搜索资源列表
imu
- 指北方位系统在捷联惯性导航系统中的matlab模拟算法-Matlab simulation algorithm north-bit system in strapdown inertial navigation system
qk_AG
- 捷联惯导卡尔曼滤波算法初始对准,参考哈工程的硕士写的,效果可以,但是不知道观测量是如何构造的。-Kalman filter algorithm SINS initial alignment, Master of Engineering Reference Kazakhstan write, the effect can be observables but do not know how to construct.
Strapdown-inertial-navigation
- 一个简单的捷联姿态解算算法 GPS-INS惯导算法-A simple strapdown attitude solver algorithm GPS-INS inertial navigation algorithm
secondexalign
- 该算法用于实现静基座二位置捷联惯导初始对准-The algorithm used to implement static base two position SINS initial alignment
navi
- 该算法利用matlab实现指北方位捷联惯导解算过程-The algorithm uses matlab achieve refers northern bit SINS solver process
newSINS
- 关于惯导算法的一般程序,主要针对捷联惯导-Inertial navigation algorithm general procedures for SINS
jielianguandao
- 捷联惯导的姿态,速度,位置算法,包括四元素法,旋转矢量法-SINS attitude, speed, location algorithms, including the four elements, and rotation vector
INStoolSim
- 里面主要是捷联惯导算法程序,另外还有很多例子可供参考-strap inertial navigation systerm
nav_EKF-cPP
- 捷联式导航算法的数据融合EKF程序,维度较大,可自行裁剪-nav EKF filter source code
SINS-zitaijiesuan
- 捷联惯性导航领域的姿态更新算法仿真,包括二子样、三子样和四子样的对比。-In the field of strapdown inertial navigation attitude updating algorithm simulation, including two sample, the third and the fourth kind of contrast.
Kalman
- 采用MATLAB编写的简洁的扩展kalman程序,适用于捷联惯导的算法设计和学习。-MATLAB prepared using extended kalman simple procedure for SINS algorithm design and learning.
编程
- 依据加计和陀螺仪的输出数据来求解飞行器的姿态(The attitude of the aircraft is solved by the output data of the addition and gyroscopes)
ecef+sins
- 代码1用于将位置经纬高信息转换为地心地固坐标系下xyz信息;代码2是捷联惯导算法代码,用于将加速度计和陀螺仪输出的信息进行解算得到位置、速度和姿态信息。(Code 1 is used to convert the location of warp and weft information into XYZ information in a geocentric coordinate system; code 2 is a strapdown inertial navigation algorit
daohangthree
- 西工大研一惯性测量实验的粗对准程序以及图示,参考《捷联惯导算法与组合导航原理讲义》(Coarse alignment procedure and graphics for the INS experiment of Xigong University of Technology, refer to the Lecture on Strapdown Inertial Navigation Algorithms and Integrated Navigation Principles.)