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Non-idealities compensation in full-digital receivers with application to Ultra-Wide Band

机译:全数字接收机中的非理想补偿及其在超宽带中的应用

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Nowadays many transceivers adhere to full-digital design principles, with the basic operations performed in the analog domain (filtering, down-conversion) and the whole remaining processing postponed to the digital domain (including matched filtering and synchronization). Though the operations in the analog front-end are ideally reversible, hence no signal degradation should occur before the analog-to-digital conversion (thus preserving the information integrity) however the intrinsic non-idealities in the circuitry may introduce a certain level of distortion. In this paper we provide a simple and flexible approach for the compensation of these effects. We derive useful formulas for obtaining a digital compensation filter by means of a direct transformation of the analog system coefficients. This allows to easily perform the compensation in the digital domain via Fast Fourier Transform (FFT). To illustrate the procedure, the case-study of a real Ultra-Wide Band (UWB) receiver is addressed. Numerical results are shown and sample code is also provided for an easy implementation.
机译:如今,许多收发器都遵循全数字设计原则,其在模拟域中执行的基本操作(滤波,下变频)和整个剩余处理都推迟到了数字域(包括匹配的滤波和同步)。尽管模拟前端的操作在理想情况下是可逆的,所以在模数转换之前不应发生信号降级(从而保持信息完整性),但是电路中固有的非理想性可能会导致一定程度的失真。在本文中,我们提供了一种简单而灵活的方法来补偿这些影响。我们通过对模拟系统系数的直接转换来得出用于获得数字补偿滤波器的有用公式。这允许通过快速傅立叶变换(FFT)在数字域中轻松执行补偿。为了说明该过程,解决了实际超宽带(UWB)接收器的案例研究。显示了数值结果,并提供了示例代码以方便实现。

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