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Study on Low-Energy Superframe Performances with Low-Latency Data Forwarding in the Enhanced Smart Utility Networks

机译:增强型智能公用事业网络中低延迟数据转发的低能量超帧性能研究

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The paper reports on an effective low-energy operation management with low-energy and low-latency data forwarding scheme for the enhanced Smart Utility Networks (SUN) that realizes required diversifications of SUN system capabilities for future wireless grid systems based on the expected use cases or applications that are potentially employed under the several conditions of deployed area, device number, radio reachable distance and usage scenarios to cope with the automatic data collections that are quite essential for the internet of things (IoT) fields. To realize the necessary functions, the wireless grid structure that is based on SUN standards as know as the IEEE 802.15.4g/4e and certified in the Wi-SUN alliance activities are suitably exploited with required modifications. Especially in the paper, we consider about the low-energy operation capabilities which are enabled by the customized superframe that is known as Low-Energy (LE) superframe and is standardized in IEEE 802.15.4e in which the periodical sleeping periods are effectively decreasing system power consumption. Moreover, the paper proposes an effective low-latency data forwarding technology keeping such a low-energy performance to decrease the accompanied latency effects on the devices assuming the actuator functions. We have conducted the computer simulation evaluation and shown that the proposed scheme has resolved the latency issues not degrading the low-energy operation capabilities in the SUN. Then, the proposed low-latency data forwarding performances are proved in the water management tests that is expected in the future agricultural ICT. We conclude that the proposed SUN enhancements effectively realizes not only low-energy sensing data collection but also low-latency data forwarding performances within the several seconds.
机译:本文报告了具有低能量和低延迟数据转发方案的有效低能量运行管理,用于增强型智能公用事业网络(SUN),实现了基于预期用例的未来无线电网系统所需的太阳系能力的所需多样化或者在部署区域的若干条件下可能使用的应用程序,设备编号,无线电可迁移距离和使用情况,以应对内容Internet(IoT)字段非常重要的自动数据集合。为了实现必要的功能,基于Sun标准的无线网格结构作为IEEE 802.15.4g / 4e并在Wi-Sun联盟活动中认证,适当地利用所需的修改。特别是在本文中,我们考虑由已称为低能量(LE)超帧的定制超帧的低能量操作能力,并且在IEEE 802.15.4e中标准化,其中期间睡眠周期是有效的减少系统能量消耗。此外,本文提出了一种有效的低延迟数据转发技术,保持这种低能量性能,以降低假设致动器功能对设备上的伴随延迟效应。我们已经进行了计算机仿真评估,并表明该方案解决了未降低阳光下低能量运行能力的延迟问题。然后,在未来的农业信息通信技术上预期的水管理测试中证明了所提出的低延迟数据转发性能。我们得出结论,建议的太阳增强功能不仅能够在几秒钟内有效地实现了低能量传感数据收集,而且还有效地实现了低潜伏数据转发性能。

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