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2023 | OriginalPaper | Buchkapitel

A Survey on Energy Management Evolution and Techniques for Green IoT Environment

verfasst von : I. Shanmugapriya

Erschienen in: Proceedings of Fourth International Conference on Communication, Computing and Electronics Systems

Verlag: Springer Nature Singapore

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Abstract

The introduction of Internet of Things (IoT) has benefitted smart cities, healthcare, and transportation applications for enabling smart connections and analyzing the performance. As the number of IoT devices and potential connectivity increases, the distance between smart hubs, smartphone software complexity, and people behaviors changes rapidly resulting in a power utilization challenge. Energy efficiency and power dissipation are two of the most significant challenges in green IoT-enabled technologies. Based on a systematic literature review, this study presents the power management possibilities in the Internet of Things (IoT) domain. The main purpose of this study is to develop energy-efficient approaches for WSNs that enable IoT. The “Green IoT” concept aims to reduce the energy consumption of IoT devices while maintaining sustainability conditions. In this study, which is driven by establishing a viable IoT environment for the future phase and moving the globe toward the formation of Green IoT, a review of Green IoT (GIoT) is first provided, and then the challenges and potential possibilities for GIoT are studied.

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Literatur
1.
Zurück zum Zitat Wu J, Dong M, Ota K, Li J, Yang W, Wang M (2019) Fog-computing-enabled cognitive network function virtualization for an information-centric future Internet. IEEE Commun Mag 57(7):48–54 Wu J, Dong M, Ota K, Li J, Yang W, Wang M (2019) Fog-computing-enabled cognitive network function virtualization for an information-centric future Internet. IEEE Commun Mag 57(7):48–54
2.
Zurück zum Zitat Lin X, Li J, Wu J, Liang H, Yang W (2019) Making knowledge tradable in edge-AI enabled IoT: a consortium blockchain-based efficient and incentive approach. IEEE Trans Ind Inform 15(12):6367–6378 Lin X, Li J, Wu J, Liang H, Yang W (2019) Making knowledge tradable in edge-AI enabled IoT: a consortium blockchain-based efficient and incentive approach. IEEE Trans Ind Inform 15(12):6367–6378
3.
Zurück zum Zitat Zhou Z, Feng J, Gu B, Ai B, Mumtaz S, Rodriguez J, Guizani M (2018) When mobile crowd sensing meets UAV: energy-efficient task assignment and route planning. IEEE Trans Commun 66(11):5526–5538 Zhou Z, Feng J, Gu B, Ai B, Mumtaz S, Rodriguez J, Guizani M (2018) When mobile crowd sensing meets UAV: energy-efficient task assignment and route planning. IEEE Trans Commun 66(11):5526–5538
4.
Zurück zum Zitat Kagita MK, Thilakarathne N, Rajput D, Lanka DS (2020) A detail study of security and privacy issues of Internet of Things. arXiv preprint arXiv:2009.06341 Kagita MK, Thilakarathne N, Rajput D, Lanka DS (2020) A detail study of security and privacy issues of Internet of Things. arXiv preprint arXiv:​2009.​06341
5.
Zurück zum Zitat Al-Turjman F, Kamal A, Husain Rehmani M, Radwan A, Khan Pathan AS (2019) The green internet of things (G-IoT). Wirel Commun Mob Comput Al-Turjman F, Kamal A, Husain Rehmani M, Radwan A, Khan Pathan AS (2019) The green internet of things (G-IoT). Wirel Commun Mob Comput
6.
Zurück zum Zitat Prasad SS, Kumar C (2013) A green and reliable internet of things. Commun Netw 5(1):44–48 Prasad SS, Kumar C (2013) A green and reliable internet of things. Commun Netw 5(1):44–48
7.
Zurück zum Zitat Huang J, Meng Y, Gong X, Liu Y, Duan Q (2014) A novel deployment scheme for green internet of things. IEEE Internet Things J 1(2):196–205 Huang J, Meng Y, Gong X, Liu Y, Duan Q (2014) A novel deployment scheme for green internet of things. IEEE Internet Things J 1(2):196–205
8.
Zurück zum Zitat Shaikh FK, Zeadally S, Exposito E (2015) Enabling technologies for green internet of things. IEEE Systems J 11(2):983–994 Shaikh FK, Zeadally S, Exposito E (2015) Enabling technologies for green internet of things. IEEE Systems J 11(2):983–994
10.
