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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Compendious Concurrent Dual-Band Receiver Based on Multiport Interferometric Architecture
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Compendious Concurrent Dual-Band Receiver Based on Multiport Interferometric Architecture

机译:基于多端口干涉架构的简介并发双频接收器

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A distinct usage of the conventional multiport architecture is introduced in this work to explore the compendious scheme of a concurrent dual-band interferometric receiver. Dual RF signals at individual frequency channels are received simultaneously, and only a single low-power local oscillator (LO) source is deployed for frequency translation or conversion to the same intermediate frequency (IF) band. Although these signals are spectrally overlapped, they can be extracted with a simple and efficient algorithm with good channel-to-channel isolations. Compared to the conventional multiport configuration, the power detectors are replaced by analog-to-digital converters (ADCs) to process the signals in this proposed scheme. The underlying physics of the concurrent receiving operation is explained and derived analytically. Some experiments are also presented to investigate various performance indexes, including signal linearity, noise behavior, interchannel interference, and so forth. Lastly, multiple M-quadratic-amplitude modulation (QAM) signals are applied to evaluate the communication behavior of the proposed receiver architecture. Distortions due to frequency drift, channel imbalance, and in-phase and quadrature (IQ) imbalance are studied, and bit-error-rates (BER) are measured and compared with their theoretical counterparts. All obtained results confirm that the proposed interferometric receiver provides good communication performances.
机译:在这项工作中介绍了传统多端口架构的独特用途,以探索并发双频带干涉接收器的简化方案。同时接收各个频率信道处的双RF信号,并且仅将单个低功耗本地振荡器(LO)源部署用于频率转换或转换为相同的中频(IF)频带。尽管这些信号是频谱重叠的,但是它们可以用具有良好通道到信道隔离的简单且有效的算法提取。与传统的多端口配置相比,功率检测器被模数转换器(ADC)所取代以在该提出的方案中处理信号。并发接收操作的底层物理学解析并分析地派生。还提出了一些实验来研究各种性能指标,包括信号线性,噪声行为,Interchannel干扰等。最后,应用多个M-二次幅度调制(QAM)信号来评估所提出的接收器架构的通信行为。研究引起的频率漂移,通道不平衡和同相和正交(IQ)不平衡,测量误码率(BER)并与其理论对应物进行比较。所有获得的结果证实,所提出的干涉式接收器提供良好的通信性能。

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