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首页> 外文期刊>Internet of Things Journal, IEEE >Toward Wi-Fi Halow Signal Coverage Modeling in Collapsed Structures
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Toward Wi-Fi Halow Signal Coverage Modeling in Collapsed Structures

机译:朝向折叠结构中的Wi-Fi Halow信号覆盖建模

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摘要

With the emerging concept of Wi-Fi radio as sensors, we are witnessing more device-free sensing applications. But we observe that most of the existing works of these applications are meant for simple indoor layout and are not adequate for complex cases, e.g., collapsed structures. In this article, we explore the feasibility of Wi-Fi Halow signals for the collapsed scenario as it can boost rescue efforts. To achieve this, we aim at two prime objectives of this article. First, we model debris constituent of common collapsed scenario materials, such as concrete, brick, glass, and lumber by conducting a field survey of an earthquake-affected area. After that, we consider signal propagation models for better coverage in this debris model by employing two methods. The first method is an integrated TOPSIS and Shannon entropy-based on a bijective soft set, which provides us an approximation tool to select the best Wi-Fi Halow signal coverage in debris. The second method composes two modified wireless signal propagation models, which are transmitter-receiver (TR) and Wi-Fi radar, respectively. We perform extensive simulations and figure out that low power transmission using Wi-Fi radar can yield better coverage, which is also verified by the Shannon entropy method.
机译:随着Wi-Fi收音机的新兴概念作为传感器,我们正在目睹更多无设备的传感应用。但是,我们观察到这些应用的大多数现有的作品都是为了简单的室内布局,并且对于复杂的案例而言,这是足够的,例如倒塌的结构。在本文中,我们探讨了折叠方案的Wi-Fi HALOW信号的可行性,因为它可以提高救援工作。为实现这一目标,我们的目标是这篇文章的两个素数目标。首先,我们通过对受地震影响的地区进行现场调查,我们模拟共同折叠场景材料的碎片组成部分,例如混凝土,砖,玻璃和木材。之后,我们考虑通过采用两种方法来更好地覆盖该碎片模型的信号传播模型。第一种方法是基于一个基于自由度软组的集成的Topsis和Shannon熵,为我们提供了近似工具,以在碎片中选择最佳的Wi-Fi光信号覆盖范围。第二种方法组合两个修改的无线信号传播模型,分别是发射机 - 接收器(TR)和Wi-Fi雷达。我们执行广泛的模拟,并弄清楚使用Wi-Fi雷达的低功率传输可以产生更好的覆盖率,也可以通过Shannon熵方法验证。

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