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MIMO Optical Wireless Communications Using ACO-OFDM and a Prism-Array Receiver

机译:使用ACO-OFDM和棱镜阵列接收器的MIMO光无线通信

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摘要

In this paper, we analyze the performance of a prism-array receiver in a multiple-input multiple-output (MIMO) intensity-modulated direct-detection optical wireless communication system. The elements of the MIMO channel matrix depend on the geometry of each prism and the orientation of the prism relative to the optical transmitter. An expression is derived for each channel gain as a function of the angle of the prism, the aspect ratio and area of the receiving surface of the prism, and the orientation and distance between the transmitter and receiver. Results are presented for the directionality and overall field of view (FOV) of a receiver comprising six prisms, showing that compact receivers can be designed, which combine well-conditioned channel matrices with wide FOVs. Simulation results are presented for a typical indoor visible light communication system where four light-emitting diode lights transmit information using asymmetrically clipped optical orthogonal frequency division multiplexing and linear equalizers are used in the receiver. It is shown that the overall bit error rate depends very strongly on the angle of the prisms and on the position of the receiver, but that a simple six-prism receiver can successfully decouple the four transmitted signals at typical receiver positions within the room.
机译:在本文中,我们分析了棱镜阵列接收器在多输入多输出(MIMO)强度调制直接检测光学无线通信系统中的性能。 MIMO信道矩阵的元素取决于每个棱镜的几何形状以及棱镜相对于光发射器的方向。根据棱镜的角度,纵横比和棱镜接收表面的面积以及发射器和接收器之间的方向和距离,得出每个通道增益的表达式。给出了包含六个棱镜的接收器的方向性和整体视场(FOV)的结果,表明可以设计紧凑的接收器,将条件良好的信道矩阵与宽FOV结合在一起。给出了一个典型的室内可见光通信系统的仿真结果,其中四个发光二极管光使用非对称限幅光学正交频分复用传输信息,并且在接收机中使用了线性均衡器。结果表明,总的误码率在很大程度上取决于棱镜的角度和接收器的位置,但是简单的六棱镜接收器可以成功地将房间内典型接收器位置上的四个发射信号解耦。

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