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Li-Pos: A Light Positioning Framework Leveraging OFDM for Visible Light Communication

机译:LI-POS:利用OFDM的光定位框架以获得可见光通信

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摘要

The design of solid-state lighting is vital, as numerous metrics are involved in their exact positioning, and as it is utilized in various processes, ranging from intelligent buildings to the internet of things (IoT). This work aims to determine the power and delay spread from the light source to the receiver plane. The positions of the light source and receiver were used for power estimation. We focus on analog orthogonal frequency-division multiplexing (OFDM) in visible light communication (VLC) and assess the area under the curve (AUC). The proposed system was designed using modulation techniques (i.e., quadrature amplitude modulation; QAM) for visible light communication (VLC) and pulse-width modulation (PWM) for dimming sources. For the positioning and spreading of brightness, the proof-of-concept was weighted equally over the entire area. Therefore, the receiver plane was analyzed, in order to measure the power of each light-emitting diode (LED) in a given area, using the delayed mean square error (MSE). A framework was applied for the placement of LEDs, using full-width at half-maximum (FWHM) parameters with varying distances. Then, the received power was confirmed. The results show that the AUC using DRMS values for LEDs significantly increased (by 30%) when the number of source LEDs was changed from four to three. These results confirm that our system, associated with the simple linear lateration estimator, can achieve better energy consumption.
机译:固态照明的设计是至关重要的,因为众多的度量参与其精确定位,并且当它被用于各种处理,从智能建筑事物的互联网(IOT)。这项工作旨在从光源到接收器平面确定功率和延迟扩散。被用于功率估计在所述光源和接收器的位置。我们专注于在可见光通信(VLC)的模拟的正交频分复用(OFDM)和曲线(AUC)下评估的区域。所提出的系统使用的调制技术设计(即,正交幅度调制; QAM),用于可见光通信(VLC)和脉冲宽度调制(PWM)调光源。用于定位和亮度的扩散,证明的概念称重在整个区域上相等。因此,接收器平面进行了分析,以测量各发光二极管(LED)在给定区域的功率,使用延迟均方误差(MSE)。一个框架涂敷了用于LED的位置,使用全宽度具有不同的距离的半最大值(FWHM)的参数。然后,将接收到的功率得到了证实。结果表明,使用DRMS值用于LED显著增加(30%)的AUC时源LED的数量改为从四个三个。这些结果证实了我们的系统,用简单的线性相关估计lateration,可以达到更好的能耗。

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