Notice of RetractionResearch on heading sensitive drift storage behavior of inertial platform system under the influence of temperature

Xiaokai Huang, Yunxia Chen, R. Kang
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引用次数: 1

Abstract

For the missile inertial platform system with the characteristic of long-term storage and onetime use, temperature is a key factor that affects the long-term storage behavior of the heading sensitive drift, which is a major parameter of the missile inertial platform system. Based on the gyro's movement principle in the coordinate system of inertial platform system, the principle and expression of the heading sensitive drift caused by storage temperature was derived in this paper. Then, the storage characteristics of various drift parameters in the expression under the long-term influence of temperature were thoroughly analyzed, and the storage behavioral model of the heading sensitive drift under the influence of storage temperature was obtained. Finally, the long-term drift feature, the acceleration feature and the storage stability of the heading sensitive drift based on behavioral model was analyzed with the actual storage profile. The results indicate that the heading sensitive drift features no acceleration with the current storage temperature profile, but the influence of long-term temperature is obvious, which provides a basis for reasoned resource allocation for the calibration and maintenance in inertial platform system.
温度影响下惯性平台系统航向敏感漂移存储特性研究
对于具有长期贮存、一次性使用特性的导弹惯性平台系统,温度是影响航向敏感漂移长期贮存性能的关键因素,是导弹惯性平台系统的主要参数。根据陀螺在惯性平台坐标系中的运动原理,推导了贮存温度引起的航向敏感漂移的原理和表达式。然后,深入分析了表达式中各漂移参数在温度长期影响下的存储特性,得到了航向敏感漂移在存储温度影响下的存储行为模型。最后,结合实际存储情况,分析了基于行为模型的航向敏感漂移的长期漂移特性、加速度特性和存储稳定性。结果表明,航向敏感漂移在当前存储温度分布下无加速特性,但长期温度对航向敏感漂移的影响明显,为惯性平台系统的标定和维护提供了合理的资源分配依据。
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