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Achieving Spectrum Efficiency Through Signal Design for Ultra Wide Band Sensor Networks

机译:通过用于超宽频带传感器网络的信号设计实现频谱效率

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In this paper, a novel approach is presented for ultra wide band signal design. The bottom up approach designs the signals that utilize the ultra wide band spectrum efficiently. 1st-6th derivative Gaussian pulses are linearly combined using a particle swarm optimization algorithm to form one single pulse. A binary PSO determines the order of the derivative of the pulses that are combined. The continuous PSO determines the time duration and amplitudes for different pulses in the composite pulse. The power spectral density (PSD) of the resultant pulse conforms to the FCC spectral mask and effectively exploits the allowable bandwidth and power. The particle swarm optimization algorithm achieves multiple orthogonal pulses. The newly designed pulses achieve higher spectral efficiencies which is shown theoretically and in simulations. The proposed method presents a flexible and effective way for generating UWB pulses that satisfy the FCC mask. The method can be generalized to design UWB pulses for any given spectral mask.
机译:在本文中,提出了一种用于超宽带信号设计的新方法。自下而上的方法设计有效地利用超宽带谱的信号。使用粒子群优化算法进行线性组合第一-第6衍生高斯脉冲,形成一个单个脉冲。二进制PSO确定组合的脉冲衍生物的顺序。连续PSO确定复合脉冲中不同脉冲的时间持续时间和幅度。所得脉冲的功率谱密度(PSD)符合FCC光谱掩模,并有效地利用允许的带宽和功率。粒子群优化算法达到多个正交脉冲。新设计的脉冲实现了较高的光谱效率,从理论上和模拟中显示。该方法提出了一种用于产生满足FCC掩模的UWB脉冲的灵活有效的方法。该方法可以广泛地设计任何给定光谱掩模的UWB脉冲。

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