中国邮电高校学报(英文) ›› 2007, Vol. 14 ›› Issue (2): 99-102.doi: TN914.3

• Artificial Intelligence • 上一篇    下一篇

Generation of orthogonal UWB shaping pulses based on compressed chirp signal

车树良;张洪欣;吕英华;贺鹏飞   

  1. University for Nationalities
  • 收稿日期:2006-09-04 修回日期:1900-01-01 出版日期:2007-06-30

Generation of orthogonal UWB shaping pulses based on compressed chirp signal

CHE Shu-liang; ZHANG Hong-xin;LU Ying-hua;HE Peng-fei   

  1. University for Nationalities
  • Received:2006-09-04 Revised:1900-01-01 Online:2007-06-30

摘要:

This study investigates a novel method to numerically generate orthogonal ultrawide band (UWB) shaping pulses based on compressed chirp signal. First, a pulse template with less than 1 ns duration time, which is used to construct a Hermitian matrix, is produced with a compressed chirp pulse. Sub-nanosecond orthogonal pulses are then generated for UWB by using the Hermitian matrix eigenvectors. The simulation results show that the power spectral density distribution of the UWB shaping pulses met the constraint of Federal communications commissions (FCC) spectral mask. The shaping pulses not only have higher spectrum utilization ratio and very short time duration but also have excellent autocorrelation and cross-correlation properties, which is an advantage to reduce the interference between multiusers. Especially, a method to produce sub-nanosecond orthogonal UWB shaping pulses by using a relatively longer duration chirp signal is presented.

关键词:

UWB;shaping pulse; spectrum utilization ratio;interference between multiusers

Abstract:

This study investigates a novel method to numerically generate orthogonal ultrawide band (UWB) shaping pulses based on compressed chirp signal. First, a pulse template with less than 1 ns duration time, which is used to construct a Hermitian matrix, is produced with a compressed chirp pulse. Sub-nanosecond orthogonal pulses are then generated for UWB by using the Hermitian matrix eigenvectors. The simulation results show that the power spectral density distribution of the UWB shaping pulses met the constraint of Federal communications commissions (FCC) spectral mask. The shaping pulses not only have higher spectrum utilization ratio and very short time duration but also have excellent autocorrelation and cross-correlation properties, which is an advantage to reduce the interference between multiusers. Especially, a method to produce sub-nanosecond orthogonal UWB shaping pulses by using a relatively longer duration chirp signal is presented.

Key words:

UWB; shaping pulse; spectrum utilization ratio;interference between multiusers

中图分类号: