Skip to main content

Role of IoT in Industry 4.0

  • Conference paper
  • First Online:
Advances in Energy Technology

Abstract

Internet of things (IoT) has its application in various industries. IoT has gained popularity in industry-specific applications and also in miscellaneous applications. IoT has emerged as an ideal innovation in elevating the lifestyle standards. The demand of IoT integrated manufacturing industries has increased under Industry 4.0. In today’s era, when automation industry is at its peak, IoT is also emerging as an important tool in improving the time efficiency. In this paper, an attempt has been made to illustrate the different areas of applications of IoT. The role of IoT in manufacturing, transportation, digital factory, automotive industry, smart logistic service, smart manufacturing and Industry 4.0, Industrial IoT (IIoT) has been reviewed. The diversified fields where IoT has evolved and has elevated the features of their respective applications have been identified. Recent advancements, limitations and scope of IoT have also been discussed.

This is a preview of subscription content, log in via an institution to check access.

Access this chapter

Chapter
USD 29.95
Price excludes VAT (USA)
  • Available as PDF
  • Read on any device
  • Instant download
  • Own it forever
eBook
USD 229.00
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book
USD 299.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book
USD 299.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Purchases are for personal use only

Institutional subscriptions

References

  1. Kunii TL (1997) The 3‘d industrial revolution through integrated intelligent processing systems. In: IEEE international conference on intelligent processing systems. IEEE, pp 1–6

    Google Scholar 

  2. Peijiang C, Xuehua J (2008) Design and implementation of remote monitoring system based on GSM. In: IEEE Pacific-Asia workshop on computational intelligence and industrial application. IEEE

    Google Scholar 

  3. Shrouf F, Ordieres J, Miragliotta G (2014) Smart factories in Industry 4.0: a review of the concept and of energy management approached in production based on the Internet of Things Paradigm. IEEE

    Google Scholar 

  4. Pavitra D, Ranjith Balakrishnan (2015) IoT based monitoring and control system for home automation. 2015 Global Conference on Communication Technologies (GCCT), 169–173

    Google Scholar 

  5. Stăncioiu A (2017) The fourth industrial revolution Industry 4.0. Fiabilitate Şi Durabilitate 1:74–78

    Google Scholar 

  6. Zawra LM, Mansour HA, Eldin AT, Messiha NW (2017) Utilizing the Internet of Things (IoT) technologies in the implementation of Industry 4.0. In: Proceedings of the international conference on advanced intelligent systems and informatics 2017, pp 798–808

    Google Scholar 

  7. Anwar RW, Zainal A, Abdullah T, Iqbal S (2020) Security threats and challenges to IoT and its applications: a review. In: 2020 Fifth international conference on fog and mobile edge computing (FMEC), pp 301–305

    Google Scholar 

  8. Nižetić S, Šolić P, González-de DL, Patrono L (2020) Internet of Things (IoT): opportunities, issues and challenges towards a smart and sustainable future. J Clean Prod 1–77

    Google Scholar 

  9. Adebayo AO, Chaubey MS, Numbu LP (2019) Industry 4.0: the fourth industrial revolution and how it relates to the application of Internet of Things (IoT). J Multidiscip Eng Sci Stud (JMESS) 5:2477–2482

    Google Scholar 

  10. De Silva PCP, De Silva PCA (2016) Ipanera: an Industry 4.0 based architecture for distributed soil-less food production systems. In: Proceedings of the 1st manufacturing & industrial engineering symposium. IEEE

    Google Scholar 

  11. Sadiku MNO, Wang Y, Cui S, Musa SM (2017) Industrial Internet of Things. Int J Adv Sci Res Eng (IJASRE) 3:1–5

    Google Scholar 

  12. Vaidya S, Ambad P, Bhosle S (2018) Industry 4.0—a glimpse. Procedia Manuf 20:233–238

    Google Scholar 

  13. Rholam O, Tabaa M, Monterio F (2019) Smart device for multi-band industrial IoT communications. Procedia Comput Sci

    Google Scholar 

  14. Singh HP, Mahajan A, Sukavanam N, Budhraja V, Singh S, Kumar A, Vashisht A (2014) Control of an autonomous industrial fire fighting mobile robot. DU J Undergrad Res Innov 124–130

