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Digitally Enhanced Wideband I/Q Downconversion Receiver With 2-Channel Time-Interleaved ADCs

机译:具有2通道时间交错ADC的数字增强型宽带I / Q下变频接收器

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The interesting concept of employing in-phase/quadrature (I/Q) downconversion together with time-interleaved analog-to-digital converters allows digitizing very wide instantaneous radio-frequency (RF) bandwidths (BWs) and grants enhanced flexibility in accessing and processing the RF spectrum. Such a structure also inevitably suffers from performance degradation due to the analog components' nonidealities, e.g., frequency response mismatches (FRMs), that ultimately lead to spurious mismatch components that limit the system's dynamic range. Available solutions developed for I/Q mismatches or time-interleaving mismatches alone are not compatible for correcting the FRM spurs in such joint I/Q time-interleaved converter (IQ-TIC) architecture. This brief proposes novel blind FRM identification and correction solutions that are able to suppress all the associated spurs in the considered wideband IQ-TIC architecture. The proposed digital correction solutions are tested and verified using measured hardware data obtained from an experimental platform, exhibiting good FRM spur correction performance with instantaneous BW on the order of 800 MHz. These developments pave the way toward 5G radio communication devices and systems where instantaneous BWs on the order of 1 GHz are envisioned at centimeter- and millimeter-wave frequency bands.
机译:将同相/正交(I / Q)下变频与时间交织的模数转换器一起使用的有趣概念允许数字化非常宽的瞬时射频(RF)带宽(BW),并提高了访问和处理的灵活性射频频谱。由于模拟部件的非理想性,例如频率响应失配(FRM),这种结构也不可避免地遭受性能下降,最终导致导致虚假失配的部件限制了系统的动态范围。仅针对I / Q失配或时间交织失配而开发的可用解决方案与校正此类联合I / Q时交交错转换器(IQ-TIC)体系结构中的FRM杂散不兼容。本简介提出了新颖的FRM盲目识别和校正解决方案,它们能够抑制所考虑的宽带IQ-TIC体系结构中的所有相关杂散。所提出的数字校正解决方案使用从实验平台获得的测量硬件数据进行了测试和验证,具有良好的FRM杂散校正性能,瞬时带宽约为800 MHz。这些发展为5G无线电通信设备和系统铺平了道路,这些设备和系统可以在厘米波和毫米波频段上实现1 GHz量级的瞬时BW。

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