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Toward Wide-Band High-Resolution Analog-to-Digital Converters Using Hybrid Filter Bank Architecture

机译:使用混合滤波器组架构的宽带高分辨率模数转换器

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The paper presents the problem of design and simulation of a high-speed wide-band high-resolution analog-to-digital (ADC) converter working in a bandpass scenario. Such converters play a crucial role in software-defined radio and in cognitive radio technology. One way to circumvent the limits of today's ADC technologies is to split the analog input signal into multiple components and then sample them with ADCs in parallel. The two main split approaches, time interleaved and frequency splitting, can be modeled using a filter bank paradigm, where each of these two architectures requires a specific analysis for its design. In this research, the frequency splitting approach was implemented with the use of a hybrid filter bank ADC, which requires an output digital filter bank perfectly matched to the input analog filter bank. To achieve this end, an analog transfer function, together with an assumption of strictly band-limited input signal, has been used to design the digital filter bank so far. In contrast, the author proposes dropping the band-limit assumption and shows that the out-of-band input signal has to be taken into account when designing a hybrid filter bank.
机译:本文提出了在带通场景下工作的高速宽带高分辨率高分辨率模数(ADC)转换器的设计和仿真问题。这种转换器在软件定义的无线电和认知无线电技术中起着至关重要的作用。规避当今ADC技术局限性的一种方法是将模拟输入信号分成多个分量,然后使用ADC并行对其进行采样。可以使用滤波器组范例对两种主要的拆分方法(时间交错和频率拆分)进行建模,在这两种架构中,每种架构都需要对其设计进行特定分析。在这项研究中,采用混合滤波器组ADC实施了分频方法,这要求输出数字滤波器组与输入模拟滤波器组完美匹配。为了达到这个目的,到目前为止,已经使用模拟传递函数以及严格限制带宽的输入信号的假设来设计数字滤波器组。相比之下,作者提议放弃带宽限制假设,并表明在设计混合滤波器组时必须考虑带外输入信号。

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