    Google Scholar 

  15. Kerin M, Pham DT (2019) A review of emerging industry 4.0 technologies in remanufacturing. J Clean Prod

    Google Scholar 

  16. Tang TJ, Chung A, Zhao A, Kang R, Zhang M, Chien K, Yang J, Zhang J (2016) An loT inspired semiconductor reliability test system integrated with data-mining applications. In: International conference on cloud computing and Internet of Things (CCIOT). IEEE, pp 111–114

    Google Scholar 

  17. Thames L, Schaefer D (2016) Software defined cloud manufacturing for Industry 4.0. Procedia CIRP 12–17

    Google Scholar 

  18. Kim JH (2017) A review of cyber-physical system research relevant to the emerging IT trends: Industry 4.0, IoT, big data, and cloud computing. J Ind Integr Manage 2(3):1–22

    Google Scholar 

  19. Aazam M, Zeadally S, Harras KA (2018) Deploying Fog computing in industrial Internet of Things and Industry 4. In: IEEE Trans Ind Inform 1–9

    Google Scholar 

  20. Cheng J, Xu LD, Chen W, Tao F, Lin C-L (2018) Industrial IoT in 5G environment towards smart manufacturing. J Ind Inf Integr

    Google Scholar 

  21. Thoben KD, Wiesner S, Wuest T (2017) Industrie 4.0 and smart manufacturing—a review of research issues and application examples. Int J Autom Technol 11(1):4–16

    Google Scholar 

  22. Trappey AJC, Trappey CV, Fan C-Y, Hsu APT, Li XK, Le IJY (2017) IoT patent roadmap for smart logistic service provision in the context of Industry 4.0. J Chin Inst Eng 1–10

    Google Scholar 

  23. Salazar GDC, Venegas C, Baca M, Rodriguez I, Marrone L (2018) Open middleware proposal for IoT focused on Industry 4.0. IEEE

    Google Scholar 

  24. Nayyar A, Batth RS, Nagpal A (2018) Internet of robotic things: driving intelligent robotics of future-concept, architecture, applications and technologies. In: International conference on computing sciences. IEEE, pp 151–160

    Google Scholar 

  25. Shanmuga Sundaram P, Raj Pradeesh T, Aravind Raj S, Jaya Krishna K (2016) A case study on investigation of fire accident analysis in cotton mills. 14th International Conference on Humanizing Work and Work Environment HWWE-2016 At: NIT Jalandhar

    Google Scholar 

  26. Rajwade KC, Gawali DH (2016) Wearable sensors based pilgrim tracking and health monitoring system. 2016 International Conference on Computing Communication Control and automation (ICCUBEA), 1–5

    Google Scholar 

  27. Badre V, Agarwal P, Chavan S, Kabra P (2017) Smart fire fighting robot. Int J Sci Res Comput Sci Eng Inf Technol 2:96–100

    Google Scholar 

  28. Sarkar K, Mukherjee M, Saha A, Saha P, Paul A, Sarkar S (2018) A review on heart beat sensor using Arduino Atmega 328. Int J Recent Innov Microelectron Microcontroll Appl 1(1):1–10

    Google Scholar 

  29. Vishaal R, Raghavan P, Rajesh R, Michael S, Elara MR (2018) Design of dual purpose cleaning robot. Procedia Comput Sci 133:518–525. In: International conference on robotics and smart manufacturing (RoSMa2018)

    Google Scholar 

  30. Joge PD, Nagtode SA (2018) Home assist robot by using e-Yantra and IOT. IJSRSET: Eng Technol 4(7):19–22

    Google Scholar 

  31. Nedumaran AM, Silvakumaran K, Tan N, Pathmakumar T, Mohan RE, Suganya SK (2018) Towards robot-aided visual sampling of floor dust in indoor settings. In: 3rd international conference on advanced robotics and mechatronics (ICARM), pp 805–811

    Google Scholar 

  32. Shukla P, Shimi SL (2014) Design of inspection and cleaning robot. Int J Sci Res Eng Technol (IJSRET) 3:970–975

    Google Scholar 

  33. Gonzalez R, Chandler S, Apostolopoulos D (2019) Characterization of machine learning algorithms for slippage estimation in planetary exploration rovers. J Terrramech 82:23–34

    Article  Google Scholar 

  34. Harwayne-Gidansky J, Sudano M (2007) A low-complexity navigation algorithm for a scalable autonomous fire fighting vehicle. In: The 5th student conference on research and development. IEEE

