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无线传感器网络中具有延迟和同步约束的最优消息捆绑。

Optimal Message Bundling with Delay and Synchronization Constraints in Wireless Sensor Networks.

机构信息

Department of Electrical and Electronic Engineering, Xi'an Jiaotong-Liverpool University (XJTLU), Suzhou 215123, China.

Department of Architecture, Xi'an Jiaotong-Liverpool University (XJTLU), Suzhou 215123, China.

出版信息

Sensors (Basel). 2019 Sep 18;19(18):4027. doi: 10.3390/s19184027.

Abstract

Energy efficiency and end-to-end delay are two of the major requirements for the monitoring and detection applications based on resource-constrained wireless sensor networks (WSNs). As new advanced technologies for accurate monitoring and detection-such as device-free wireless sensing schemes for human activity and gesture recognition-have been developed, time synchronization accuracy becomes an important requirement for those WSN applications too. Message bundling is considered one of the effective methods to reduce the energy consumption for message transmissions in WSNs, but bundling more messages increases the transmission interval of bundled messages and thereby their end-to-end delays; the end-to-end delays need to be maintained within a certain value for time-sensitive applications like factory monitoring and disaster prevention, while the message transmission interval affects time synchronization accuracy when the bundling includes synchronization messages as well. Taking as an example a novel WSN time synchronization scheme recently proposed for energy efficiency, we investigate an optimal approach for message bundling to reduce the number of message transmissions while maintaining the user-defined requirements on end-to-end delay and time synchronization accuracy. Formulating the optimal message bundling problem as integer linear programming, we compute a set of optimal bundling numbers for the sensor nodes to constrain their link-level delays, thereby achieving and maintaining the required end-to-end delay and synchronization accuracy. Extensive experimental results based on a real WSN testbed using TelosB sensor nodes demonstrate that the proposed optimal bundling could reduce the number of message transmissions about 70% while simultaneously maintaining the required end-to-end delay and time synchronization accuracy.

摘要

能量效率和端到端延迟是基于资源受限的无线传感器网络 (WSN) 的监测和检测应用的两个主要要求。随着用于精确监测和检测的新技术(例如用于人体活动和手势识别的无设备无线感应方案)的发展,时间同步精度也成为这些 WSN 应用的重要要求。消息捆绑被认为是减少 WSN 中消息传输能量消耗的有效方法之一,但捆绑更多消息会增加捆绑消息的传输间隔,从而增加其端到端延迟;对于工厂监测和灾害预防等时间敏感应用,端到端延迟需要保持在一定值内,而当捆绑包括同步消息时,消息传输间隔会影响时间同步精度。以最近提出的一种针对能量效率的新型 WSN 时间同步方案为例,我们研究了一种最佳的消息捆绑方法,以在保持用户定义的端到端延迟和时间同步精度要求的情况下,减少消息传输的数量。我们将最优消息捆绑问题表述为整数线性规划问题,为传感器节点计算一组最优的捆绑数量,以限制其链路级延迟,从而实现并保持所需的端到端延迟和同步精度。基于使用 TelosB 传感器节点的真实 WSN 测试床的广泛实验结果表明,所提出的最优捆绑可以减少约 70%的消息传输数量,同时保持所需的端到端延迟和时间同步精度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c99e/6766916/7fa44b83f241/sensors-19-04027-g001.jpg

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