收藏本站 English
  • 首页
  • 设施概况
    1. 设施简介
    2. 装置介绍
    3. 组织架构
    4. 设施建设队伍
  • 设施建设
    1. 建设进展
    2. 研究成果
    3. 学术交流
  • 人才招聘
    1. 人才招聘告示
  • 科普宣传
    1. 科普视频
    2. 科普文章
  • OA办公
  • 首页
  • 设施概况
    • 返回
    • 设施简介
    • 装置介绍
    • 组织架构
    • 设施建设队伍
  • 设施建设
    • 返回
    • 建设进展
    • 研究成果
    • 学术交流
  • 人才招聘
    • 返回
    • 人才招聘告示
  • 科普宣传
    • 返回
    • 科普视频
    • 科普文章
  • OA办公

研究成果

    研究成果

    当前位置: 首页  -  研究成果  -  正文

    A low frequency horizontal active vibration

    isolation bench for testing the performance of high-

    precision space inertial sensors

    B X Yang, L Liu ∗ , S C Wu, H Y Li and Z B Zhou ∗

    High-precisionspace inertial sensors are one of the most importantpayloads in satelliteEarth’sgravitymeasurementandspace-basedgravitationalwavedetection due to their extremely high sensitivity. However, seismic noise affects its terrestrial-basedperformancevalidation,so that it is verysignificant to develop low frequency horizontal vibration isolation system to suppress the impact of seismic noise. In this article, a horizontal active vibration isolation bench for terrestrial-based investigation of space accelerometer is developed, on which the motion in three dimensions is monitored by two tri-axis seismometers and actively controlled by three voice coil motors. The principle and potential performance of this bench are theoretically analyzed and estimated in details. The experimental result shows that the bench can achieve high vibration isolation performance in horizontal translation direction. The residual horizontal vibration noise of this bench due to seismic can be suppressed by about 40 dB at 0.35Hz. Finally,the potentialof this design as a vibrationpre-isolationstage to investigate the performance of the inertial sensors dedicated to satellite gravity measurement and space gravitational wave detection is discussed.

     

    期刊名:Classical and Quantum Gravity

    期/卷:VOL. 38, NO. 17

    页码:175006

    发表时间:2021年8月

    DOI: 10.1088/1361-6382/ac1616

    上一篇: Coupling efficiency improvement of light source with a convex lens for space charge managements

    下一篇: Noise investigation of an electrostatic accelerometer by a high-voltage levitation method combined with a translation tilt compensation pendulum bench

    华中科技大学引力中心 华中科技大学物理学院 华中科技大学

    地址:中国·湖北省·武汉市珞喻路1037号 

    邮编:430074 | 电话:(+86)027-87542391

    Copyright 2021 ◎ 华中科技大学精密重力测量国家重大科技基础设施