Department of Computer Engineering, Kyung Hee University, Seocheon, Giheung, Yongin, South Korea.
Sensors (Basel). 2010;10(11):9771-98. doi: 10.3390/s101109771. Epub 2010 Nov 1.
Energy conservation is one of the striking research issues now-a-days for power constrained wireless sensor networks (WSNs) and hence, several duty-cycle based MAC protocols have been devised for WSNs in the last few years. However, assimilation of diverse applications with different QoS requirements (i.e., delay and reliability) within the same network also necessitates in devising a generic duty-cycle based MAC protocol that can achieve both the delay and reliability guarantee, termed as multi-constrained QoS, while preserving the energy efficiency. To address this, in this paper, we propose a Multi-constrained QoS-aware duty-cycle MAC for heterogeneous traffic in WSNs (MQ-MAC). MQ-MAC classifies the traffic based on their multi-constrained QoS demands. Through extensive simulation using ns-2 we evaluate the performance of MQ-MAC. MQ-MAC provides the desired delay and reliability guarantee according to the nature of the traffic classes as well as achieves energy efficiency.
节能是目前功率受限的无线传感器网络(WSN)的一个突出研究问题,因此,在过去几年中,已经为 WSN 设计了几种基于占空比的 MAC 协议。然而,将具有不同服务质量要求(即延迟和可靠性)的各种应用程序集成到同一网络中也需要设计一种通用的基于占空比的 MAC 协议,该协议可以在保持能量效率的同时实现延迟和可靠性保证,称为多约束服务质量。为了解决这个问题,在本文中,我们提出了一种用于 WSN 中异构流量的多约束服务质量感知占空比 MAC(MQ-MAC)。MQ-MAC 根据其多约束服务质量需求对流量进行分类。通过使用 ns-2 进行广泛的仿真,我们评估了 MQ-MAC 的性能。MQ-MAC 根据流量类别的性质提供所需的延迟和可靠性保证,并且实现了能量效率。