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Adaptive Redundancy-Based Transmission for Wireless Sensor Networks

机译:基于自适应冗余的无线传感器网络传输

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Wireless Sensor Networks (WSNs) are built upon tens to thousands of sensor nodes dispersed across a geographical area. Most sensor nodes have limited on-board resources, such as limited computing capabilities and limited power. These issues can reduce the reliability of the sensor nodes, which, in turn, affects the robustness of the WSN as a whole. One of the components that can be affected is the data transmission system of the sensor nodes. We propose a reliable transport layer protocol that uses a combination of redundant packets and probabilistic transmission to ensure reliable transmission of data while maintaining the efficiency of the network. The proposed protocol does not require acknowledgement packets, such as the transmission control protocol (TCP) and yet its efficiency is similar to that of the user datagram protocol (UDP). In this paper, we explain the proposed protocol and demonstrate how it can achieve 7% improvements in reliability while maintaining 77% efficiency compared to UDP.
机译:无线传感器网络(WSNS)建立在几十到数千个传感器节点上,分散在地理区域。大多数传感器节点都有限制的板载资源,例如有限的计算能力和有限的电源。这些问题可以降低传感器节点的可靠性,反过来又影响WSN整体的鲁棒性。可以受影响的组件之一是传感器节点的数据传输系统。我们提出了一种可靠的传输层协议,该协议使用冗余分组和概率传输的组合来确保在保持网络效率的同时确保数据的可靠传输。所提出的协议不需要确认分组,例如传输控制协议(TCP),但其效率类似于用户数据报协议(UDP)。在本文中,我们解释了拟议的协议,并展示了如何在与UDP相比保持77%的可靠性的7%的改善。

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