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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Reflection probability in wireless networks with metasurface-coated environmental objects: an approach based on random spatial processes
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Reflection probability in wireless networks with metasurface-coated environmental objects: an approach based on random spatial processes

机译:具有Metasurface涂层环境对象的无线网络中的反射概率:一种基于随机空间过程的方法

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Abstract An emerging and promising vision of wireless networks consists of coating the environmental objects with reconfigurable metasurfaces that are capable of modifying the radio waves impinging upon them according to the generalized law of reflection. By relying on tools from point processes, stochastic geometry, and random spatial processes, we model the environmental objects with a modified random line process of fixed length and with random orientations and locations. Based on the proposed modeling approach, we develop the first analytical framework that provides one with the probability that a randomly distributed object that is coated with a reconfigurable metasurface acts as a reflector for a given pair of transmitter and receiver. In contrast to the conventional network setup where the environmental objects are not coated with reconfigurable metasurfaces, we prove that the probability that the typical random object acts as a reflector is independent of the length of the object itself. The proposed analytical approach is validated against Monte Carlo simulations, and numerical illustrations are given and discussed.
机译:摘要无线网络的出现和有希望的愿景包括将环境对象与可重新配置的元件覆盖,该物体能够根据概括的反射法修改冲击它们的无线电波。通过依赖点过程,随机几何和随机空间进程的工具,我们使用固定长度的修改随机线和随机取向和位置模拟环境对象。基于所提出的建模方法,我们开发了第一分析框架,该分析框架提供一种具有被随机分布的对象的概率,该对象涂覆有可重新配置的元表面作为用于给定的发射机和接收器的反射器。与传统的网络设置相比,环境对象未涂覆可重新配置的元件,我们证明典型的随机物体作为反射器的概率是独立于物体本身的长度。该提出的分析方法针对蒙特卡罗模拟验证,给出并讨论了数值图。

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