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An extension of the RiMAX multipath estimation algorithm for ultra-wideband channel modeling

机译:超宽带信道建模Rimax多径估计算法的扩展

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This work presents an extension of the high-resolution RiMAX multipath estimation algorithm, enabling the analysis of frequency-dependent propagation parameters for ultra-wideband (UWB) channel modeling. Since RiMAX is a narrowband algorithm, it does not account for the frequency-dependency of the radio channel or the environment. As such, the impact of certain materials in which these systems operate can no longer be considered constant with respect to frequency, preventing an accurate estimation of multipath parameters for UWB communication. In order to track both the specular and dense multipath components (SMC and DMC) over frequency, an extension to the RiMAX algorithm was developed that can process UWB measurement data. The advantage of our approach is that geometrical propagation parameters do not appear or disappear from one sub-band onto the next. The UWB-RiMAX algorithm makes it possible to re-evaluate common radio channel parameters for DMC in the wideband scenario, and to extend the well-known deterministic propagation model comprising of SMC alone, towards a more hybrid model containing the stochastic contributions from the DMC's distributed diffuse scattering as well.Our algorithm was tested with synthetic radio channel models in an indoor environment, which show that our algorithm can match up to 99% of the SMC parameters according to the multipath component distance (MCD) metric and that the DMC reverberation time known from the theory of room electromagnetics can be estimated on average with an error margin of less than 2 ns throughout the UWB frequency band. We also present some preliminary results in an indoor environment, which indicate a strong presence of DMC and thus diffuse scattering. The DMC power represents up to 50% of the total measured power for the lower UWB frequencies and reduces to around 30% for the higher UWB frequencies.
机译:该工作提出了高分辨率Rimax多径估计算法的扩展,从而可以分析超宽带(UWB)信道建模的频率相关传播参数。由于RIMAX是窄带算法,因此它不考虑无线电信道或环境的频率依赖性。因此,某些材料的影响,其中这些系统的操作不能相对于频率不再被认为是恒定的,防止对UWB通信的多径参数进行准确估计。为了在频率上跟踪镜面和密集的多径分量(SMC和DMC),开发了对RIMAX算法的扩展,可以处理UWB测量数据。我们的方法的优点是几何传播参数不会从一个子带出现或消失在下一个子带上。 UWB-RIMAX算法可以在宽带场景中重新评估DMC的常见无线电信道参数,并扩展单独包含SMC的众所周知的确定性传播模型,朝着含有DMC的随机贡献的更具混合模型。也是分布式漫射散射。我们的算法在室内环境中使用综合无线电信道模型进行了测试,表明我们的算法可以根据多径分量距离(MCD)度量和DMC混响的算法匹配高达99%的SMC参数。从房间电磁理论中已知的时间可以平均估计,在整个UWB频带中的误差余量小于2ns。我们还展示了在室内环境中的一些初步结果,表明DMC的强大存在,从而漫射散射。 DMC功率表示下UWB频率的总测量功率的总功率高达50%,并降低到较高UWB频率的约30%。

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