Zurück zum Zitat Varjovi AE, Babaie S (2020) Green Internet of Things (GIoT): vision, applications and research challenges. Sustain Comput: Inform Syst 28 Varjovi AE, Babaie S (2020) Green Internet of Things (GIoT): vision, applications and research challenges. Sustain Comput: Inform Syst 28
11.
Zurück zum Zitat Green Power for Mobile, The Global Telecom Tower ESCO Market, Technical Report (2015) Green Power for Mobile, The Global Telecom Tower ESCO Market, Technical Report (2015)
12.
Zurück zum Zitat Thilakarathne NN (2020) Security and privacy issues in IoT environment. Int J Eng Manag Res 10 Thilakarathne NN (2020) Security and privacy issues in IoT environment. Int J Eng Manag Res 10
13.
Zurück zum Zitat Alsamhi SH, Ma O, Ansari M, Meng Q (2019) Greening internet of things for greener and smarter cities: a survey and future prospects. Telecommun Syst 72(4):609–632 Alsamhi SH, Ma O, Ansari M, Meng Q (2019) Greening internet of things for greener and smarter cities: a survey and future prospects. Telecommun Syst 72(4):609–632
14.
Zurück zum Zitat Arshad R, Zahoor S, Shah MA, Wahid A, Yu H (2017) Green IoT: an investigation on energy saving practices for 2020 and beyond. IEEE Access 5:15667–15681 Arshad R, Zahoor S, Shah MA, Wahid A, Yu H (2017) Green IoT: an investigation on energy saving practices for 2020 and beyond. IEEE Access 5:15667–15681
15.
Zurück zum Zitat Miorandi D, Sicari S, De Pellegrini F, Chlamtac I (2012) Internet of things: vision, applications and research challenges. Ad Hoc Netw 10(7):1497–1516 Miorandi D, Sicari S, De Pellegrini F, Chlamtac I (2012) Internet of things: vision, applications and research challenges. Ad Hoc Netw 10(7):1497–1516
16.
Zurück zum Zitat Baliga J, Ayre RW, Hinton K, Tucker RS (2010) Green cloud computing: Balancing energy in processing, storage, and transport. Proc IEEE 99(1):149–167CrossRef Baliga J, Ayre RW, Hinton K, Tucker RS (2010) Green cloud computing: Balancing energy in processing, storage, and transport. Proc IEEE 99(1):149–167CrossRef
17.
Zurück zum Zitat Kiourti A, Lee C, Volakis JL (2015) Fabrication of textile antennas and circuits with 0.1 mm precision. IEEE Antennas Wirel Propag Lett 15:151–153 Kiourti A, Lee C, Volakis JL (2015) Fabrication of textile antennas and circuits with 0.1 mm precision. IEEE Antennas Wirel Propag Lett 15:151–153
18.
Zurück zum Zitat Akkaya K, Guvenc I, Aygun R, Pala N, Kadri A (2015) IoT-based occupancy monitoring techniques for energy-efficient smart buildings. In: IEEE wireless communications and networking conference workshops (WCNCW), pp 58–63 Akkaya K, Guvenc I, Aygun R, Pala N, Kadri A (2015) IoT-based occupancy monitoring techniques for energy-efficient smart buildings. In: IEEE wireless communications and networking conference workshops (WCNCW), pp 58–63
19.
Zurück zum Zitat Shaikh FK, Zeadally S (2016) Energy harvesting in wireless sensor networks: a comprehensive review. Renew Sustain Energy Rev 55:1041–1054 Shaikh FK, Zeadally S (2016) Energy harvesting in wireless sensor networks: a comprehensive review. Renew Sustain Energy Rev 55:1041–1054
20.
Zurück zum Zitat Al-Ali AR, Zualkernan IA, Rashid M, Gupta R, AliKarar M (2017) A smart home energy management system using IoT and big data analytics approach. IEEE Trans Consum Electron 63(4):426–434 Al-Ali AR, Zualkernan IA, Rashid M, Gupta R, AliKarar M (2017) A smart home energy management system using IoT and big data analytics approach. IEEE Trans Consum Electron 63(4):426–434
21.
