A Collaborative Framework for Avoiding Interference Between Zigbee and WiFi for Effective Smart Metering Applications

V. K., Sarat Kumar Sahoo
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引用次数: 5

Abstract

Energy management is one of the foremost priorities of research in many countries across the world. The introduction of modern information and communication technologies (ICT) are transforming the existing power grid, towards a more distributed and flexible “Smart Grid” (SG). The wireless sensor networks (WSN) are considered for data communication and are generally, incorporated with actuators to implement the control actions remotely. The wireless technologies like ZigBee (for automation), WiFi (for internet) and Bluetooth (entertainment) work in the 2.4GHz band. The coexistence of different wireless technologies working in the common area is unavoidable. Hence, this phenomenon degrades the performance of each other, due to the interference phenomenon. The wireless nodes with high energy had a great influence on the performance of the nodes working with low energy. Under the influence of interference, the low-power nodes experience the uncertain sleep-wake scheduling and increased delays in channel occupation. Interference also results in, high packet error rates (PER), decreased throughput, and high energy consumption. Hence for overcoming the above problems, A collaborative framework for an effective interference management and its avoidance is proposed in this paper. The framework proposed assures the effective ZigBee communication by systematic channel scheduling operating even under the influence of Wi-Fi. The work proposed performs better even under extreme interference conditions and the results obtained shows enriched performance.
避免Zigbee和WiFi之间干扰的协作框架,用于有效的智能计量应用
能源管理是世界上许多国家的研究重点之一。现代信息和通信技术(ICT)的引入正在改变现有的电网,使其朝着更加分散和灵活的“智能电网”(SG)发展。无线传感器网络(WSN)被认为是用于数据通信,并且通常与执行器结合以实现远程控制动作。诸如ZigBee(用于自动化)、WiFi(用于互联网)和蓝牙(娱乐)等无线技术在2.4GHz频段工作。在公共区域工作的不同无线技术的共存是不可避免的。因此,由于干扰现象,这种现象降低了彼此的性能。高能量无线节点对低能量无线节点的性能影响很大。在干扰的影响下,低功耗节点的睡眠-觉醒调度不确定,信道占用延迟增加。干扰还会导致高数据包错误率(PER)、吞吐量降低和高能耗。因此,为了克服上述问题,本文提出了一种有效的干扰管理和避免的协作框架。该框架通过系统的信道调度,保证了ZigBee在Wi-Fi影响下的有效通信。即使在极端干扰条件下,所提出的工作也表现得很好,所得结果显示了丰富的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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