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Design of a ring resonator-based optical beam forming network for phased array receive antennas

机译:基于环形谐振器的相控阵接收天线光束形成网络的设计

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摘要

A novel squint-free ring resonator-based optical beam forming network (OBFN) for phased array antennas (PAA) is proposed. It is intended to provide broadband connectivity to airborne platforms via geostationary satellites. In this paper, we present the design of the OBFN and its control system. Our goal is to deliver large bandwidth Ku-band connectivity between antennas, mount conformal to the airplane fuselage and on a geostationary satellite, respectively.This way it would be possible to bring live DVB-S television to airplane passengers. In this paper, we present recent research conducted on a 4 × 1 ring resonator-based OBFN test set-up. This OBFN has four optical input ports and one optical output port. It is tuned to provide the desired signal combination with optimal constructive interference between the modulated input signals from the PAA. Therefore, combining circuitry and delay elements are required. The OBFN is tuned by electrically heating tunable true time delay (TTD) elements. These are built using optical ring resonators (ORRs). By cascading multiple ORRs with different resonance frequencies, it is possible to create a TTD with a large bandwidth. Optical beam forming is used because it provides advantages over traditional beam forming methods. These advantages are: large bandwidth, EMI resistance, and, when integrated onto a single chip, compactness and low costs. The OBFN is created using planar optical waveguide technology and consists of the following building blocks: waveguides, Mach-Zehnder interferometers, (MZIs) couplers and ORRs. The tuning of the OBFN is done by an electronic control system using a microcontroller. Communication with a PC is possible using USB. To our knowledge, this is the first integrated ORR-based OBFN circuit for PAA satellite reception.
机译:提出了一种新型的无斜视环形谐振器的相控阵天线(PAA)波束形成网络(OBFN)。它旨在通过对地静止卫星为机载平台提供宽带连接。在本文中,我们介绍了OBFN及其控制系统的设计。我们的目标是在天线之间提供大带宽的Ku波段连接,分别贴合于飞机机身和对地静止卫星上,从而可以将DVB-S直播电视带给飞机乘客。在本文中,我们目前对基于4×1环形谐振器的OBFN测试装置进行了研究。该OBFN具有四个光输入端口和一个光输出端口。对其进行了调整,以提供所需的信号组合,并在来自PAA的调制输入信号之间提供最佳的建设性干扰。因此,需要组合电路和延迟元件。 OBFN通过电加热可调谐真实时间延迟(TTD)元件进行调谐。这些是使用光学环形谐振器(ORR)构建的。通过级联具有不同谐振频率的多个ORR,可以创建具有大带宽的TTD。使用光束成形是因为它具有优于传统光束成形方法的优点。这些优势包括:大带宽,抗EMI,以及集成到单个芯片上时的紧凑性和低成本。 OBFN使用平面光波导技术创建,并由以下构件组成:波导,马赫曾德尔干涉仪,(MZI)耦合器和ORR。 OBFN的调谐是通过使用微控制器的电子控制系统完成的。使用USB可以与PC通信。据我们所知,这是用于PAA卫星接收的第一个集成的基于ORR的OBFN电路。

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