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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >Wireless Channel Modeling of Multiply Connected Reverberant Spaces: Application to Electromagnetic Compatibility Assessment
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Wireless Channel Modeling of Multiply Connected Reverberant Spaces: Application to Electromagnetic Compatibility Assessment

机译:多重连接的混响空间的无线通道建模:在电磁兼容性评估中的应用

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摘要

Radio-frequency wireless communications and sensor networks are currently being deployed in structures that comprise confined, reflective spaces that are electromagnetically coupled. Such structures are commonly found in aviation, shipping, automotive, and warehousing industries. In this paper, a general time-dependent model is presented whose solutions directly provide key properties of the wireless communications channel in multiply connected reverberant spaces. The model equations can be solved numerically for any number of cavities and for any level (weak or strong) of coupling between the cavities. The wireless channel properties investigated in this paper include power delay profile, rms time delay spread, coherence bandwidth, average received channel power, signal-strength fading statistics, and maximum field environment. Measured and modeled channel properties are presented for two and three coupled, highly multipath spaces. These channel model parameters aid in making electromagnetic compatibility assessments of wireless network emissions in these environments.
机译:当前,射频无线通信和传感器网络正被部署在包括电磁耦合的封闭反射空间的结构中。这种结构通常在航空,航运,汽车和仓储行业中发现。在本文中,提出了一个通用的时变模型,该模型的解决方案直接提供了多重连接混响空间中无线通信信道的关键特性。对于任何数量的型腔以及型腔之间的任何耦合水平(弱或强),都可以用数学方法求解模型方程。本文研究的无线信道属性包括功率延迟曲线,均方根时间延迟扩展,相干带宽,平均接收信道功率,信号强度衰减统计数据和最大现场环境。给出了两个和三个耦合的高度多径空间的测量和建模通道属性。这些信道模型参数有助于对这些环境中的无线网络发射进行电磁兼容性评估。

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