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Adaptive Data Synchronization Algorithm for IoT-Oriented Low-Power Wide-Area Networks

机译:针对IOT导向低功耗广域网的自适应数据同步算法

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摘要

The Internet of Things (IoT) is by now very close to be realized, leading the world towards a new technological era where people’s lives and habits will be definitively revolutionized. Furthermore, the incoming 5G technology promises significant enhancements concerning the Quality of Service (QoS) in mobile communications. Having billions of devices simultaneously connected has opened new challenges about network management and data exchange rules that need to be tailored to the characteristics of the considered scenario. A large part of the IoT market is pointing to Low-Power Wide-Area Networks (LPWANs) representing the infrastructure for several applications having energy saving as a mandatory goal besides other aspects of QoS. In this context, we propose a low-power IoT-oriented file synchronization protocol that, by dynamically optimizing the amount of data to be transferred, limits the device level of interaction within the network, therefore extending the battery life. This protocol can be adopted with different Layer 2 technologies and provides energy savings at the IoT device level that can be exploited by different applications.
机译:事物互联网(物联网)现在是非常接近的,实现世界朝着一种新的技术时代,人们的生活和习惯将明确革命。此外,传入的5G技术承诺有关移动通信中服务质量(QoS)的显着增强。同时连接的数十亿个设备已经开辟了关于网络管理和数据交换规则的新挑战,这些挑战需要针对所考虑的方案的特征量身定制。 IOT市场的大部分是指向低功耗广域网(LPWANS),其代表基础设施的基础设施,用于除了QoS的其他方面之外的强制目标。在这方面,我们提出了一种低功率的IoT-面向文件同步协议,通过动态地优化的数据量来进行传输,限制了网络内交互的装置水平,因此延长了电池寿命。可以使用不同的第2层技术采用该协议,并在IOT设备级别提供能量节省,这些设备可以通过不同的应用程序利用。

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