Application of IoT-Fog based real-time monitoring system for open-cast mines-A survey

被引:4
作者
Yadav, Devendra Kumar [1 ]
Mishra, Pragyan [2 ]
Jayanthu, Singam [1 ]
Das, Santos Kumar [3 ]
Sharma, Sanjay Kumar [4 ]
机构
[1] NIT, Dept Min Engn, Rourkela, Odisha, India
[2] Accenture, Hyderabad, India
[3] NIT, Dept Elect & Commun Engn, Rourkela, Odisha, India
[4] IIT BHU, Dept Min Engn, Varanasi, Uttar Pradesh, India
关键词
DATA AGGREGATION SCHEME; RESOURCE-ALLOCATION; DATA ANALYTICS; COMPUTING PARADIGM; TASK ALLOCATION; CLOUD; ENERGY; INTERNET; THINGS; MODEL;
D O I
10.1049/wss2.12011
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
Fog computing (FC) archetypes is in focus recently for its potential to utilise resources optimally by the Internet of Things (IoT) network bearing ample end-devices. This enhances the quality of service (QoS) to the proximity of end-users as latency-free processing is obtained in cloud-IoT-based environs. Mining industry will encounter a level-up due to these technological advancements like fog-IoT-based systems. Monitoring mining activities such as blasting, slope monitoring, and miner tracking are time-sensitive. Hence, instant response is demand of extreme mine environment so that life and property are not compromised. New opportunities emerge in mining since the FC approach addresses these demands depending on the demand of the situation/user. The parameters of integrating the state-of-art of fog, IoT, and cloud architectures are provided, and a Fog-IoT mines monitoring (FIoTMM) system for real-time monitoring of open-cast mines is proposed. This work also envisions the applications and future trends of FC concerning IoT and cloud. It emphasises how key features of fog help the system in achieving lower network influx, reduced latency, resource utilisation, and immediate data computation and storage because these services take place closer to point of data generation. This data can be immediately visualised/accessed and used to generate early warning in the mines.
引用
收藏
页码:1 / 21
页数:21
相关论文
共 50 条
[41]   Integration with 3D Visualization and IoT-Based Sensors for Real-Time Structural Health Monitoring [J].
Chang, Hung-Fu ;
Shokrolah Shirazi, Mohammad .
SENSORS, 2021, 21 (21)
[42]   An IoT and Smartphone-Based Real-Time Analysis on Pulse Rate and Spo2 using Fog-to-cloud Architecture [J].
Mukhopadhyay, Adwitiya ;
Nishin, S. .
2021 INTERNATIONAL CONFERENCE ON COMPUTER COMMUNICATION AND INFORMATICS (ICCCI), 2021,
[43]   An improved real-time water quality monitoring embedded system with IoT on unmanned surface vehicle [J].
Vasudevan, Shriram K. ;
Baskaran, Balraj .
ECOLOGICAL INFORMATICS, 2021, 65
[44]   AI-enhanced Healthcare IoT System: Advanced ML Detection and Classification Algorithms for Real-Time Cardiovascular Monitoring [J].
Christodoulou, Lakis ;
Chari, Andreas ;
Georgiades, Michael .
2024 20TH INTERNATIONAL CONFERENCE ON DISTRIBUTED COMPUTING IN SMART SYSTEMS AND THE INTERNET OF THINGS, DCOSS-IOT 2024, 2024, :440-449
[45]   Indoor location identification technologies for real-time IoT-based applications: An inclusive survey [J].
Oguntala, George ;
Abd-Alhameed, Raed ;
Jones, Stephen ;
Noras, James ;
Patwary, Mohammad ;
Rodriguez, Jonathan .
COMPUTER SCIENCE REVIEW, 2018, 30 :55-79
[46]   An Open-Source IoT Power Outlet System for Scheduling Appliance Operation Intervals Based on Real-Time Electricity Cost [J].
Blanco-Novoa, Oscar ;
Fernandez-Carames, Tiago M. ;
Fraga-Lamas, Paula ;
Castedo, Luis .
2017 IEEE INTERNATIONAL CONFERENCE ON INTERNET OF THINGS (ITHINGS) AND IEEE GREEN COMPUTING AND COMMUNICATIONS (GREENCOM) AND IEEE CYBER, PHYSICAL AND SOCIAL COMPUTING (CPSCOM) AND IEEE SMART DATA (SMARTDATA), 2017, :917-924
[47]   AWS IoT Core and Amazon DeepAR based predictive real-time monitoring framework for industrial induction heating systems [J].
Chakrabarti, Arijit ;
Sadhu, Pradip Kumar ;
Pal, Palash .
MICROSYSTEM TECHNOLOGIES-MICRO-AND NANOSYSTEMS-INFORMATION STORAGE AND PROCESSING SYSTEMS, 2023, 29 (04) :441-456
[48]   Lightweight Photoplethysmography Quality Assessment for Real-time IoT-based Health Monitoring using Unsupervised Anomaly Detection [J].
Mahmoudzadeh, Aysan ;
Azimi, Iman ;
Rahmani, Amir M. ;
Liljeberg, Pasi .
12TH INTERNATIONAL CONFERENCE ON AMBIENT SYSTEMS, NETWORKS AND TECHNOLOGIES (ANT) / THE 4TH INTERNATIONAL CONFERENCE ON EMERGING DATA AND INDUSTRY 4.0 (EDI40) / AFFILIATED WORKSHOPS, 2021, 184 :140-147
[49]   Novel implementation of IoT based non-invasive sensor system for real-time monitoring of intravenous fluid level for assistive e-healthcare [J].
Ray, Partha Pratim ;
Thapa, Nishant ;
Dash, Dinesh ;
De, Debashis .
CIRCUIT WORLD, 2019, 45 (03) :109-123
[50]   IoT-based Situation Awareness Support System for Real-Time Emergency Management [J].
Krytska, Yana ;
Skarga-Bandurova, Inna ;
Velykzhanin, Artem .
PROCEEDINGS OF THE 2017 9TH IEEE INTERNATIONAL CONFERENCE ON INTELLIGENT DATA ACQUISITION AND ADVANCED COMPUTING SYSTEMS: TECHNOLOGY AND APPLICATIONS (IDAACS), VOL 2, 2017, :955-960