IIT-CNR-Institute for Informatics and Telematics-Italian National Research Council, 56124 Pisa, Italy.
Sensors (Basel). 2021 Aug 12;21(16):5451. doi: 10.3390/s21165451.
Optical wireless LANs (OWLs) constitute an emerging networking paradigm for indoor scenarios' fit to different smart cities' fields of applications. Commercial products employing this technology have been made available on the market in recent years. In this work, we investigate, through a set of indoor communication experiments based on commercially available products, how different environmental and usage modes affect the performance of the system, addressing the presence of multiple users, the position and mobility of the mobile devices, the handover among adjacent cells and the effect of background lighting. Our finding shows that the system is quite robust with respect to the variation of operational conditions. We show that, in most conditions, the links can reliably sustain a stable throughput, achieving at least 50% of the throughput achieved with using the maximum light intensity of the transmitting lamp, while they are affected in a very mild way by factors like position and height of the mobile device, and virtually unaffected by variations in the background light.
光无线局域网(OWLs)是一种新兴的网络范例,适用于室内场景,适用于不同的智慧城市应用领域。近年来,市场上已经推出了采用这项技术的商业产品。在这项工作中,我们通过一系列基于商业可用产品的室内通信实验进行了研究,研究了不同的环境和使用模式如何影响系统的性能,解决了多个用户的存在、移动设备的位置和移动性、相邻小区之间的切换以及背景照明的影响。我们的发现表明,该系统对于操作条件的变化具有很强的稳健性。我们表明,在大多数情况下,链路可以可靠地维持稳定的吞吐量,至少达到使用传输灯最大光强度时吞吐量的 50%,而移动设备的位置和高度等因素对它们的影响非常轻微,并且几乎不受背景光变化的影响。