首页> 外国专利> BIDIRECTIONAL OPTICAL-CARRYING MICROWAVE RESONANCE SYSTEM BASED ON CIRCULATOR STRUCTURE AND METHOD FOR DETECTING ANGULAR VELOCITY BY SAID SYSTEM

BIDIRECTIONAL OPTICAL-CARRYING MICROWAVE RESONANCE SYSTEM BASED ON CIRCULATOR STRUCTURE AND METHOD FOR DETECTING ANGULAR VELOCITY BY SAID SYSTEM

机译:基于循环器结构的双向光承载微波谐振系统及利用said系统检测角速度的方法

摘要

A bidirectional optical-carrying microwave resonance system based on a circulator structure and a method for detecting angular velocity by said system. A high-stability optical-carrying microwave of which polarization states in forward and reverse directions are perpendicular is generated in an optical fiber ring by utilizing a regenerative mold locking technology, a cavity length control technology, and a polarization state separation technology, and the optical-carrying microwave is used for measuring a rotational angular velocity. The circulator structure is adopted and the bidirectional optical-carrying microwave resonance is achieved by means of a bidirectional regenerative mode locking technology. A reciprocal bidirectional optical-carrying microwave resonance system is achieved on the basis of a non-reciprocal error elimination technology of a wide-spectrum optical interferometer. The polarization state separation technology is adopted to achieve dual-wavelength separation of optical signals and the perpendicular polarization state is adopted for opposite transmission in a sensitive ring, so that the detection capability of the sensitive ring is improved. The cavity length control technology is adopted to lock a microwave oscillation frequency in one direction to a high-stability standard-time reference source, so that a relative cavity length of an optical resonant cavity is stabilized. The system has the characteristics of high practicability, high measurement precision and the like.
机译:一种基于环行器结构的双向光传输微波共振系统以及一种通过该系统检测角速度的方法。利用再生锁模技术,型腔长度控制技术和偏振态分离技术,在光纤环中产生了沿正反方向偏振态垂直的高稳定性载光微波,并利用光携带微波用于测量旋转角速度。采用环行器结构,并通过双向再生锁模技术实现了双向载光微波谐振。在广谱光学干涉仪的无倒差消除技术的基础上,实现了双向双向载波微波谐振系统。采用偏振态分离技术实现光信号的双波长分离,在敏感环中采用垂直偏振态进行相对传输,提高了敏感环的检测能力。采用腔长控制技术,将一个方向的微波振荡频率锁定在高稳定性标准时间参考源上,使光谐振腔的相对腔长稳定。该系统具有实用性强,测量精度高等特点。

著录项

  • 公开/公告号WO2020087423A1

    专利类型

  • 公开/公告日2020-05-07

    原文格式PDF

  • 申请/专利权人 ZHEJIANG UNIVERSITY;

    申请/专利号WO2018CN113213

  • 申请日2018-10-31

  • 分类号G01C19/66;

  • 国家 WO

  • 入库时间 2022-08-21 11:11:30

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