用于无线传感器网络精确定位的高压高效率超宽带脉冲发生器

M. Ansari, C. Law
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引用次数: 3

摘要

提出了一种用于无线传感器网络系统中移动目标精确定位的高电压、高效率超宽带高斯脉冲发生器。所提出的用于UWB脉冲发生器的微波单片集成电路(mmic)在0.5 MHz脉冲重复频率下的峰值输出功率为25.7dBm,总功耗为0.9 mW。该脉冲发生器效率为19.9%。高输出功率是通过两个晶体管串联使用来克服晶体管的击穿现象以获得更高的输出电压而实现的。电路仿真采用2µm HBT ADS模型。生成脉冲的功率谱充分利用了FCC峰值功率限制频谱掩模。产生的超宽带脉冲以4.2 GHz为中心,峰对峰电压为12.2 V,负载为50欧姆。所生成的脉冲包络在半最大值处的全宽度为0.85 nsec。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High voltage high efficiency UWB pulse generator for precision localization wireless sensor network
A high voltage, high efficiency ultra-wideband (UWB) Gaussian pulse generator for the precision localization of mobile objects in wireless sensor network system is presented. The proposed microwave monolithic integrated circuit (mmic) for the UWB pulse generator has peak output power of 25.7dBm with 0.9 mW total power consumption at 0.5 MHz pulse repetition frequency. The proposed pulse generator efficiency is 19.9%. The high output power is achieved by overcoming the breakdown phenomena of the transistor for higher output voltage by using two transistors in series. The 2µm HBT ADS model is used for the circuit simulation. The power spectrum of the generated pulse fully utilizes the FCC peak power limit spectrum mask. The generated UWB pulse is centered at 4.2 GHz with peak-to-peak voltage of 12.2 V into a 50 ohms load. The generated pulse envelop has full width at half maxima of 0.85 nsec.
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