Title :
An Extension of DTFT-Based Sinusoidal Signal Time Delay Estimation Algorithm for Linear Time-Varying Situation
Author :
Yi Huang ; Aiqun Hu ; Wei Liu ; Tao Li ; Shengdong Xie
Author_Institution :
Sch. of Inf. Sci. & Eng., Southeast Univ., Nanjing, China
Abstract :
To estimate the propagation delay between two noisy sinusoidal signals with known same frequency but different amplitudes, a time delay estimation algorithm based on DTFT is extended in the paper. By using sliding window recursive discrete time Fourier transform (SWRDTFT), the DTFT-based algorithm is able to be used for tracking time delay of sinusoidal signal. This algorithm does not require initial value, which is rather different from traditional adaptive tracking algorithms. By choosing the window size N, the time delay in center of the window is determined. Theoretical derivation shows that this algorithm can achieve approximately Cramer-Rao lower bound (CRLB) for complex sinusoidal signal and asymptotically achieve CRLB for real sinusoidal signal in the sense of N size window under slowly linear time-varying scenario. Simulations results confirm the efficiency and superior performance of the DTFT-based algorithm as compared to the existing filter-based approaches.
Keywords :
delay estimation; discrete Fourier transforms; signal processing; CRLB; Cramer-Rao lower bound; DTFT-based sinusoidal signal time delay estimation algorithm; SWRDTFT; adaptive tracking algorithms; complex sinusoidal signal; filter-based approach; linear time-varying situation; noisy sinusoidal signals; propagation delay estimation; sliding window recursive discrete time Fourier transform; time delay estimation algorithm; time delay tracking; Delay effects; Delay estimation; Estimation; Frequency estimation; Least squares approximations; Time-frequency analysis; Adaptive tracking; Sinusoidal signal; Time delay estimation;
Conference_Titel :
Green Computing and Communications (GreenCom), 2013 IEEE and Internet of Things (iThings/CPSCom), IEEE International Conference on and IEEE Cyber, Physical and Social Computing
Conference_Location :
Beijing
DOI :
10.1109/GreenCom-iThings-CPSCom.2013.106