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Ear-to-Ear On-Body Channel Model for Hearing Aid Applications

机译:助听器的入耳式体内通道模型

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The deterministic ear-to-ear on-body channel is modeled by the use of a number of elliptically shaped paths. The semi-major axes of the elliptically shaped paths are adjusted such that they trace the outline of the head. The path gain converges when the number of paths is increased, such that the head is modeled more accurately, and the radiation pattern is sampled in more points. The model is able to take the on-body radiation pattern of the antenna, as well as arbitrary head contours into account. The model is validated by the use of measurements and Ansys HFSS simulations on the specific anthropomorphic mannequin (SAM) head. The model is used with a genetic algorithm in order to synthesize a radiation pattern that is optimal for use with the ear-to-ear on-body channel. The radiation pattern is synthesized in terms of the spherical wave expansion coefficients of the hypothetical small antenna. The variation in the ear-to-ear on-body path gain, due to perturbations of the shape of the nominal SAM head, is studied by the use of a Monte Carlo analysis. The analysis revealed that the path gain that is obtained with a single on-body radiation pattern may vary up to 25 dB.
机译:确定性的耳对身体通道是通过使用许多椭圆形路径建模的。调整椭圆形路径的半长轴,使其跟踪头部轮廓。当增加路径数量时,路径增益会收敛,从而可以更精确地建模头部,并在更多点采样辐射方向图。该模型能够考虑天线的人体辐射图以及任意的头部轮廓。该模型通过在特定拟人模型(SAM)头上使用测量和Ansys HFSS仿真进行验证。该模型与遗传算法一起使用,以便合成最适合与耳对耳的人体通道配合使用的辐射图。根据假设的小天线的球面波膨胀系数合成辐射方向图。通过使用蒙特卡洛分析,研究了由于标称SAM头形状的扰动而引起的人耳间路径增益的变化。分析显示,通过单个人体辐射图获得的路径增益可能变化高达25 dB。

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