Modified Clausterhead Selection Technique for Efficient Resource Allocation in Multi-Device-to-Device Cluster Multicast Communications in Cellular Networks
Abstract
This study is primarily centered on enhancing the precision of route selection for Device-to-Device (D2D) communication by focusing on the optimal selection of D2D devices. In pursuit of this objective, a novel approach has been developed, termed as the "Modified Clausterhead Selection Technique." This technique is specifically designed to optimize resource allocation in the context of multiple Device-to-Device Cluster (D2DC) multicast communications within cellular networks. The modification incorporated into the clusterhead selection technique takes into meticulous consideration the processing capacity of D2D devices. This strategic enhancement aims to mitigate network congestion, thereby contributing to the amelioration of network data rates and bolstering overall energy efficiency. By prioritizing the optimization of resource allocation and introducing modifications to the clusterhead selection process, this research endeavors to address critical issues associated with D2DC multicast communications in cellular networks. The overarching goal is to enhance the reliability and efficiency of these communications by minimizing congestion, thereby promoting superior data rates and energy conservation.
Full Text:
PDFReferences
A. Asadi, Q. Wang, and V. Mancuso, “A survey on device-to-device communication in cellular networks,” IEEE Communications Surveys Tutorial,” 16 (4), pp. 1801 – 1819, (2014).
M. Luby, T. Gasiba, T. Stockhammer, and M. Watson, “Reliable multimedia download delivery in cellular broadcast networks,” IEEE Trans. Broadcast., vol. 53, no. 1, pp. 235-246, (2007).
H. Meshgi, D. Zhao, and R. Zheng, “Optimal resource allocation in multicast device-to-device communications underlaying LTE networks,” IEEE pp. 1 – 29, (2015).
J. Kim, J. Joung, and W. Lee, “Resource allocation for multiple device-to-device cluster communication underlay cellular networks,” IEEE Communications Letter, Vol. 22, no. 2. 412 – 415, (2018).
K. Chi, Z. Yu, Y. Li, and Y. Zhu, “Energy efficient D2D communication-based retransmission scheme for reliable multicast in wireless cellular network,” IEEE Access, Vol. 6, pp. 31469 – 31480, (2018).
D. Ningombam, and S. Shin, “Traffic offloading in multicast device-to-device cellular networks: A combinatorial auction-based matching algorithm,” Sensors, 20(4), 1128, (2020).
A. Mohammad, A. Mirza, and S. Vemuru, “Energy Aware Routing For Manets Based On Current Processing State Of Nodes,” Journal of Theoretical and Applied Information Technology, 91(2), 340, (2016).
Y. Sun, Y. Chen, Z. Wang, “Resource Allocation and Power Control Based on Non-cooperative Game for D2D Communications Underplaying Cellular Networks.” Wireless Personal Communication (2022). https://doi.org/10.1007/s11277-022-09486-4
U. Chikeluba, M. Almustapha, A. Yaro, and M. Ohemu, “Development of a Modified Resources Allocation Scheme for Multiple D2DC Multicast Communication Underlying Cellular Network” International Journal of Latest Technology in Engineering, Management & Applied Science. Volume XI(V), May 2022.
G. Varun, B. Mor Harchol, G. Dail., and B. Zwat. On the inapproximability of M/G/K why two moments of job size distribution are not enough. Springer Science + Business Media, LLC (2009).
Refbacks
- There are currently no refbacks.