Zurück zum Zitat Cho WT, Lai YX, Lai CF, Huang YM (2013) Appliance-aware activity recognition mechanism for IoT energy management system. Comput J 56(8):1020–1033CrossRef Cho WT, Lai YX, Lai CF, Huang YM (2013) Appliance-aware activity recognition mechanism for IoT energy management system. Comput J 56(8):1020–1033CrossRef
22.
Zurück zum Zitat Li W, Logenthiran T, Phan VT, Woo WL (2018) Implemented IoT-based self-learning home management system (SHMS) for Singapore. IEEE Internet Things J 5(3):2212–2219CrossRef Li W, Logenthiran T, Phan VT, Woo WL (2018) Implemented IoT-based self-learning home management system (SHMS) for Singapore. IEEE Internet Things J 5(3):2212–2219CrossRef
23.
Zurück zum Zitat Naik K, Patel S (2018) An open source smart home management system based on IOT. Wirel Netw 1–7 Naik K, Patel S (2018) An open source smart home management system based on IOT. Wirel Netw 1–7
24.
Zurück zum Zitat Park C, Kim Y, Jeong M (2018) Influencing factors on risk perception of IoT-based home energy management services. Telematics Informatics 35(8):2355–2365 Park C, Kim Y, Jeong M (2018) Influencing factors on risk perception of IoT-based home energy management services. Telematics Informatics 35(8):2355–2365
25.
Zurück zum Zitat Kamienski CA, Borelli FF, Biondi GO, Pinheiro I, Zyrianoff ID, Jentsch M (2017) Context design and tracking for IoT-based energy management in smart cities. IEEE Internet Things J 5(2):687–695 Kamienski CA, Borelli FF, Biondi GO, Pinheiro I, Zyrianoff ID, Jentsch M (2017) Context design and tracking for IoT-based energy management in smart cities. IEEE Internet Things J 5(2):687–695
26.
Zurück zum Zitat Liu Y, Yang C, Jiang L, Xie S, Zhang Y (2019) Intelligent edge computing for IoT-based energy management in smart cities. IEEE Netw 33(2):111–117 Liu Y, Yang C, Jiang L, Xie S, Zhang Y (2019) Intelligent edge computing for IoT-based energy management in smart cities. IEEE Netw 33(2):111–117
27.
Zurück zum Zitat Sodhro AH, Pirbhulal S, Luo Z, De Albuquerque VHC (2019) Towards an optimal resource management for IoT based Green and sustainable smart cities. J Clean Prod 220:1167–1179CrossRef Sodhro AH, Pirbhulal S, Luo Z, De Albuquerque VHC (2019) Towards an optimal resource management for IoT based Green and sustainable smart cities. J Clean Prod 220:1167–1179CrossRef
28.
Zurück zum Zitat Terroso-Saenz F, González-Vidal A, Ramallo-González AP, Skarmeta AF (2019) An open IoT platform for the management and analysis of energy data. Futur Gener Comput Syst 92:1066–1079CrossRef Terroso-Saenz F, González-Vidal A, Ramallo-González AP, Skarmeta AF (2019) An open IoT platform for the management and analysis of energy data. Futur Gener Comput Syst 92:1066–1079CrossRef
29.
Zurück zum Zitat Pawar P, Tarun Kumar M (2020) An IoT based Intelligent Smart Energy Management System with accurate forecasting and load strategy for renewable generation. Measurement 152 Pawar P, Tarun Kumar M (2020) An IoT based Intelligent Smart Energy Management System with accurate forecasting and load strategy for renewable generation. Measurement 152
30.
Zurück zum Zitat Tom RJ, Sankaranarayanan S, Rodrigues JJPC (2019) Smart energy management and demand reduction by consumers and utilities in an IoT-Fog-based power distribution system. IEEE Internet Things J 6(5):7386–7394CrossRef Tom RJ, Sankaranarayanan S, Rodrigues JJPC (2019) Smart energy management and demand reduction by consumers and utilities in an IoT-Fog-based power distribution system. IEEE Internet Things J 6(5):7386–7394CrossRef
31.
