Reliable energy-efficient multilayer mechanism with realistic battery model and QoE support in wireless MANETs

被引:2
作者
De Carvalho T.C. [1 ]
Ferreira Júnior J.J. [1 ]
Francês R.L. [1 ]
机构
[1] Programa de Pós-Graduação em Engenharia Elétrica, Laboratório de Planejamento de Redes de Alto Desempenho, Universidade Federal Do Pará, Rua Augusto Corrêa, 01, Belém, Pará
关键词
Energy-efficient; MANET; Mobile multimedia; QoE; Routing protocols; Telecommunications;
D O I
10.1590/2179-10742016v15i1513
中图分类号
学科分类号
摘要
Evolution in the telecommunications networks and the rapid advances made in wireless mobile communication networks, have taken computer networks to a new communication level. They now provide support for new mobile multimedia applications and are thus fostering the development of new network types and configurations. MANET is an important configuration of network for operations that employ mechanisms to enable dynamic self-configuration, self-optimization and self-healing, which is a challenging task for the routing protocols, new multimedia application and the battery energy consumption of wireless and mobile devices. These protocols are challenging because battery problems are more serious in this type of network and the existing protocols are not adapted to current problems, particularly mobile multimedia streaming, that can be found in most Internet flow. This paper proposes a reliable energy-efficient multilayer mechanism to address this to make improvements in the main current protocols. The proposal adds decision metrics to an energy-efficient computational intelligence technique based on Fuzzy-System with QoE, mobility and battery guarantees, choosing the best path in an efficient and accuracy way. The proposal has been evaluated in a network simulator. © 2016 SBMO/SBMag.
引用
收藏
页码:30 / 48
页数:18
相关论文
共 27 条
[11]  
Shafiee K., Attar A., Leung V.C.M., WLAN-WiMAX double-technology routing for vehicular networks, IEEE VTC Fall, United States, pp. 1-6, (2011)
[12]  
Sarkar S., Datta R., A trust bases protocol for energy-efficient routing in self-organized MANETs, IEEE India Conference, pp. 1084-1089, (2012)
[13]  
Othmen S., Belghith A., Zarai F., Obaidat M.S., Power and delay aware routing protocol for ad hoc networks, IEEE International Conference on Computer and Information Technology, pp. 59-64, (2014)
[14]  
Rajkumar G., Kasiram R., Parthiban D., Optimizing Throughput with Reduction in Power Consumption and Performance Comparison of DSR and AODV Routing Protocols, pp. 943-947, (2012)
[15]  
Agrawal H., Johri P., Kumar A., Emerging trends in energy efficient routing protocol, International Conference on Computing, Communication and Automation, pp. 523-528, (2015)
[16]  
Varaprasad S.G., Suresh H.N., Devaraju G., Implementing a power aware QoS constraints routing protocol in MANETs, Fourth International Conference on Computing, Communications and Network Technologies, pp. 1-7, (2013)
[17]  
Vazifehdan J., Prasad R.V., Niemegeers I., Energy-efficient reliable considering residual energy in Wireless Ad hoc Networks, IEEE Transactions on Mobile Computing, 13, 2, pp. 434-447, (2013)
[18]  
Jongerden M.R., Haverkort B.R., Which battery model to use?, IET Software, Institution of Engineering and Technology, 3, 6, pp. 445-457, (2009)
[19]  
Rakhmatov D.N., Vrudhula S.B.K., An analytical high-level battery model for use in energy management of portable electronic systems, IEEE/ACM ICCAD, United States, pp. 498-499, (2001)
[20]  
Handy M., Timmermann D., Simulation with Mobile Wireless Networks with accurate modeling of non-linear battery effects, Proc. Int'L. Conf. Applied Simulation and Modeling, pp. 532-537, (2003)