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线性周期时变循环器的广义模型

A Generalized Model for Linear-Periodically-Time-Variant Circulators.

作者信息

Xu Changting, Piazza Gianluca

机构信息

QCT Stargate R&D - Santa Clara, Qualcomm Technologies, Inc., Santa Clara, CA, 95051, USA.

Department of Electrical and Computer Engineer, Carnegie Mellon University, Pittsburgh, PA, 15213, USA.

出版信息

Sci Rep. 2019 Jun 18;9(1):8718. doi: 10.1038/s41598-019-45013-5.

Abstract

Magnetic-free non-reciprocity based on linear-periodically-time-variant (LPTV) circuits has received significant research and commercial attention since it could revolutionize wireless communications. LPTV circuits are formed by two main components: linear-time-invariant (LTI) networks and periodically-modulated switches. The modulated switches are the core elements to break the reciprocity of LTI networks. To understand and design LPTV circulators, a universal and intuitive analytical model is required. However, such model does not exist as it is extremely challenging to accurately model and fully understand the LPTV behaviour of energy storage networks. To address this limitation, this work introduces a novel analysis method, which is broadly applicable to any LPTV networks, and validates it experimentally. The novelty of this methodology comes from two main contributions: (1) modelling of the switch as a resistor in parallel with a current-controlled current source; (2) the decomposition of the LPTV network into the linear superposition of two LTI networks. We apply this technique to model the exact behaviour of an LPTV circulator in the frequency domain.

摘要

基于线性周期时变(LPTV)电路的无磁非互易性因其可能彻底改变无线通信而受到了大量的研究和商业关注。LPTV电路由两个主要组件构成:线性时不变(LTI)网络和周期性调制开关。调制开关是打破LTI网络互易性的核心元件。为了理解和设计LPTV环行器,需要一个通用且直观的分析模型。然而,这样的模型并不存在,因为准确建模并完全理解储能网络的LPTV行为极具挑战性。为解决这一局限性,本研究引入了一种新颖的分析方法,该方法广泛适用于任何LPTV网络,并通过实验对其进行了验证。这种方法的新颖性主要体现在两个方面:(1)将开关建模为与电流控制电流源并联的电阻;(2)将LPTV网络分解为两个LTI网络的线性叠加。我们应用该技术在频域中对LPTV环行器的精确行为进行建模。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b429/6582053/34f1e71f4235/41598_2019_45013_Fig1_HTML.jpg

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