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On the Performance of SAGE Algorithm for ToA Estimation in Dual-Band OFDM Systems

机译:对双频频段探测的SAGE算法性能研究

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This paper discusses the use of the Space-Alternating Generalized Expectation-maximization (SAGE) algorithm for Time of Arrival (ToA) estimation in Orthogonal Frequency Division Multiplexing (OFDM) systems. This algorithm, which is an extension of the expectation-maximization approach, can exploit the intrinsic properties of a multi-carrier OFDM system to achieve the estimation of a number of parameters of each incoming signal replica, such as its amplitude, ToA, Doppler shift, and angle of arrival. The SAGE method can also be easily tailored to estimate only a desired subset of these parameters. Accordingly, this study focuses on the sole ToA estimation, but extending the SAGE functionalities to dual-band OFDM systems. This extension is achieved by exploiting the availability at the receiver of more than one band from the same transmitter, and combining the derived channel information to increase the bandwidth available for estimation. It will be shown that, in highly correlated scenarios, the performance of the SAGE algorithm for ToA estimation in a dual-band system is comparable to that of a single-band system with equivalent total bandwidth.
机译:本文讨论了正交频分复用(OFDM)系统中使用的空间交替广义期望最大化(SAGE)算法的到达时间(TOA)估计的时间。该算法,这是期望最大化方法的延伸,可以利用一种多载波OFDM系统的固有特性,以实现一个数的每个输入信号复制品的参数,例如其幅值的估计,的ToA,多普勒频移和到达角。该SAGE方法也可以容易地适合于仅估计这些参数的所期望的子集。因此,本研究的重点是唯一的TOA估计,但延长了SAGE功能到双频段OFDM系统。此扩展是通过在一个以上的频带的来自相同发射机的接收机利用的可用性,以及组合所述导出的信道信息,以增加可用于估计的带宽来实现的。将示出的是,在高度相关的情况下,在一个双频带系统,用于TOA估计的SAGE算法的性能比得上单波段系统具有同等的总带宽。

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