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Coupled data transmission and indoor positioning by using transmitting trichromatic white LEDs and a SiC optical MUX/DEMUX mobile receiver

机译:通过使用传输三色上白光LED和SIC光学MUX / DEMUX移动接收器来耦合数据传输和室内定位

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In this paper, we present an indoor positioning system were trichromatic white LEDs are used both for illumination proposes and as transmitters, and an MUX/DEMUX device, based on a-SiC:H technology, is used as the mobile receiver. OOK modulation scheme was used, and it provides a good trade-off between system performance and implementation complexity. The receiver is implemented using a double p-i-n/pin SiC photodetector with light filtering properties. The relationship between the optical inputs (transmitted data) and the associated digital output levels (received data) is established and decoded. Two topologies are used and tested as lighting plans: the square and the triangular. The key differences between both topologies are discussed in the following. The received signal is used in coded multiplexing techniques for supporting communications and navigation concomitantly on the same channel. The position of the device is estimated using the visible multilateration method by measuring the strength of the MUX signal from several non-collinear transmitters. The location and motion information is calculated by position mapping and estimating the location areas. For both topologies, the transmitted data information, indoor position and motion direction of the mobile device are determined. Data analysis showed that by using a pinpin double photodiode based on a a-SiC:H heterostucture as receiver, and RBGLEDs as transmitters it is possible not only to determine the mobile target's position but also to infer the motion direction over time, along with the received information in each position.
机译:在本文中,我们介绍了一个室内定位系统是使用三色白色LED的照明,并且作为发射器,以及基于A-SIC:H技术的MUX / DEMUX装置用作移动接收器。使用了OOK调制方案,它在系统性能和实现复杂性之间提供了良好的权衡。接收器使用具有光学滤波特性的双P-I-N / PIN SiC光电探测器来实现。建立和解码光学输入(发送数据)与相关的数字输出电平(接收数据)之间的关系。两个拓扑以照明计划使用并测试:方形和三角形。以下讨论了两个拓扑之间的关键差异。接收信号用于编码多路复用技术,用于在同一信道上持续地支持通信和导航。通过测量来自几个非共线发射器的Mux信号的强度,使用可见多边方法估计设备的位置。位置和运动信息由位置映射和估计位置区域来计算。对于两个拓扑,确定移动设备的传输数据信息,室内位置和运动方向。数据分析表明,通过使用基于A-SiC:H异构的PINPIN双光电二极管作为接收器,并且作为发射器的RBGLEDS不仅可以确定移动目标的位置,而且还可以随时间推断出运动方向。在每个位置收到的信息。

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