    Google Scholar 

  35. Vaussard F, Fink J, Bauwens V, Retornaz P, Hamel D, Dillenbourg P, Mondada F (2014) Lessons learnt from robotic vacuum cleaners entering home ecosystem. Robot Auton Syst 62:376–391

    Article  Google Scholar 

  36. Rathod PD, Wandile PV, Mohitkar KS, Jiwtode PG (2018) Multipurpose smart floor cleaning system by using android device. Int J Sci Res Sci Eng Technol Eng Technol (IJSRSET) 4:12–18

    Google Scholar 

  37. Ilyas M, Yuyao S, Mohan RE, Devarassu M, Kalimuthu M (2018) Design of sTetro: a modular, reconfigurable, and autonomous staircase cleaning robot. J Sens 1–16. Hindawi

    Google Scholar 

  38. Patil N, Iyer B (2017) Health monitoring and tracking system for soldiers using Internet of Things (IoT). In: International conference on computing, communication and automation (ICCCA2017), pp 1347–1352

    Google Scholar 

  39. Sunitha R, Prathyusha K (2014) Microcontroller based heartbeat, blood pressure, and body temperature monitoring and alerting system using GSM modem. IOSR J Electron Commun Eng 9(6):100–104

    Article  Google Scholar 

  40. Karthi A, Rajendran R, Mathiarasan P (2017) Smart health surveillance with automated database using android mobile device. Braz Arch Biol Technol 60:1–14

    Article  Google Scholar 

  41. Pawar RR, Deosarkar SB (2017) Health condition monitoring system for distribution transformer using Internet of Things (IoT). In: Proceedings of the IEEE 2017 international conference on computing methodologies and communication (ICCMC). IEEE, pp 117–122

    Google Scholar 

  42. Zouka HA (2017) An authentication scheme for wireless healthcare monitoring sensor network. IEEE, pp 68–73

    Google Scholar 

  43. Kadam DD, Patil SC, Bormane DS (2017) Wireless healthcare monitoring system. Techno-Societal 135–145. Springer International Publishing AG

    Google Scholar 

  44. Fan C, Liu X, Ling R, Si B (2018) Application of proteus in experimental teaching and research of medical electronic circuit. Adv Soc Sci Educ Human Res 215:512–515. In: 3rd International conference on modern management, education, technology, and social science (MMETSS 2018)

    Google Scholar 

  45. Suganthi Evangeline C, Lenin A (2019) Human health monitoring using wearable sensor. Sensor Rev. Emerland Publishing Limited

    Google Scholar 

  46. Ong RJ, Ku Azir KNF (2020) Low cost autonomous robot cleaner using mapping algorithm based on Internet of Things (IoT). IOP Conf Ser: Mater Sci Eng 767:1–10. In: 1st International symposium on engineering and technology (ISETech)

    Google Scholar 

  47. Dey A, Pal A, Nandi S, Roy L (2015) Three way controlled android Smartphone based robotic vehicle via Bluetooth. Int J Appl Sci Eng Manage

    Google Scholar 

  48. Singh R, Kuchhal P, Choudhury S, Gehlot A (2015) Implementation and evaluation of heating system using PID with genetic algorithm. Indian J Sci Technol 8:413–418

    Article  Google Scholar 

  49. Pol RS, Murugan M (2015) A review on indoor human aware autonomous mobile robot navigation through a dynamic environment. Survey of different path planning algorithm and methods. In: International conference on industrial instrumentation and control (ICIC). IEEE, pp 1339–1344

    Google Scholar 

  50. Rashid H, Ahmed IU, Ullah A, Newaz F, Robin MSR, Taslim Reza SM (2016) Multiple sensors based fire extinguisher robot based on DTMF, Bluetooth and GSM technology with multiple mode of operation. In: International workshop on computational intelligence (IWCI). IEEE, pp 41–46

    Google Scholar 

  51. Sivasankari P, Anbarasan M, Moses M (2016) Arduino based human health care monitoring and control system. IOSR J Electr Electron Eng 11(3):9–18

    Google Scholar 

  52. Vippalapalli V, Ananthula S (2016) Internet of things (IoT) based smart health care system. In: International conference on signal processing, communication, power and embedded system (SCOPES)—2016. IEEE, pp 1229–1233

