Design and simulation of pulse generator for Ultra Wide Band impulse radio

V. Vaithianathan, M. Shalini, J. Raja, R. Srinivasan
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引用次数: 1

Abstract

The demand for high data rate applications is on the rise in the recent years which is due to the rapid growth in wireless communication. The existing technologies like Wireless Fidelity (Wi-Fi) and Bluetooth cannot support such high data rates because of their narrowband and also they drain the battery at rapid pace. Ultra Wide Band (UWB) system differs from conventional narrow band system by transmitting short duration pulses occupying a large bandwidth with power levels almost comparable to that of the noise floor. Any communication technology which uses more than 500 MHz of bandwidth in the range of 3.1 to 10.6 GHz is defined as UWB. The transmitter side of impulse radio consists of pulse generator and modulator. The pulse generator is used to generate the required short pulse in the desired range of frequency. The proposed pulse generator is of pulse combination type impulse generator which is fully digital constructed with MOS Current Mode Logic (MCML) as Fine Delay Elements without using passive components thus reducing circuit complexity. The proposed pulse generator is designed using 90 nm technology with 1 V supply voltage. The maximum power consumption is 330 μW. The output voltage shape complies with FCC regulation.
超宽带脉冲无线电脉冲发生器的设计与仿真
近年来,由于无线通信的快速发展,对高数据速率应用的需求呈上升趋势。现有的无线保真(Wi-Fi)和蓝牙等技术无法支持如此高的数据速率,因为它们的带宽很窄,而且电池的消耗速度很快。超宽带(UWB)系统与传统窄带系统的不同之处在于,它发射的脉冲持续时间短,占用大带宽,其功率水平几乎与噪声底相当。任何在3.1至10.6 GHz范围内使用超过500mhz带宽的通信技术都被定义为超宽带。脉冲无线电的发射端由脉冲发生器和调制器组成。脉冲发生器用于在期望的频率范围内产生所需的短脉冲。该脉冲发生器为脉冲组合型脉冲发生器,采用MOS电流模式逻辑(MCML)作为精细延迟元件,不使用无源元件,实现了全数字化结构,降低了电路复杂度。该脉冲发生器采用90nm技术,电源电压为1v。最大功耗330 μW。输出电压形状符合FCC规定。
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