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An Efficient Method of Power Spectral Density Estimation for On-Chip IR-UWB Transmitter Self-Calibration

机译:片上IR-UWB发射机自校准的功率谱密度估计的有效方法

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In ultra-wideband impulse radio communications, process, voltage, and temperature variations may impact the operation of emitters by modifying the emitted power spectral density. In order to compensate the impact of such variations and to respect the spectral emission masks, self-calibration systems able to estimate the output power spectral density have to be integrated in ultra-wideband impulse radio transmitters. In this paper, a new power spectral density estimation method for ultra-wideband impulse radio signals is presented. Unlike the discrete Fourier transform classically used to estimate the power spectral density, the proposed method, which is based on the measurement of the time varying envelope and instantaneous frequency of the emitted pulse, preserves a link between the time and the frequency domain thanks to a piece-wise approximation of these waveforms. This time-to-frequency link enables a straightforward pulse shape control by using simple control methods and allows to comply with spectral masks required by ultra-wideband communication regulations and standards such as the IEEE 802.15.4a. Thus, both envelope and instantaneous frequency extraction techniques are introduced for acquisition of these time domain waveforms in ultra-wideband impulse radio domain. The proposed techniques are validated and allow to consider future hardware implementation in order to build on-chip calibration systems for ultra-wideband transmitters.
机译:在超宽带脉冲无线电通信中,过程,电压和温度变化可能会通过修改发射的功率谱密度来影响发射器的运行。为了补偿这种变化的影响并尊重频谱发射掩模,必须将能够估计输出功率频谱密度的自校准系统集成到超宽带脉冲无线电发射机中。本文提出了一种新的超宽带脉冲无线电信号功率谱密度估计方法。与传统上用于估计功率谱密度的离散傅立叶变换不同,该方法基于时变包络和发射脉冲的瞬时频率的测量结果,由于采用了以下方法,因此保留了时域和频域之间的链接:这些波形的逐段逼近。这种时频链接可通过使用简单的控制方法实现直接的脉冲形状控制,并符合超宽带通信法规和标准(例如IEEE 802.15.4a)所要求的频谱模板。因此,引入了包络和瞬时频率提取技术以在超宽带脉冲无线电域中获取这些时域波形。所提出的技术经过验证,可以考虑将来的硬件实现,以便为超宽带发射机构建片上校准系统。

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