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
A method of improving the navigation accuracy of strapdown inertial navigation system (SINS) is studied. The particular technique discussed involves the continuous rotation of gyros and accelerometers cluster about th...A method of improving the navigation accuracy of strapdown inertial navigation system (SINS) is studied. The particular technique discussed involves the continuous rotation of gyros and accelerometers cluster about the vertical axis of the vehicle. Then the errors of these sensors will have periodic variation corresponding to components along the body frame. Under this condition, the modulated sensor errors produce reduced system errors. Theoretical analysis based on a new coordinate system defined as sensing frame and test results are presented, and they indicate the method attenuates the navigation errors brought by the gyros' random constant drift and the accelerometer's bias and their white noise compared to the conventional method.展开更多
推导了捷联惯导系统(S IN S)误差方程和航位推算(DR)误差方程。建立了S IN S/DR组合导航离散卡尔曼滤波(KF)状态方程和量测方程。最后对S IN S/DR组合导航算法进行了仿真,仿真结果表明:组合系统中部分误差源能够被估计出来并且得到补偿...推导了捷联惯导系统(S IN S)误差方程和航位推算(DR)误差方程。建立了S IN S/DR组合导航离散卡尔曼滤波(KF)状态方程和量测方程。最后对S IN S/DR组合导航算法进行了仿真,仿真结果表明:组合系统中部分误差源能够被估计出来并且得到补偿,因而组合导航效果优于单独的S IN S或DR导航效果。展开更多
为提高光纤陀螺捷联惯导系统的精度,以光纤陀螺捷联惯导系统与全球定位系统(GPS Globle Position System)为研究对象,采用联邦卡尔曼滤波算法,构成了SINS/GPS(Strap-down Inertial Navigation Systerm/Globle Position System)组合导航...为提高光纤陀螺捷联惯导系统的精度,以光纤陀螺捷联惯导系统与全球定位系统(GPS Globle Position System)为研究对象,采用联邦卡尔曼滤波算法,构成了SINS/GPS(Strap-down Inertial Navigation Systerm/Globle Position System)组合导航系统。仿真结果表明,该算法能及时修正子滤波器的偏差,大大降低子滤波器的模型误差,进而提高整个滤波器的精度,并有效克服了滤波发散现象。展开更多
基金the Nature Science Foundation of China under Grant No.60604019 and No.6075001
文摘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.
文摘A method of improving the navigation accuracy of strapdown inertial navigation system (SINS) is studied. The particular technique discussed involves the continuous rotation of gyros and accelerometers cluster about the vertical axis of the vehicle. Then the errors of these sensors will have periodic variation corresponding to components along the body frame. Under this condition, the modulated sensor errors produce reduced system errors. Theoretical analysis based on a new coordinate system defined as sensing frame and test results are presented, and they indicate the method attenuates the navigation errors brought by the gyros' random constant drift and the accelerometer's bias and their white noise compared to the conventional method.
文摘推导了捷联惯导系统(S IN S)误差方程和航位推算(DR)误差方程。建立了S IN S/DR组合导航离散卡尔曼滤波(KF)状态方程和量测方程。最后对S IN S/DR组合导航算法进行了仿真,仿真结果表明:组合系统中部分误差源能够被估计出来并且得到补偿,因而组合导航效果优于单独的S IN S或DR导航效果。
文摘为提高光纤陀螺捷联惯导系统的精度,以光纤陀螺捷联惯导系统与全球定位系统(GPS Globle Position System)为研究对象,采用联邦卡尔曼滤波算法,构成了SINS/GPS(Strap-down Inertial Navigation Systerm/Globle Position System)组合导航系统。仿真结果表明,该算法能及时修正子滤波器的偏差,大大降低子滤波器的模型误差,进而提高整个滤波器的精度,并有效克服了滤波发散现象。