Orthogonal spatial coding in indoor wireless optical link reducing power and bandwidth requirements

Y. Alqudah, M. Kavehrad
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引用次数: 2

Abstract

Although uniform distribution of optical power is one of the main requirements for multi-access support in a wireless optical link, Multi Spot Diffusing Configuration (MSDC) provides uniformity along with spatial independence that allows spatial diversity techniques over the link. Independent spatial channels are generated by a multibeam transmitter producing spatially confined diffusing spots, and a multibranch receiver with narrow field-of-view branches. In this paper, we propose an orthogonal spatial coding technique that utilizes the independence of channels to reduce power and bandwidth requirements. The technique is based on treating the m channels between a transmitter and a receiver as an m-dimensional space. Thus, enabling data transmission through varying signal level and its location in space. Our study shows that using 8 channels, the proposed technique enables transmission at rates 10 and 12 times higher than combining when power per channel and user are constrained, respectively.
正交空间编码在室内无线光链路降低功率和带宽要求
虽然光功率的均匀分布是无线光链路中支持多址的主要要求之一,但多点扩散配置(MSDC)提供了均匀性以及空间独立性,从而允许在链路上使用空间分集技术。独立的空间信道由产生空间受限扩散点的多波束发射机和具有窄视场支路的多支路接收机产生。在本文中,我们提出了一种正交空间编码技术,利用信道的独立性来降低功率和带宽要求。该技术基于将发射器和接收器之间的m个信道视为m维空间。因此,可以通过不同的信号电平及其在空间中的位置进行数据传输。我们的研究表明,当每个信道和用户的功率分别受到限制时,使用8个信道,所提出的技术能够以比组合高10倍和12倍的速率传输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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