首页> 外文会议>Conference on Free-Space Laser Communication and Laser Imaging II, Jul 9-11, 2002, Seattle, Washington, USA >Adaptive field-of-view receiver design for optical wireless communication through fog
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Adaptive field-of-view receiver design for optical wireless communication through fog

机译:通过雾的光学无线通信的自适应视场接收机设计

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With growing interest in terrestrial, inter-building and short distance wireless communication for high data-rate transmissions, solutions are sought for the crippling problems presented by multi-scattering phenomena typified by fog and particulate media. The multiple scattering results in spatial, temporal and angular spread of the light as it propagates through the medium. This both attenuates the total power incident on the receiver and increases the Bit Error Rate (BER) as subsequent pulses are not distinguishable due to Inter-symbol interference (ISI). A model of light transmission through fogs of different optical thicknesses and types is presented at four different wavelengths, using Monte-Carlo simulations. An adaptive field of view (FOV) receiver for optical wireless communication is proposed and the possibility of thus enhancing communication system performances through fog is indicated. Necessarily, the limitations presented by thermal noise in a detector of dimensions affording large fields of view restrict the applicability of the proposed solution. Hence, in this work we investigate optimal FOV settings, taking into consideration thermal noise signal degradation. The essence of the concept is to be configured as a simple design tool whereby environmental data are correlated to optimal FOV settings.
机译:随着人们对用于高数据速率传输的地面,建筑物间和短距离无线通信的兴趣日益浓厚,人们正在寻求解决方案,以解决雾和颗粒介质代表的多重散射现象所带来的严重问题。多次散射导致光在通过介质传播时在空间,时间和角度上扩散。这既衰减了入射在接收器上的总功率,又增加了误码率(BER),因为随后的脉冲由于符号间干扰(ISI)而无法区分。使用蒙特卡洛模拟,给出了在四种不同波长下通过不同光学厚度和类型的雾的光传输模型。提出了一种用于光学无线通信的自适应视场(FOV)接收机,并指出了通过雾提高通信系统性能的可能性。必然地,在具有大视野的尺寸检测器中,热噪声所带来的局限性限制了所提出解决方案的适用性。因此,在这项工作中,我们考虑了热噪声信号的劣化,研究了最佳FOV设置。该概念的实质是配置为简单的设计工具,从而将环境数据与最佳FOV设置相关联。

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