FlexiCast:物联网中高效数据共享的结构自适应协议

Madhav Tummula, Manish Kausik H, S. Saha
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引用次数: 5

摘要

物联网技术在广泛的应用中得到广泛的普及,不仅包括对结构的监测,还包括智能系统的管理和控制。一般来说,物联网系统由许多物联网设备组成,这些设备在安装在特定区域以服务于特定目的时形成无线分散设置。底层无线网络的结构取决于部署系统的目标的结构,因此,根据确切的应用程序有很大的不同。这种结构变化通常会影响底层物联网协议的性能。不幸的是,大多数网络协议都没有明确地处理这些问题。例如,虽然数据共享协议已经有了相当大的发展,特别是随着同步传输(ST)的出现,但大多数协议的设计都没有考虑到基础网络结构形成的变化。这些协议要么在小规模模拟网络中进行测试,要么在承载固定/均匀结构的试验台设置中进行测试。在这项工作中,我们证明了物联网系统的自适应特性不仅可以使其运行更快,而且可以节省大量能量,这在低功耗系统中通常是一个极其重要的问题。特别地,我们设计并实现了一个灵活的、结构自适应的多对多数据共享协议FlexiCast。通过在仿真设置和物联网测试平台下的大量实验,我们证明,与不适应网络结构的情况相比,FlexiCast的执行速度提高了49%,消耗的能量减少了53%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FlexiCast: A Structure-Adaptive Protocol for Efficient Data-Sharing in IoT
IoT-technology is gaining a wide popularity over a large range of applications including not only monitoring of structures but also management and control of smart-systems. An IoT-system, in general, is composed of a number of IoT-devices which form a wireless decentralized setting as they get installed over a specific area to serve a particular purpose. The structure of the underlying wireless network depends on the structure of the target where the system gets deployed and hence, widely varies based on the exact application. Such structural variations often have an impact on the performance of the underlying IoT-protocols. Unfortunately most of the network protocols do not take care of such issues explicitly. For instance, although there have been quite significant development in the data-sharing protocols, especially with the advent of Synchronous-Transmission (ST), most of them are designed without considering the variation in the structural formation of the base networks. These protocols are tested over either in small scale simulated networks or in testbed settings bearing fixed/homogeneous structures. In this work, we demonstrate that the property of self-adaptability in an IoT-system can enable it not only to run faster but also save substantial energy which is an extremely important issue in the context of low-power system, in general. In particular, we design and implement a flexible and structure-adaptive many-to-many data-sharing protocol FlexiCast. Through extensive experiments under emulation-settings and IoT-testbeds we demonstrate that FlexiCast performs upto 49% faster and consumes upto 53% lesser energy compared to the case when it does not adapt to the network structure.
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