Optical wireless communication front-ends

M. Abdullah, R. Green, M. Leeson
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引用次数: 12

Abstract

Infrared wireless communication possesses two main attractive advantages over its radio frequency counterpart, namely the abundance of unregulated spectrum in the 700 nm 1500 nm region and the ease with which the IR radiation can be confined. Integrating microwave electronics and optics, it is possible to provide wideband communication services but it is well known that the signal level in an optical wireless receiver is weakest at the front end. Therefore, this paper identifies the technical obstacles and limitations in indoor infrared optical wireless front-ends, in addition to techniques for mitigating these effects, showing that infrared is a viable alternative to radio for certain applications.
光无线通信前端
红外无线通信与射频通信相比,具有两个主要的吸引人的优势,即在700 nm - 1500 nm区域具有丰富的非管制频谱,并且易于限制红外辐射。将微波电子学与光学相结合,提供宽带通信服务是可能的,但众所周知,光无线接收机的信号电平在前端是最弱的。因此,本文确定了室内红外光学无线前端的技术障碍和限制,以及减轻这些影响的技术,表明红外在某些应用中是无线电的可行替代方案。
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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