    Google Scholar 

  53. Suresh J (2017) Fire-fighting robot. In: International conference on computational intelligence in data science (ICCIDS). IEEE

    Google Scholar 

  54. Kanade AV, Selvakumar A, Jalamkar D, Sengodan P, Jbara YHF (2017) Development of IoT controlled agri-rover for automatic seeding. Int J Pure Appl Math 114(11):241–251

    Google Scholar 

  55. Anantha Raj P, Srivani M (2018) Internet of robotic things based autonomous fire fighting mobile robot. In: IEEE international conference on computational intelligence and computing research. IEEE

    Google Scholar 

  56. Memon AW, Du J, Abro AH, Shah SI, Bhutto MA (2018) Design and implementation of fire extinguisher robot with robotic arm. In: MATEC web of conferences. EECR, pp 1–5

    Google Scholar 

  57. Mittal S, Rana MK, Bhardwaj M, Mataray M, Mittal S (2018) Cease fire: the fire fighting robot. In: International conference on advances in computing, communication, control and networking (ICACCCN2018). IEEE, pp 1143–1146

    Google Scholar 

  58. Gondalia A, Dixit D, Parashar S, Raghava V, Sengupta A (2018) IoT-based healthcare monitoring system for war soldiers using machine learning. Procedia Comput Sci 133:1005–1013. In: International conference on robotics and smart manufacturing (RoSMa2018)

    Google Scholar 

  59. Bhingare KM, Ransing VS, Palve AB, Misal HM (2018) Vacuum cleaner using microcontroller. Open Access Int J Sci Eng (OAIJSE) 3:15–17

    Google Scholar 

  60. Garud MJ, Shinde VR, Dudkekar VS, Thorat SS, Aldar KM (2018) A review wireless floor cleaning robot. Int J Sci Res Comput Sci Eng Inf Technol 3:648–652

    Google Scholar 

  61. Mir-Nasiri N, Hudyjaya Siswoyo J, Hazrat Alia M (2018) Portable autonomous window cleaning robot. Procedia Computer Science 133:197–204. In: International conference on robotics and smart manufacturing (RoSMa2018)

    Google Scholar 

  62. Jothi Sreeram Dutt AN, Rahul A, Sarkar A, Rani N, Dilna U (2019) Autonomous lavatory cleaning robot. Int J Sci Res Rev 7:2053–2057

    Google Scholar 

  63. Mohalkar S, Arote M, Khoje T, Pansare P (2019) An automated fire fighter robot. IJARIIE 5:1626–1633

    Google Scholar 

  64. Archana BT, Suma K (2019) Design and fabrication of an autonomous fire fighting robot with obstacle detection and fire detection using Arduino. Int Res J Eng Technol (IRJET) 6:331–333

    Google Scholar 

  65. Ali MM, Haxha S, Alam MM, Nwibor C, Sakel M (2019) Design of Internet of Things (IoT) and android based low-cost health monitoring, embedded system wearable sensor for measuring SpO2, heart rate, and body temperature simultaneously. In: Wireless personal communications. Springer, pp 1–15

    Google Scholar 

  66. Sarathkumar B, Periyaazhagar D, Sivasakthi S (2019) Live health care monitoring system using Arduino. Int Res J Eng Technol (IRJET) 2:688–694

    Google Scholar 

  67. Abdullahi U, Oladimeji SA, Audu WM, Saidu M, Wayo M (2019) Implementation of remote patient monitoring system using GSM/GPS technology. In: 3rd international engineering conference (IEC 2019), pp 521–527

    Google Scholar 

  68. Parmar HS, Meena A, Bhovaniya J, Priyadarshi M (2019) Automatic smart mop for floor cleaning. Int R J Eng Technol (IRJET) 6(4):3159–3165

    Google Scholar 

  69. Das NR, Daga R, Avte S, Mhatre K (2019) Robotic automated floor cleaner. Int Res J Eng Technol (IRJET) 6(3):4715–4721

    Google Scholar 

  70. Indra WA, Yang CJ (2019) Development of multi-controlled floor vacuum cleaner using RF energy harvesting. ARPN J Eng Appl Sci 14(21):3738–3742

    Google Scholar 

  71. Hassan AH, Awad A-FY, El-Amin AH, Hameed RA (2015) Smart home: home monitoring & control system using simple mobile app. Sudan University of Science and Technology, College of Engineering, School of Electronics Engineering, pp 1–75

