通过可见光通信实现房间内物联网设备之间的强大网络连接

N. Banupriyal, Suresh G, R. Nandhini, A. M. Mathew, L. Saravanan, A. G
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引用次数: 0

摘要

为了更好地监控和参与智慧城市的公共资产,已安装的物联网(IoT)设备的数量一直在不断增加。这可能会导致网络效率下降,因为不同的物联网设备带来的网络流量和连接量不断增加。为了解决这些挑战,一种有希望的方法是利用通信设备的近物理距离,并促进单个设备之间的通信,以实现低延迟、有效使用带宽和可靠的服务。利用可见光和超声波等新技术,我们的研究旨在提高智能家居、小型办公室和家庭办公室(SOHO)等环境下室内物联网(IoT)连接的性能。这种方式既可以扩大网络容量,又可以保证物联网设备间的网络连接稳定,同时为实现距离边界业务提供了有效的途径。我们已经使用现成的组件构建了可见光和超声波的通信模块,我们现在正在评估它们的网络性能和能源使用情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Robust Network Connection Across Internet of Things Devices Inside the Room with Visible Light Communication
In order to better monitor and engage with the communal assets of smart cities, the amount of Internet of Things (IoT) devices that have been installed has been continuously rising. This might result in a reduction in network efficiency as a consequence of the increasing volume of network traffic and connections brought about by different Internet of Things devices. In order to address these challenges, one approach that shows promise is to take advantage of the close physical proximity of communicating devices and to facilitate communication between individual devices in order to achieve low latency, efficient use of bandwidth, and reliable service. Taking use of new technologies like visible light and ultrasound, our study aims to improve the performance of indoor Internet of Things (IoT) connectivity in settings such as smart homes and small office and home offices (SOHO). This method expands the capacity of the network, ensures that network connections among IoT devices are stable, and offers effective ways to allow distance-bounding services. We have constructed communication modules for visible light and ultrasonic using off-the-shelf components, and we are now evaluating their network performance as well as their energy usage.
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