Zurück zum Zitat Salman L, Salman S, Jahangirian S, Abraham M, German F, Blair C, Krenz P (2016) Energy efficient IoT-based smart home. In: IEEE 3rd world forum on Internet of Things (WF-IoT), pp 526–529 Salman L, Salman S, Jahangirian S, Abraham M, German F, Blair C, Krenz P (2016) Energy efficient IoT-based smart home. In: IEEE 3rd world forum on Internet of Things (WF-IoT), pp 526–529
32.
Zurück zum Zitat Ku TY, Park WK, Choi H (2017) IoT energy management platform for microgrid. In: IEEE 7th international conference on power and energy systems (ICPES), pp 106–110 Ku TY, Park WK, Choi H (2017) IoT energy management platform for microgrid. In: IEEE 7th international conference on power and energy systems (ICPES), pp 106–110
33.
Zurück zum Zitat Choi CS, Jeong JD, Lee IW, Park WK (2018) LoRa based renewable energy monitoring system with open IoT platform, In international conference on Electronics, Information, and Communication (ICEIC), pp 1–2 Choi CS, Jeong JD, Lee IW, Park WK (2018) LoRa based renewable energy monitoring system with open IoT platform, In international conference on Electronics, Information, and Communication (ICEIC), pp 1–2
34.
Zurück zum Zitat Prathik M, Anitha K, Anitha V (2018) Smart energy meter surveillance using IoT. In: International conference on power, energy, control and transmission systems (ICPECTS), pp 186–189 Prathik M, Anitha K, Anitha V (2018) Smart energy meter surveillance using IoT. In: International conference on power, energy, control and transmission systems (ICPECTS), pp 186–189
35.
Zurück zum Zitat Srinivasan A, Baskaran K, Yann G (2019) IoT based smart plug-load energy conservation and management system. In: IEEE 2nd international conference on power and energy applications (ICPEA), pp 155–158 Srinivasan A, Baskaran K, Yann G (2019) IoT based smart plug-load energy conservation and management system. In: IEEE 2nd international conference on power and energy applications (ICPEA), pp 155–158
36.
Zurück zum Zitat Kumar SS, Kaviyaraj R, Narayanan LJ (2019) Energy harvesting by piezoelectric sensor array in road using Internet of Things. In: 5th international conference on advanced computing & communication systems (ICACCS), pp 482–484 Kumar SS, Kaviyaraj R, Narayanan LJ (2019) Energy harvesting by piezoelectric sensor array in road using Internet of Things. In: 5th international conference on advanced computing & communication systems (ICACCS), pp 482–484
37.
Zurück zum Zitat Chaouch H, Bayraktar AS, Çeken C (2018) Energy management in smart buildings by using M2M communication. In: 7th international Istanbul smart grids and cities congress and fair (ICSG), pp 31–35 Chaouch H, Bayraktar AS, Çeken C (2018) Energy management in smart buildings by using M2M communication. In: 7th international Istanbul smart grids and cities congress and fair (ICSG), pp 31–35
38.
Zurück zum Zitat Panahi FH, Moshirvaziri S, Mihemmedi Y, Panahi FH, Ohtsuki T (2018) Smart energy harvesting for Internet of Things. In: Proceedings of the smart grid conference (SGC), pp 1–5 Panahi FH, Moshirvaziri S, Mihemmedi Y, Panahi FH, Ohtsuki T (2018) Smart energy harvesting for Internet of Things. In: Proceedings of the smart grid conference (SGC), pp 1–5
39.
Zurück zum Zitat Bin Alaudin AH, Zan MMM, Mahmud AR, Yahaya CKHCK, Yusof MI, Yussoff YM (2018) Real-time residential energy monitoring device using Internet of Things. In: IEEE 8th international conference on system engineering and technology (ICSET), pp 97–101 Bin Alaudin AH, Zan MMM, Mahmud AR, Yahaya CKHCK, Yusof MI, Yussoff YM (2018) Real-time residential energy monitoring device using Internet of Things. In: IEEE 8th international conference on system engineering and technology (ICSET), pp 97–101
40.
Zurück zum Zitat Tcarenko I, Huan Y, Juhasz D, Rahmani AM, Zou Z, Westerlund T, Tenhunen H (2017) Smart energy efficient gateway for Internet of mobile things. In: 14th IEEE annual consumer communications & networking conference (CCNC), pp 1016–1017 Tcarenko I, Huan Y, Juhasz D, Rahmani AM, Zou Z, Westerlund T, Tenhunen H (2017) Smart energy efficient gateway for Internet of mobile things. In: 14th IEEE annual consumer communications & networking conference (CCNC), pp 1016–1017
41.
