
Cai, Qing ;
Tang, Zheng ;
Liu, Chuan .
HELIYON, 2024, 10 (05)
[30]   Apache Flink and clustering-based framework for fast anonymization of IoT stream data [J].
Sadeghi-Nasab, Alireza ;
Ghaffarian, Hossein ;
Rahmani, Mohsen .
INTELLIGENT SYSTEMS WITH APPLICATIONS, 2023, 20