低测量精度限制下的航天器高精度控温方法OA
Precise temperature control method for spacecraft under low measurement accuracy constraints
针对低测温分辨力限制下的航天器精密控温需求,提出基于卡尔曼滤波(KF)的高精度控温方法.该方法构建控温对象的热模型,通过卡尔曼滤波方法预估温度状态变化、抑制温度测量噪声,基于滤波数据进行闭环控制实现高精度控温.针对该方法参数整定困难的问题,提出依据滑动均值滤波结果进行持续修正的优化卡尔曼滤波(mKF)方法.通过试验和仿真,分析了参数取值对控温精度的影响规律.结果表明:在测温分辨力低于 100 mK的限制条件下,控温系统在应用所提卡尔曼滤波方法后可提升控温精度并增强对大 PI参数的适应性,在较宽的参数范围内取得优于 10 mK的稳定度.应用所提优化卡尔曼滤波方法后,系统在大 PI控制参数下的控温精度进一步提升,且对 PI控制参数、滤波参数、热模型参数的敏感度更低,具有更小的参数整定难度和更强的鲁棒性.
To meet the demand for precise temperature control in spacecraft under the constraint of low temperature measurement resolution,this paper proposes a high-precision temperature control method based on Kalman filtering(KF).This method first constructs a thermal model of the controlled object.The Kalman filter algorithm is then utilized to estimate temperature state changes and suppress temperature measurement noise.Finally,closed-loop control based on the filtered data is implemented to achieve high-precision temperature regulation.A modified Kalman filter(mKF)approach that incorporates continuous correction based on moving average filter results is suggested in order to address the problem of parameter adjustment inherent in this method.Through experiments and simulations,the influence of parameter settings on temperature control accuracy was analyzed.The findings demonstrate that the temperature control system using Kalman filtering improves control accuracy and adaptability to larger PI parameter values under the constraint of a temperature measurement resolution lower than 100 mK,achieving a stability better than 10 mK across a wider parameter range.After applying the modified Kalman Filtermethod,the system's temperature control accuracy under large PI control parameters is further improved.Moreover,the system exhibits lower sensitivity to PI control parameters,filtering parameters,and thermal model parameters,resulting in reduced parameter tuning difficulty and enhanced robustness.
乐述文;张晓峰;冯建朝;吴文锋
中国科学院微小卫星创新研究院,上海 201304中国科学院微小卫星创新研究院,上海 201304中国科学院微小卫星创新研究院,上海 201304||中国科学院大学 星际航行学院,北京 100049中国科学院微小卫星创新研究院,上海 201304||中国科学院大学 星际航行学院,北京 100049
航空航天
测温分辨力温度控制卡尔曼滤波参数整定鲁棒性
temperature resolutiontemperature controlKalman filteringparameter tuningrobustness
《北京航空航天大学学报》 2026 (8)
2780-2787,8
国家重点研发计划(2022YFC2204300) National Key Research and Development Program of China(2022YFC2204300)
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