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A Novel Path-Loss Model for UWB Off-Body Propagation

机译:用于UWB Off-Body传播的新型路径损耗模型

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A novel, multi-slope dual breakpoint model for predicting path-loss in Ultra-Wideband (UWB) off-body communication channels, is proposed. This model is based on real-body measurements, carried out in the frequency range between 3.5GHz-6.5GHz, in an anechoic chamber. New parameters that describe this specific propagation environment are presented and evaluated. Results show that the first breakpoint point angle lies in the lit region of the transmitter and increases exponentially with distance until it rises to its threshold value. Based on this finding the near and far field areas for BAP (Body to Access Point) channels are defined. In addition, newly estimated decay coefficients suggest severe degradation as the receiver moves in between the two critical angles. Finally, techniques for model expansion in two dimensions are discussed.
机译:提出了一种用于预测超宽带(UWB)非身体通信通道中的路径损耗的新颖的多斜率双断点模型。该模型基于实体测量值,在AneChice室中的3.5GHz-6.5GHz之间的频率范围内进行。呈现和评估描述此特定传播环境的新参数。结果表明,第一断点角角位于发射器的点亮区域中,并且随着距离呈指数增加,直到它升高到其阈值。基于该发现,定义了BAP(正文到接入点)通道的近距离场区域。此外,当接收器在两个临界角之间移动时,新估计的衰减系数表明严重的劣化。最后,讨论了两个维度的模型扩展技术。

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