基于超框架改进的无线电网结构低能耗运行管理方案

F. Kojima
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引用次数: 4

摘要

本文提出了一种低能耗运行管理方案,可以根据所假设的业务区域、设备数量、通信范围和用例的多样化应用,定制无线网格结构中的设备功能,以支持所需的数据采集,这也是物联网业务中大数据管理所必需的。为满足所需的规范,有效部署了IEEE 802.15.4g/4e标准的智能公用事业网络(SUN),并正在接受Wi-SUN联盟的认证。介绍了大容量数据采集网、超低能耗运营网和增强网状网三种基本网络类别的概念。在本文中,我们重点研究了使用IEEE 802.15.4e中定义的改进超帧结构实现的超低能耗运行网络,其中周期性部署的睡眠周期大大降低了平均功耗。在本文中,我们证实了所提出的低能耗操作可以使用三节AA电池进行10年以上的数据交换操作。此外,我们提出了一种基于假设低能量运行的有效的低延迟控制信号传输,以避免控制数据对配备执行器的设备的严重延迟。然后,在农业用水管理试验台上对所提出的低延迟增强进行了验证测试。本文验证了所提出的低能耗运行管理方案不仅可以有效地实现低能耗数据采集功能,还可以实现低延迟控制信号传输功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-energy operation management scheme using superframe modification for wireless grid network structures
This paper proposes a low-energy operation management scheme that enables the customization of device functions in the wireless grid structures according to the assumed applications that are diversified in service area, device number, communication range and use cases in order to support the required data collection that is also necessary for the big data management in the Internet of Things (IoT) services. To satisfy the required specifications, effective deployment of the Smart Utility Network (SUN) standardized as the IEEE 802.15.4g/4e standards and is under certification by Wi-SUN alliance. We have introduced the concept of three basic network categories of high capacity data collection network, ultra low-energy operation network and reinforced mesh network. In this paper, we have focused on the ultra low-energy operation network that is realized with the modified superframe structure defined in IEEE 802.15.4e where periodically deployed sleeping periods drastically decrease the average power consumption. In this paper, we confirm that the proposed low-energy operation enables more than 10 years data exchange operation with three AA batteries. Furthermore, we propose an effective low-latency control signal transmission based on the assumed low-energy operation in order to avoid the serious latency for the control data to the devices equipped with the actuators. Then, the proof test of the proposed low-latency enhancement is conducted in the agricultural water management testbed. The paper confirms that the proposed low-energy operation management scheme effectively works not only for low-energy data collection utilities but also low-latency control signal transmission functions.
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