针对传统的系统级标定方法状态变量维数高、标定参数可观测性差等特点,提出一种十位置系统级标 定方法。该方法以分立式标定结果为初值,以速度误差和姿态误差作为观测量,合并加速度计标定误差和光 纤陀螺标定误差,降低Kalman滤波器维数。设计10个位置对SINS标定误差进行估计,然后将估计值进行解 耦,计算SINS标定参数。仿真和转台实验结果表明:十位置系统级标定方法可以一次性标定出标度因数、安 装误差和零位等24个标定参数。
上传时间: 2016-10-23
上传用户:260970449
卡尔曼滤波的图像目标跟踪target tracking using kalman
上传时间: 2017-04-12
上传用户:暖阳!!
Kalman滤波在船舶GPS导航定位系统中的应用——MATLAB仿真程序
上传时间: 2017-11-29
上传用户:likelike
CARBEX法在碳酸盐介质中对废核燃料(SNF)进行再处理的新方法-CARBEX法的研究进展。碳酸盐法在SNF后处理中的应用综述CrRBEX流程的概念是。给出了CARBEXProcess各阶段的实验数据:乏燃料成分的高低温氧化。它在碳酸水溶液中的氧化溶解、U(VD)和Pu(VI)的萃取精制、U(VD)和Pu(V)的固相再萃取。并对制备陶粒燃料所需的AF铀和二氧化钚粉体进行了讨论。结果表明,tbe CARBEX工艺比众所周知的工业Purex工艺更有效、更安全
上传时间: 2019-04-28
上传用户:KATTUN104
改进版多模型卡尔曼滤波论文,能更好的适应非线性场景
标签: IMM-kalman 滤波
上传时间: 2019-06-10
上传用户:guokai626
Many good textbooks exist on probability and random processes written at the under- graduate level to the research level. However, there is no one handy and ready book that explains most of the essential topics, such as random variables and most of their frequently used discrete and continuous probability distribution functions; moments, transformation, and convergences of random variables; characteristic and generating functions; estimation theory and the associated orthogonality principle; vector random variables; random processes and their autocovariance and cross-covariance functions; sta- tionarity concepts; and random processes through linear systems and the associated Wiener and Kalman filters.
标签: Probability Processes Random and
上传时间: 2020-05-31
上传用户:shancjb
This package implements the following Kalman filters: 1) Standard Kalman Filter 2) Extended Kalman Filter 3) Dual Kalman Filter 4) Square Root Kalman Filter This package also contains instructive examples for each filter type demonstrating their practical application.
标签: Kalman_Filter
上传时间: 2021-09-19
上传用户:boboo
C10018_RTL8201CP-VD-LF_2012-11-22.PDFSINGLE-CHIP/SINGLE-PORT 10/100M FAST ETHERNET PHYCEIVER (With Auto Crossover) DATASHEET
标签: rtl8201cp
上传时间: 2022-01-13
上传用户:xsr1983
目前电动汽车主要以锂电池作为动力来源,为了提高锂电池的使用时间和安全性,为锂电池提供安全良好的运行环境,电池管理系统应运而生。BMS主控单元基于S32K144汽车级单片机,通过主从式网络控制结构能够对锂电池的各个参数进行采集与分析。采用扩展卡尔曼滤波对电池的荷电状态(SOC)进行估算,克服普通估算方法无法避免电池内阻误差的缺点,通过Matlab/Simulink软件仿真验证可使估算误差达到2%以内。At present,electric vehicles mainly use lithium batteries as the power source.In order to improve the running time and safety of lithium batteries,a safe and good operating environment for power batteries is provided,and a battery management system(BMS) has emerged.The BMS main control unit is based on the S32K144 automotive-grade control chip.Through the master-slave network control structure,it can collect and analyze the various parameters of the lithium battery.The Extended Kalman Filter(EKF) is used to estimate the state of charge(SOC) of the battery,which overcomes the shortcomings of the internal estimation method that cannot overcome the internal resistance error of the battery.It can be verified by Matlab/Simulink software simulation.The estimation error is within 2%.
上传时间: 2022-03-26
上传用户:XuVshu
反激式开关电源变压器设计的详细步骤85W反激变压器设计的详细步骤 1. 确定电源规格. 1).输入电压范围Vin=90—265Vac; 2).输出电压/负载电流:Vout1=42V/2A, Pout=84W 3).转换的效率=0.80 Pin=84/0.8=105W 2. 工作频率,匝比, 最低输入电压和最大占空比确定. Vmos*0.8>Vinmax+n(Vo+Vf)600*0.8>373+n(42+1)得n<2.5Vd*0.8>Vinmax/n+Vo400*0.8>373/n+42得n>1.34 所以n取1.6最低输入电压Vinmin=√[(Vacmin√2)* (Vacmin√2)-2Pin(T/2-tc)/Cin=(90√2*90√2-2*105*(20/2-3)/0.00015=80V取:工作频率fosc=60KHz, 最大占空比Dmax=n(Vo+Vf)/[n(Vo+Vf)+Vinmin]= 1.6(42+1)/[1.6(42+1)+80]=0.45 Ton(max)=1/f*Dmax=0.45/60000=7.5us 3. 变压器初级峰值电流的计算. Iin-avg=1/3Pin/Vinmin=1/3*105/80=0.4AΔIp1=2Iin-avg/D=2*0.4/0.45=1.78AIpk1=Pout/?/Vinmin*D+ΔIp1=84/0.8/80/0.45=2.79A 4. 变压器初级电感量的计算. 由式子Vdc=Lp*dip/dt,得: Lp= Vinmin*Ton(max)/ΔIp1 =80*0.0000075/1.78 =337uH 取Lp=337 uH 5.变压器铁芯的选择. 根据式子Aw*Ae=Pt*1000000/[2*ko*kc*fosc*Bm*j*?],其中: Pt(标称输出功率)= Pout=84W Ko(窗口的铜填充系数)=0.4 Kc(磁芯填充系数)=1(对于铁氧体), 变压器磁通密度Bm=1500Gs j(电流密度): j=4A/mm2;Aw*Ae=84*1000000/[2*0.4*1*60*103*1500Gs*4*0.80]=0.7cm4 考虑到绕线空间,选择窗口面积大的磁芯,查表: ER40/45铁氧体磁芯的有效截面积Ae=1.51cm2 ER40/45的功率容量乘积为 Ap = 3.7cm4 >0.7cm4 故选择ER40/45铁氧体磁芯. 6.变压器初级匝数 1).由Np=Vinmin*Ton/[Ae*Bm],得: Np=80*7.5*10n-6/[1.52*10n-4*0.15] =26.31 取 Np =27T 7. 变压器次级匝数的计算. Ns1(42v)=Np/n=27/1.6=16.875 取Ns1 = 17T Ns2(15v)=(15+1)* Ns1/(42+1)=6.3T 取Ns2 = 7T
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