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An enhanced-gain analog correlator for sensitivity improvement in coherent impulse radio receivers

机译:用于相干脉冲无线电接收机中灵敏度提高的增强增益模拟相关器

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A circuit technique called template range enhancement (TRE) is proposed for analog correlators employed in ultra-wideband coherent impulse radio (IR-UWB) receivers. In these receivers, the analog correlator multiplies the received signal with a template signal to detect the incoming pulses. Compared to other IR-UWB architectures, the coherent architecture has better signal-to-noise ratio (SNR) performance. To reduce the noise effect of baseband circuits in this receiver type, gain of the front-end blocks, which consists of a low noise amplifier and the analog correlator, should be increased. The conventional analog correlators, which are designed based on Gilbert cell topology, cannot provide sufficient gain for this purpose. The proposed TRE technique enhances the front-end gain of the receiver and improves the receiver sensitivity. A coherent receiver in 3.1-10-GHz bandwidth is designed and simulated based on this technique in a 0.18μm CMOS technology. Simulation results show that the TRE technique increases the sensitivity by about 6dB at 10 bit error rate (BER) without consuming additional power. The receiver achieves a pulse rate of 500 Mbps with an energy efficiency of 69 pJ/pulse at 1.8 V supply.
机译:对于超宽带相干脉冲无线电(IR-UWB)接收机中采用的模拟相关器,提出了一种称为模板范围增强(TRE)的电路技术。在这些接收机中,模拟相关器将接收到的信号与模板信号相乘,以检测输入脉冲。与其他IR-UWB架构相比,相干架构具有更好的信噪比(SNR)性能。为了减少这种接收器类型的基带电路的噪声影响,应增加由低噪声放大器和模拟相关器组成的前端模块的增益。基于吉尔伯特单元拓扑设计的常规模拟相关器无法为此目的提供足够的增益。所提出的TRE技术增强了接收机的前端增益并提高了接收机灵敏度。基于此技术,在0.18μmCMOS技术中设计并仿真了3.1-10-GHz带宽的相干接收机。仿真结果表明,TRE技术在10位误码率(BER)的情况下将灵敏度提高了约6dB,而不会消耗额外的功率。在1.8 V电源下,接收器达到500 Mbps的脉冲速率,能量效率为69 pJ /脉冲。

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