DocumentCode
2005618
Title
Improved UWB pulse shaping method based on Gaussian derivatives
Author
Li Li ; Pei Wang ; Xiao-dong Wu ; Jiakai Zhang
Author_Institution
Coll. of Inf., Mech. & Electr. Eng, Shanghai Normal Univ., Shanghai, China
fYear
2011
fDate
14-16 Nov. 2011
Firstpage
438
Lastpage
442
Abstract
In order to maximize the power spectrum utilization (PSU) while satisfying the Federal Communications Commission (FCC) emission mask, an improved two-stage ultra-wideband (UWB) pulse shaping method based on Gaussian derivatives is presented. Firstly, sub-pulses are designed by optimal combination of Gaussian derivatives over specific sub bands with the condition of maximizing the PSU allowed by emission mask. Secondly, the full band UWB pulse is shaped by the combination of the outputs of parallel band-pass filters (BPFs) bank with the sub pulses as inputs to these BPFs. Simulation results show that the UWB pulse shaped not only meets the FCC emission mask in full band, but also uses the limited power capacity more effectively, improving the PSU rate to enhance the performance of received UWB signal processing possibly. The proposed idea of sub band pulse design may be useful in narrow band interference mitigation as well in application of UWB technology.
Keywords
band-pass filters; interference (signal); pulse shaping; signal processing; ultra wideband communication; BPF bank; FCC emission mask; Federal Communications Commission; Gaussian derivatives; PSU; UWB pulse shaping method; limited power capacity; narrow band interference mitigation; optimal combination; parallel band-pass filters; power spectrum utilization; received UWB signal processing possibly; sub band pulse design; sub-pulses; two-stage ultra-wideband pulse shaping method; Power spectrum utilization; Ultra-wide band; emission limits; pulse shaping;
fLanguage
English
Publisher
iet
Conference_Titel
Wireless Mobile and Computing (CCWMC 2011), IET International Communication Conference on
Conference_Location
Shanghai
Type
conf
DOI
10.1049/cp.2011.0925
Filename
6194880
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