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基于机理模型的现代温室湿度系统建模
  • ISSN号:1671-7147
  • 期刊名称:江南大学学报(自然科学版)
  • 时间:2013.10.10
  • 页码:535-540
  • 分类:V241.5[航空宇航科学与技术—飞行器设计]
  • 作者机构:中国科学技术大学,合肥230027
  • 相关基金:国家自然科学基金(31000672)
  • 相关项目:基于混合逻辑动态系统的温室建模与控制
中文摘要:

温度漂移是光纤陀螺的主要误差之一,它可分为两部分:与系统相关的误差源及环境的随机扰动产生的随机误差项;由温度变化引起的趋势项。提出了一种光纤陀螺温度漂移的改进AR模型和建模方法,先建立随机误差项的AR模型,再在AR模型中引入趋势项。使用实测的光纤陀螺温度漂移数据建模,并验证模型有效性。结果表明,该模型能准确预测不同温度变化情况下陀螺漂移输出,并能用预测值有效补偿漂移误差,补偿后温度漂移减小到补偿前的20%以下。基于Labview开发了可视化软件,该软件在陀螺温度特性的评价与预测方面具有实用价值。

英文摘要:

Temperature drift is one of main errors in Fiber Optic Gyro( FOG) , which can be divided into two terms: a random error term associated with system error and environmental disturbance, and a trend term caused by temperature change. An improved AR model of FOG temperature drift and its modeling method were proposed. Firstly, AR model of the random error term was established, and then the trend term was introduced in the AR model. The measured FOG temperature drift data was used for modeling and verifying the validity of model. Results show that: 1) The proposed model can accurately predict the gyro drift output under different temperature variations, and the predicted value can effectively compensate for the drift error;and 2) The FOG temperature drift after compensation is reduced to lees than 20% of that before compensation.Visual software was developed based on Labview, which is of practical value in assessment and prediction of the gyro temperature characteristics.

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