Orthogonal hermite functions based orthogonal pulse shaping method

Xuanli Wu, Xin Qiu, Xiaoyan Ning, Di Lin
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引用次数: 1

Abstract

Ultra-Wideband (UWB) communication has attracted more attentions due to its advantages in short range applications. As one of the key techniques in UWB systems, many pulse shaping methods have been proposed. The semi-definite programming (SDP) based pulse shaping method can obtain the pulse with highest power efficiency by far. However, an accurate timing of 40ps is required, and such requirement cannot be implemented precisely using modern hardware. Furthermore, the power efficiency of the second orthogonal pulse will be lower than the first pulse. To solve such problems, the linear combination of orthogonal Hermite functions is used in the SDP method and a modification method is then proposed to eliminate the direct current (DC) component. Simulation results show that orthogonal pulses without DC component can be obtained and the power efficiency of the obtained pulses are more than 80%. Moreover, the obtained orthogonal pulses will have shorter pulse duration due to the energy concentration property of orthogonal spaces.
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基于正交埃尔米特函数的正交脉冲整形方法
超宽带(UWB)通信由于其在短距离应用中的优势而受到越来越多的关注。脉冲整形作为超宽带系统的关键技术之一,已经提出了许多方法。基于半确定规划(SDP)的脉冲整形方法可以获得目前为止功率效率最高的脉冲。然而,需要精确的40ps定时,而这种要求无法使用现代硬件精确实现。此外,第二个正交脉冲的功率效率将低于第一个脉冲。为了解决这一问题,在SDP方法中采用正交Hermite函数的线性组合,并提出了一种修正方法来消除直流分量。仿真结果表明,可以得到不含直流分量的正交脉冲,得到的脉冲功率效率在80%以上。此外,由于正交空间的能量集中特性,得到的正交脉冲具有较短的脉冲持续时间。
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