Zurück zum Zitat Suresh K, RajasekharaBabu M, Patan R (2016) EEIoT: energy efficient mechanism to leverage the Internet of Things (IoT). In: International conference on emerging technological trends (ICETT), pp 1–4 Suresh K, RajasekharaBabu M, Patan R (2016) EEIoT: energy efficient mechanism to leverage the Internet of Things (IoT). In: International conference on emerging technological trends (ICETT), pp 1–4
42.
Zurück zum Zitat Yaghmaee MH, Hejazi H (2018) Design and implementation of an Internet of Things based smart energy metering. In: IEEE international conference on smart energy grid engineering (SEGE), pp 191–194 Yaghmaee MH, Hejazi H (2018) Design and implementation of an Internet of Things based smart energy metering. In: IEEE international conference on smart energy grid engineering (SEGE), pp 191–194
43.
Zurück zum Zitat Pan J, Jain R, Paul S, Vu T, Saifullah A, Sha M (2015) An internet of things framework for smart energy in buildings: designs, prototype, and experiments. IEEE Internet Things J 2(6):527–537 Pan J, Jain R, Paul S, Vu T, Saifullah A, Sha M (2015) An internet of things framework for smart energy in buildings: designs, prototype, and experiments. IEEE Internet Things J 2(6):527–537
44.
Zurück zum Zitat Ding X, Wu J (2019) Study on energy consumption optimization scheduling for internet of things. IEEE Access 7:70574–70583 Ding X, Wu J (2019) Study on energy consumption optimization scheduling for internet of things. IEEE Access 7:70574–70583
45.
Zurück zum Zitat Ejaz W, Naeem M, Shahid A, Anpalagan A, Jo M (2017) Efficient energy management for the internet of things in smart cities. IEEE Commun Mag 55(1):84–91 Ejaz W, Naeem M, Shahid A, Anpalagan A, Jo M (2017) Efficient energy management for the internet of things in smart cities. IEEE Commun Mag 55(1):84–91
46.
Zurück zum Zitat Albreem MA, El-Saleh AA, Isa M, Salah W, Jusoh M, Azizan MM, Ali A (2017) Green internet of things (IoT): an overview. In: IEEE 4th international conference on smart instrumentation, measurement and application (ICSIMA), pp 1–6 Albreem MA, El-Saleh AA, Isa M, Salah W, Jusoh M, Azizan MM, Ali A (2017) Green internet of things (IoT): an overview. In: IEEE 4th international conference on smart instrumentation, measurement and application (ICSIMA), pp 1–6
47.
Zurück zum Zitat Thilakarathne NN, Wickramaaarachchi D (2020) Improved hierarchical role based access control model for cloud computing. arXiv preprint arXiv:2011.07764 Thilakarathne NN, Wickramaaarachchi D (2020) Improved hierarchical role based access control model for cloud computing. arXiv preprint arXiv:​2011.​07764
48.
Zurück zum Zitat Sharma PK, Kumar N, Park JH (2020) Blockchain technology toward green IoT: opportunities and challenges. IEEE Netw 34(4):263–269CrossRef Sharma PK, Kumar N, Park JH (2020) Blockchain technology toward green IoT: opportunities and challenges. IEEE Netw 34(4):263–269CrossRef
49.
Zurück zum Zitat Chen, JI-Z, Yeh L-T (2020) Greenhouse protection against frost conditions in smart farming using IoT enabled artificial neural networks. J Electron 2(04):228–232 Chen, JI-Z, Yeh L-T (2020) Greenhouse protection against frost conditions in smart farming using IoT enabled artificial neural networks. J Electron 2(04):228–232
50.
Zurück zum Zitat Bashar DA (2020) Review on sustainable green Internet of Things and its application. J Sustain Wirel Syst 1(4):256–264 Bashar DA (2020) Review on sustainable green Internet of Things and its application. J Sustain Wirel Syst 1(4):256–264
Metadaten
Titel
A Survey on Energy Management Evolution and Techniques for Green IoT Environment
verfasst von
I. Shanmugapriya
Copyright-Jahr
2023
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-19-7753-4_13