Maximum likelihood and orthogonal subspace based approach for improved IR-UWB channel estimation

R. Akbar, E. Radoi, S. Azou
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引用次数: 2

Abstract

Indoor propagation channel appears differently to ultrawideband (UWB) systems than it does to narrowband systems. UWB signals have very high temporal resolution ability and this implies a frequency-selective channel with rich multipath in practice. To capture the signal energy spread over a multipath environment, a Rake receiver consisting of multiple parallel correlators is used. Performance of UWB systems employing Rake receivers is highly dependent on synchronization and the channel estimation. The channel parameters are the attenuations and delays incurred by the UWB signal along the propagation paths. Maximum-Likelihood (ML) and orthogonal subspace (OS) based methods are considered to estimate the parameters for IEEE 802.15.3a standard indoor multipath channel model. Analyzing the limitations and benefits of these methods, a new combined approach is proposed to improve channel parameter estimation.
基于极大似然和正交子空间的改进IR-UWB信道估计方法
超宽带(UWB)系统的室内传播信道与窄带系统不同。超宽带信号具有很高的时间分辨能力,这意味着在实际应用中具有丰富多径的选频信道。为了捕获在多径环境中传播的信号能量,使用由多个并行相关器组成的Rake接收器。采用Rake接收机的UWB系统的性能高度依赖于同步和信道估计。信道参数是指超宽带信号在传播路径上产生的衰减和延迟。考虑了基于最大似然(ML)和正交子空间(OS)的方法来估计IEEE 802.15.3a标准室内多径信道模型的参数。分析了这些方法的局限性和优点,提出了一种新的组合方法来改进信道参数估计。
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