    Google Scholar 

  72. Shaikh S, Chitre V (2017) Healthcare monitoring system using IoT. In: International conference on trends in electronics and informatics, pp 374–377

    Google Scholar 

  73. Garbhapu VV, Gopalan S (2017) IoT based low cost single sensor node remote health monitoring system. Procedia Comput Sci 113:408–415. In: The 7th international conference on current and future trends of information and communication technologies in healthcare (ICTH 2017)

    Google Scholar 

  74. Pardeshi V, Sagar S, Murmurwar S, Hage P (2017) Health monitoring systems using IoT and Raspberry Pi—a review. In: International conference on innovative mechanisms for industry applications, pp 134–137

    Google Scholar 

  75. Soppimath VM, Google A, Kolachal S, Kalal P, Baligar D (2018) Human health monitoring system using IoT and cloud technology—review. Int J Adv Sci Eng 5(2):924–930

    Google Scholar 

  76. Kamble A, Bhutad S (2018) IoT based patient health monitoring system with nested cloud security. In: 4th International conference on computing, communication and automation (ICCCA), pp 1–5

    Google Scholar 

  77. Kavitha R, Niranjana C (2018) Smart health care monitoring system. Int J Innov Technol Explor Eng (IJITEE) 8(2):413–416

    Google Scholar 

  78. Jansi R, Amutha R (2018) A novel chaotic map based compressive classification scheme for human activity recognition using a tri-axial accelerometer. Multim Tools Appl 77(23):31261–31280

    Article  Google Scholar 

  79. Gayathri C, Venkatanarayanan S, Karpaga Priya R, Kannan M (2018) Internet of Things based health monitoring system using microelectromechanical systems sensor. Asian J Appl Res 4(10):44–55

    Google Scholar 

  80. Al-Kuwari M, Ramadan A, Ismael Y, Al-Sughair L, Gastli A, Benammar M (2018) Smart-home automation using IoT-based sensing and monitoring platform, pp 1–6

    Google Scholar 

  81. Khan A, Aesha AA, Aka JS, Faisal Rahman SM, Jamil-Ur Rahman M (2018) An IoT based intelligent fire evacuation system. In: 21st International conference of computer and information technology (ICCIT), pp 21–23

    Google Scholar 

  82. Bakar MAFBA, Nasir LABA, Ali NAB, Chek WAKBW (2018) Cloud controlled watering system using Blynk application. Electr Eng Innov Compet Exhib 2018 (EEICE 2018) 1:7–8

    Google Scholar 

  83. Jayaraman G, Muthukumaran N, Vanaja A, Santhamariammal R (2019) Design and analysis the fire fighting robot. Int J Emerg Technol Innov Eng 5:690–695

    Google Scholar 

  84. Deepika NS, Singh M (2006) Designing a microcontroller based temperature data logger. In: Department of electrical and instrumentation engineering Thapar Institute of Engineering & Technology, pp 1–76

    Google Scholar 

  85. Kadam DD, Patil SC, Bormane DS (2017) Wireless healthcare monitoring system. In: Techno-Societal. Springer International Publishing AG, pp 135–145

    Google Scholar 

  86. Kodali RK, Swamy G, Lakshmi B (2015) An implementation of IoT for health care. In: IEEE recent advances in intelligent computational systems (RAICS), pp 411–416

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Editor information

Editors and Affiliations

Rights and permissions

Reprints and permissions

Copyright information

© 2022 The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.

About this paper

Check for updates. Verify currency and authenticity via CrossMark

Cite this paper

Sharma, A., Burman, V., Aggarwal, S. (2022). Role of IoT in Industry 4.0. In: Bansal, R.C., Agarwal, A., Jadoun, V.K. (eds) Advances in Energy Technology. Lecture Notes in Electrical Engineering, vol 766. Springer, Singapore. https://doi.org/10.1007/978-981-16-1476-7_47

Download citation

  • DOI: https://doi.org/10.1007/978-981-16-1476-7_47

  • Published:

  • Publisher Name: Springer, Singapore

  • Print ISBN: 978-981-16-1475-0

  • Online ISBN: 978-981-16-1476-7

  • eBook Packages: EngineeringEngineering (R0)

Publish with us

Policies and ethics