纸专注于与不仅输入延期而且测量延期为系统发现 H 测量反馈控制法律。和伪测量, Krein 空间被介绍以便在我们把原来的问题变换成最小化的以后,重新组织的技术能被利用。最后,我们得到需要的控制器并且看到分离原则也是适用的推迟系...纸专注于与不仅输入延期而且测量延期为系统发现 H 测量反馈控制法律。和伪测量, Krein 空间被介绍以便在我们把原来的问题变换成最小化的以后,重新组织的技术能被利用。最后,我们得到需要的控制器并且看到分离原则也是适用的推迟系统到某程度。展开更多
This article puts forward a scalar weighting information fusion (IF) smoother with modified biased Kalman filter (BKF) and maximum likelihood estimation (MLE) to mitigate the ranging errors in ultra wide band (...This article puts forward a scalar weighting information fusion (IF) smoother with modified biased Kalman filter (BKF) and maximum likelihood estimation (MLE) to mitigate the ranging errors in ultra wide band (UWB) systems. The information fusion algorithm uses both the time of arrival (TOA) and received signal strength (RSS) measurement data to improve the ranging accuracy. At first, the ranging protocol of IEEE 802.15.4a acts as a multi-sensor system with multi-scale sampling. Then the scalar-based IF smoother accurately estimates the range measurement in the line of sight (LOS) and non-line of sight (NLOS) condition of UWB sensor network, during which the effectiveness of the IF in mitigating errors is especially focused during the LOS/NLOS transitions. Simulation results show that the proposed hybrid TOA-RSS fusion approach indicates a performance improvement compared with the usual TOA-only and other IF method, and the estimated ranging metrics can be used for achieving higher accuracy in location estimation and target tracking.展开更多
基金Supported by National Natural Science Foundation of China (60574016), the National Science Foundation for Distinguished Young Scholars of China (60825304), and the Taishan Scholar Program of Shandong Province
基金Supported by National Research Foundation of Singapore (NRF-CRP8-2011-03) and National Natural Science Foundation of China (61120106011, 61034007, 61203045, 61304045)
基金Supported by National Basic Research Program of China (973 Pragram) (2009CB320600), the Taishan Scholar Construction Engineering by Shandong Government, and National Natural Science Foundation for Distinguished Young Scholars of China (60825304)
基金Supported by the Taishan Scholar Construction Engineering by Shandong Governmentthe National Natural Science Foundation for Distinguished Young Scholars of China(60825304)+1 种基金the Major State Basic Research Development Program of China(973 Program)(2009cb320600)Yangtse Rive Scholar Bonus Schemes(31400080963017)
基金supported by the National Natural Science Foundation for Distinguished Young Scholars of China (60825304)the National Basic Research Development Program of China(2009cb320600)
文摘This article puts forward a scalar weighting information fusion (IF) smoother with modified biased Kalman filter (BKF) and maximum likelihood estimation (MLE) to mitigate the ranging errors in ultra wide band (UWB) systems. The information fusion algorithm uses both the time of arrival (TOA) and received signal strength (RSS) measurement data to improve the ranging accuracy. At first, the ranging protocol of IEEE 802.15.4a acts as a multi-sensor system with multi-scale sampling. Then the scalar-based IF smoother accurately estimates the range measurement in the line of sight (LOS) and non-line of sight (NLOS) condition of UWB sensor network, during which the effectiveness of the IF in mitigating errors is especially focused during the LOS/NLOS transitions. Simulation results show that the proposed hybrid TOA-RSS fusion approach indicates a performance improvement compared with the usual TOA-only and other IF method, and the estimated ranging metrics can be used for achieving higher accuracy in location estimation and target tracking.