Design a Model to Analyze Open Source Nodejs IoT Frameworks
Keywords:
IoT, Authority Service Delivery Platform, Raspberry Pi, nCube, neM2M, Networks to AttacksAbstract
This paper presents a preliminary analysis of four open source IoT development frameworks, focusing on challenges in IoT development like heterogeneous devices and protocols. It highlights the importance of frameworks in helping developers build IoT applications, especially for small and medium businesses looking to create cost-effective solutions. The study emphasizes the popularity of Raspberry Pi in IoT development due to its affordability, despite the limitations of IoT devices in terms of power, memory, and processing capabilities. The paper also addresses significant security concerns in IoT networks, including the vulnerability of these networks to attacks that can disrupt functions and affect network topology. Furthermore, it discusses the need for lightweight security mechanisms in IoT due to the constrained nature of devices. Additionally, the paper proposes a new model called Authority Service Delivery Platform (ASDP) for enhancing the performance of e-governance applications. The focus then shifts to IoT middleware's role in bridging different IoT systems, facilitating communication and cooperation. The proposed nCube, based on the oneM2M standard, enables sensing and actuation capabilities in IoT devices and is available on GitHub, highlighting the potential for standardized IoT product and application development.
Downloads
References
http://w3techs.com/technologies/overview/web_server/all
http://w3techs.com/technologies/overview/javascript_library/all
Cherechi Ndukwe, M. Tariq Iqbal, Xiaodong Liang, Jahangir Khan, Lawrence Aghenta LoRa-based communication system for data transfer in microgrids. AIMS Electronics and Electrical Engineering, 2020, 4(3): 303-325.
Ohamed M. Albarghot, Mohamed T. Iqbal, Kevin Pope, Luc Rolland . Dynamic modeling and simulation of the MUN Explorer autonomous underwater vehicle with a fuel cell system. AIMS Electronics and Electrical Engineering, 2020, 4(1): 114-131
Silva, D.R.C.; Nogueira, M.B.; Rodrigues, M.C.; Costa, J.S.; Silveira, D.V.A.; Oliveira, G.M.B. A concrete architecture for smart solutions based on IoT technologies. IEEE Instrum. Meas. Mag. 2019, 22, 52–59.
Alvisi, S.; Casellato, F.; Franchini, M.; Govoni, M.; Luciani, C.; Poltronieri, F.; Riberto, G.; Stefanelli, C.; Tortonesi, M. Wireless Middleware Solutions for Smart Water Metering. Sensors 2019, 19, 1853
S. Cimino, J. E. E. Resende and M. I. B. Santos, “A middleware solution for integrating and exploring IoT and HPC capabilities,” J. Softw. Pract. Exp. Vol. 49, Issue 2, Page 584–616, 2019.
Ngu, A.H.; Gutierrez, M.; Metsis, V.; Nepal, S.; Sheng, Q.Z. IoT Middleware: A Survey on Issues and Enabling Technologies. IEEE Internet Things J. 2017, 4, 1– 20.
Razzaque, M.A.; Milojevic-Jevric, M.; Palade, A.; Clarke, S. Middleware for Internet of Things: A Survey. IEEE Internet Things J. 2016, 3, 70–95
Gao, J, Wang, J & Wang, W 2013, in Proceedings of IEEE 10th International Conference on High Performance Computing and Communications, November 13-15, Energy-efficient Multicast Protocol for Real-time Wireless Sensor Networks, Zhangjiajie, China
He, J, Ji, S, Pan, Y & Li, Y 2010, in Proceedings of IEEE 30th International Conference on Distributed Computing Systems Workshops, June 21-25, Reliable and energy efficient target coverage for wireless sensor networks, Genova, Italy
Shelke, R, Kulkarni, G, Sutar, R, Bhore, P, Nilesh, D & Belsare, S 2013, in Proceedings of UK Sim 15th International Conference on Computer Modelling. and Simulation, April 10-12, Energy management in wireless sensor network, Cambridge
Sharma, V, Patel, RB, Bhadauria, HS& Prasad, D 2016, ‘Deployment schemes in wireless sensor network to achieve blanket coverage in large-scale open area: A review’, Egyptian Informatics Journal, vol. 17, no. 1, pp. 45-56
Liao, WH, Kuai, SC& Lin, MS 2015, ‘An energy-efficient sensor deployment scheme for wireless sensor networks using ant colony optimization algorithm’, Wireless Personal Communications, vol. 82, no. 4, pp. 2135-2153
Ayadi, A 2011, ‘Energy-efficient and reliable Transport Control Protocols for wireless sensor networks: state-of-art’, Wireless Sensor Network, vol. 3, no. 3, pp. 106-113
Wang, SS& Chen, ZP 2013, ‘A link-aware clustering mechanism for energy-efficient routing in wireless sensor networks’, IEEE sensors journal, vol. 13, no. 2, pp. 728- 736
Rashed, M, Kabir, MH, Rahim, MS, & Ullah, SE 2012, ‘Cluster Based hierarchical routing protocol for wireless sensor network’, International Journal of Computer and Network Security, vol. 2, no. 5, pp. 128-131
Sendra Compte, S, Lloret, J, García Pineda, M & Toledo Alarcón, JF 2011, ‘Power saving and energy optimization techniques for Wireless Sensor Networks’, In Journal of communications, vol. 6, no. 6, pp. 439-459
Shih, E, Cho, SH, Ickes, N, Min, R, Sinha, A, Wang et al. 2001, in Proceedings of the 7th annual international conference on Mobile computing and networking, July 16, Physical layer driven protocol and algorithm design for energy-efficient wireless sensor networks, Newyork
Liu, Y, Elhanany, I & Qi, H 2005, in proceedings of IEEE International Conference on Mobile Adhoc and Sensor Systems Conference, November 7, An energy-efficient QoS-aware media access control protocol for wireless sensor networks,DC, Washington
Xia, F, Yang, X, Liu, H, Da, Z & Zhao, W 2011, ‘Energy-efficient opportunistic localization with indoor wireless sensor networks’, Computer Science and Information Systems, vol. 8, no. 4, pp. 973-990.
Zhang, B & Yu, F 2008, in proceedings of International Conference on information and automation, June 20-23, An energy efficient localization algorithm for wireless sensor networks using a mobile anchor node, Changsha, China
Chamam, A & Pierre, S 2009, ‘On the planning of wireless sensor networks: Energyefficient clustering under the joint routing and coverage constraint’, IEEE Transactions on Mobile Computing, vol. 8, no. 8, pp.1077-1086
Downloads
Published
How to Cite
Issue
Section
License

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
All papers should be submitted electronically. All submitted manuscripts must be original work that is not under submission at another journal or under consideration for publication in another form, such as a monograph or chapter of a book. Authors of submitted papers are obligated not to submit their paper for publication elsewhere until an editorial decision is rendered on their submission. Further, authors of accepted papers are prohibited from publishing the results in other publications that appear before the paper is published in the Journal unless they receive approval for doing so from the Editor-In-Chief.
IJISAE open access articles are licensed under a Creative Commons Attribution-ShareAlike 4.0 International License. This license lets the audience to give appropriate credit, provide a link to the license, and indicate if changes were made and if they remix, transform, or build upon the material, they must distribute contributions under the same license as the original.