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用于下一代通信系统的最小非线性失真可重构天线设计。

Design of Minimum Nonlinear Distortion Reconfigurable Antennas for Next-Generation Communication Systems.

作者信息

Ramírez Arroyave Germán Augusto, Barlabé Antoni, Pradell Lluís, Araque Quijano Javier Leonardo, Cetiner Bedri A, Jofre-Roca Luis

机构信息

Department of Signal Theory and Communications (TSC), School of Telecommunications Engineering, Universitat Politècnica de Catalunya (UPC), Campus Nord, 08034 Barcelona, Spain.

Department of Electrical and Electronic Engineering (DIEE), Faculty of Engineering, Universidad Nacional de Colombia, Ciudad Universitaria, Bogotá 111321, Colombia.

出版信息

Sensors (Basel). 2021 Apr 6;21(7):2557. doi: 10.3390/s21072557.

Abstract

Nonlinear effects in the radio front-end can degrade communication quality and system performance. In this paper we present a new design technique for reconfigurable antennas that minimizes the nonlinear distortion and maximizes power efficiency through the minimization of the coupling between the internal switching ports and the external feeding ports. As a nonlinear design and validation instance, we present the nonlinear characterization up to 50 GHz of a PIN diode commonly used as a switch for reconfigurable devices in the microwave band. Nonlinear models are extracted through X-parameter measurements supported by accurate calibration and de-embedding procedures. Nonlinear switch models are validated by S-parameter measurements in the low power signal regime and by harmonic measurements in the large-signal regime and are further used to predict the measured nonlinearities of a reconfigurable antenna. These models have the desired particularity of being integrated straightforwardly in the internal multi-port method formulation, which is used and extended to account for the power induced on the switching elements. A new figure of merit for the design of reconfigurable antennas is introduced-the power margin, that is, the power difference between the fed port and the switching elements, which combined with the nonlinear load models directly translates into nonlinearities and power-efficiency-related metrics. Therefore, beyond traditional antenna aspects such as port match, gain, and beam orientation, switch power criteria are included in the design methodology. Guidelines for the design of reconfigurable antennas and parasitic layers of minimum nonlinearity are provided as well as the inherent trade-offs. A particular antenna design suitable for 5G communications in the 3.5 GHz band is presented according to these guidelines, in which the specific switching states for a set of target performance metrics are obtained via a balancing of the available figures of merit with multi-objective separation criteria, which enables good control of the various design trade-offs. Average Error Vector Magnitude (EVM) and power efficiency improvement of 12 and 6 dB, respectively, are obtained with the application of this design approach. In summary, this paper introduces a new framework for the nonlinear modeling and design of reconfigurable antennas and provides a set of general-purpose tools applicable in cases beyond those used as examples and validation in this work. Additionally, the use of these models and guidelines is presented, demonstrating one of the most appealing advantages of the reconfigurable parasitic layer approach, their low nonlinearity.

摘要

射频前端中的非线性效应会降低通信质量和系统性能。在本文中,我们提出了一种用于可重构天线的新设计技术,该技术通过最小化内部开关端口与外部馈电端口之间的耦合来最小化非线性失真并最大化功率效率。作为一个非线性设计和验证实例,我们展示了常用于微波频段可重构器件开关的PIN二极管高达50 GHz的非线性特性。通过精确校准和去嵌入程序支持的X参数测量来提取非线性模型。非线性开关模型通过低功率信号状态下的S参数测量和大信号状态下的谐波测量进行验证,并进一步用于预测可重构天线的测量非线性。这些模型具有可以直接集成到内部多端口方法公式中的理想特性,该公式用于并扩展以考虑开关元件上感应的功率。引入了一种用于可重构天线设计的新优值——功率裕度,即馈电端口与开关元件之间的功率差,它与非线性负载模型相结合可直接转化为与非线性和功率效率相关的指标。因此,除了传统的天线方面,如端口匹配、增益和波束方向外,开关功率标准也包含在设计方法中。提供了可重构天线和最小非线性寄生层的设计指南以及固有的权衡。根据这些指南,给出了一种适用于3.5 GHz频段5G通信的特定天线设计,其中通过将可用优值与多目标分离标准进行平衡来获得一组目标性能指标的特定开关状态,这使得能够很好地控制各种设计权衡。应用这种设计方法分别获得了12 dB和6 dB的平均误差向量幅度(EVM)和功率效率提升。总之,本文介绍了一种用于可重构天线非线性建模和设计的新框架,并提供了一组通用工具,适用于超出本文用作示例和验证的情况。此外,展示了这些模型和指南的使用,证明了可重构寄生层方法最吸引人的优点之一,即其低非线性。

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