微牛级重力复合摆装置热噪声抑制
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V439.4

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国家重点研发计划(2021YFC2202700)


Thermal noise suppression in the micro-newton-level gravity composite pendulum device
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    摘要:

    空间引力波探测对微推力测量精度提出极高要求,而热噪声是限制重力复合摆测量装置性能的关键因素。为抑制热噪声,提升推力测量的长期稳定性,本文开展温度控制系统设计与实验研究。通过建立热噪声传递模型,分析温度对柔性枢轴刚度、摆杆热形变及位移传感器读数的耦合影响;基于Ansys热仿真优化温控参数,提出“真空隔离–多层被动隔热–局部主动PID控温”的复合控温方案。实验结果表明:在10-4 Pa真空环境下,该系统可在48小时内将关键区域温度波动峰值抑制在4 mK以内,热致位移噪声降低约99%。本研究验证了多级温控策略在微牛级推力测量中的有效性,为空间惯性传感系统的热噪声抑制提供了可靠技术路径。

    Abstract:

    Space gravitational wave detection requires extremely high precision in micro-thrust measurement, where thermal noise is considered a major factor limiting the performance of gravity compound pendulum measurement systems. To suppress thermal noise and improve long-term measurement stability, a temperature control system was designed and experimentally studied. A thermal noise transfer model was established to analyze the coupled influence of temperature on the stiffness of the flexible pivot, thermal deformation of the pendulum rod, and readings of the displacement sensor. Temperature control parameters were optimized using Ansys thermal simulation. A composite temperature control scheme combining vacuum isolation, multi-layer passive insulation, and local active PID control was proposed. Experimental results show that under a vacuum environment of 10?? Pa, the peak temperature fluctuation in key areas is controlled within 4 mK over 48 hours, and the thermally induced displacement noise is reduced by approximately 99%. This study confirms the effectiveness of the multi-level temperature control strategy in micro-Newton-level thrust measurement, providing a reliable technical approach for thermal noise suppression in space-based inertial sensing systems.

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王晓蕾,龙建飞,赵帮健,等. 微牛级重力复合摆装置热噪声抑制[J]. 科学技术与工程, 2026, 26(24): 10635-10645.
Wang Xiaolei, Long Jianfei, Zhao Bangjian, et al. Thermal noise suppression in the micro-newton-level gravity composite pendulum device[J]. Science Technology and Engineering,2026,26(24):10635-10645.

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  • 收稿日期:2025-09-29
  • 最后修改日期:2026-06-06
  • 录用日期:2026-01-14
  • 在线发布日期: 2026-09-02
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