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捷联惯导陀螺仪冗余配置研究 被引量:4
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作者 潘鸿飞 袁立群 任尚云 《飞航导弹》 2003年第2期52-56,共5页
为了有效提高捷联惯导系统的可靠性 ,对捷联惯导陀螺仪冗余配置方案的系统优化进行了研究 ,介绍了冗余配置原则 ,结构方案对比与选择及相应的可靠性评估等内容。通过采用加权最小二乘法等数据处理方法 ,给出了计算结果。该结果表明 ,工... 为了有效提高捷联惯导系统的可靠性 ,对捷联惯导陀螺仪冗余配置方案的系统优化进行了研究 ,介绍了冗余配置原则 ,结构方案对比与选择及相应的可靠性评估等内容。通过采用加权最小二乘法等数据处理方法 ,给出了计算结果。该结果表明 ,工程上捷联惯导陀螺仪冗余配置是应当而且能够实现系统最优化设计 。 展开更多
关键词 冗余配置 捷联惯导陀螺仪 飞行器 航控制系统
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Analysis of Error for a Rotating Strap-down Inertial Navigation System with Fibro Gyro 被引量:6
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作者 奔粤阳 柴永利 +1 位作者 高伟 孙枫 《Journal of Marine Science and Application》 2010年第4期419-424,共6页
The error equation of a rotating inertial navigation system was introduced. The effect of the system's main error source (constant drift of gyro and zero bias of accelerometer) under rotating conditions for the sy... The error equation of a rotating inertial navigation system was introduced. The effect of the system's main error source (constant drift of gyro and zero bias of accelerometer) under rotating conditions for the system was analyzed. Validity of theoretical analysis was shown via simulation, and that provides a theoretical foundation for a rotating strap-down inertial navigation system during actual experimentation and application. 展开更多
关键词 fibro gyro rotating strap-down inertial navigation error analysis
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A rotating inertial navigation system with the rotating axis error compensation consisting of fiber optic gyros 被引量:5
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作者 査峰 胡柏青 +1 位作者 覃方君 罗银波 《Optoelectronics Letters》 EI 2012年第2期146-149,共4页
An effective and flexible rotation and compensation scheme is designed to improve the accuracy of rotating inertial navigation system (RINS). The accuracy of single-axial R1NS is limited by the errors on the rotatin... An effective and flexible rotation and compensation scheme is designed to improve the accuracy of rotating inertial navigation system (RINS). The accuracy of single-axial R1NS is limited by the errors on the rotating axis. A novel inertial measurement unit (IMU) scheme with error compensation for the rotating axis of fiber optic gyros (FOG) RINS is presented. In the scheme, two couples of inertial sensors with similar error characteristics are mounted oppositely on the rotating axes to compensate the sensors error. Without any change for the rotation cycle, this scheme improves the system's precision and reliability, and also offers the redundancy for the system. The results of 36 h navigation simulation prove that the accuracy of the system is improved notably compared with normal strapdown INS, besides the heading accuracy is increased by 3 times compared with single-axial RINS, and the position accuracy is improved by 1 order of magnitude. 展开更多
关键词 Inertial navigation systems REDUNDANCY Units of measurement
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