1. bookVolume 8 (2023): Edizione 1 (January 2023)
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eISSN
2444-8656
Prima pubblicazione
01 Jan 2016
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2 volte all'anno
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Information transmission simulation of Internet of things communication nodes under collision free probability equation

Pubblicato online: 15 Jul 2022
Volume & Edizione: Volume 8 (2023) - Edizione 1 (January 2023)
Pagine: 1871 - 1888
Ricevuto: 30 Apr 2022
Accettato: 30 Jun 2022
Dettagli della rivista
License
Formato
Rivista
eISSN
2444-8656
Prima pubblicazione
01 Jan 2016
Frequenza di pubblicazione
2 volte all'anno
Lingue
Inglese

Figure 1

Time frame diagram
Time frame diagram

Figure 2

Schematic diagram of reservation time slot
Schematic diagram of reservation time slot

Figure 3

Contention message format
Contention message format

Figure 4

The relationship between network energy consumption and p and λ per unit time
The relationship between network energy consumption and p and λ per unit time

Figure 5

Simulation result of message reception success rate
Simulation result of message reception success rate

Figure 6

The simulation result of the proportion of message sleep time
The simulation result of the proportion of message sleep time

Figure 7

Simulation results of media access delay
Simulation results of media access delay

Figure 8

Sink Communication Mode
Sink Communication Mode

Figure 9

Simulation result of message reception success rate in sink mode
Simulation result of message reception success rate in sink mode

Figure 10

Simulation result of media access delay in sink mode
Simulation result of media access delay in sink mode

Costes, J. M., Kairouz, S., Monson, E., & Eroukmanoff, V., (2018). Where lies the harm in lottery gambling? A portrait of gambling practices and associated problems. Journal of gambling studies, 34(4), 1293-1311. Search in Google Scholar

Hosahalli, D., & G. Srinivas, K., (2020). Cross‐layer routing protocol for event‐driven M2M communication in IoT‐assisted smart city planning and management: CWSN‐eSCPM. IET Wireless Sensor Systems, 10(1), 1-12. Search in Google Scholar

Dwivedi, A. K., Sharma, A. K., & Mehra, P. S., (2020). Energy efficient sensor node deployment scheme for two stage routing protocol of wireless sensor networks assisted iot. ECTI Transactions on Electrical Engineering, Electronics, and Communications, 18(2), 158-169. Search in Google Scholar

Zhu, K., Hu, J., Liu, Y., Alotaibi, N. D., & Alsaadi, F. E., (2021). On ℓ2–ℓ∞ output-feedback control scheduled by stochastic communication protocol for two-dimensional switched systems. International Journal of Systems Science, 52(14), 2961-2976. Search in Google Scholar

Rawat, P., & Chauhan, S., (2021). Particle swarm optimization-based energy efficient clustering protocol in wireless sensor network. Neural Computing and Applications, 33(21), 14147-14165. Search in Google Scholar

Ma, H., Teng, J., Hu, T., Shi, P., & Wang, S., (2020). Co-communication protocol of underwater sensor networks with quantum and acoustic communication capabilities. Wireless Personal Communications, 113(1), 337-347. Search in Google Scholar

Wang, Z. X., Zhang, M., Gao, X., Wang, W., & Li, X., (2019). A clustering WSN routing protocol based on node energy and multipath. Cluster Computing, 22(3), 5811-5823. Search in Google Scholar

Zou, L., Wang, Z., Hu, J., Liu, Y., & Liu, X., (2021). Communication-protocol-based analysis and synthesis of networked systems: progress, prospects and challenges. International Journal of Systems Science, 52(14), 3013-3034. Search in Google Scholar

Souza, G. C., Giacomin, J. C., & Heimfarth, T., (2021). An Asynchronous Anycast Protocol Resilient to Changes in Communication Channel. Wireless Personal Communications, 120(4), 3243-3263. Search in Google Scholar

Sai, M. S. S., Rejeti, I. D. V. K. K., Gera, I. D. J., & Raju, M. N., (2021). EFFECTIVE ROUTING PROTOCOL IN MOBILE AD-HOC NETWORK USING INDIVIDUAL NODE ENERGY. Technology (IJARET), 12(2), 445-453. Search in Google Scholar

Gomathy, V., Padhy, N., Samanta, D., Sivaram, M., Jain, V., & Amiri, I. S., (2020). Malicious node detection using heterogeneous cluster based secure routing protocol (HCBS) in wireless adhoc sensor networks. Journal of Ambient Intelligence and Humanized Computing, 11(11), 4995-5001. Search in Google Scholar

Sai, M. S. S., Rejeti, I. D. V. K. K., Gera, I. D. J., & Raju, M. N., (2021). EFFECTIVE ROUTING PROTOCOL IN MOBILE AD-HOC NETWORK USING INDIVIDUAL NODE ENERGY. Technology (IJARET), 12(2), 445-453. Search in Google Scholar

Gomathi, S., & Gopala Krishnan, C., (2020). Malicious node detection in wireless sensor networks using an efficient secure data aggregation protocol. Wireless Personal Communications, 113(4), 1775-1790. Search in Google Scholar

Sai, M. S. S., Rejeti, I. D. V. K. K., Gera, I. D. J., & Raju, M. N., (2021). EFFECTIVE ROUTING PROTOCOL IN MOBILE AD-HOC NETWORK USING INDIVIDUAL NODE ENERGY. Technology (IJARET), 12(2), 445-453. Search in Google Scholar

Velusamy, D., Pugalendhi, G., & Ramasamy, K., (2019). A cross-layer trust evaluation protocol for secured routing in communication network of smart grid. IEEE Journal on Selected Areas in Communications, 38(1), 193-204. Search in Google Scholar

Chen, S., Guo, J., & Ma, L., (2019). Sliding mode observer design for discrete nonlinear time-delay systems with stochastic communication protocol. International Journal of Control, Automation and Systems, 17(7), 1666-1676. Search in Google Scholar

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