This paper considers recursive tracking of one mobile emitter using a sequence of time difference of arrival (TDOA) and frequency difference of arrival (FDOA) measurement pairs obtained by one pair of sensors. We consider only a single emitter without data association issues (no missed detections or false measurements). Each TDOA measurement defines a region of possible emitter locations around a unique hyperbola. This likelihood function is approximated by a Gaussian mixture, which leads to a dynamic bank of Kalman filters tracking algorithm. The FDOA measurements update relative probabilities and estimates of individual Kalman filters. This approach results in a better track state probability density function approximation by a Gaussian m...
A potentiality of the location problem in wireless networks that has not been explored enough is the...
The maximum likelihood estimator (MLE) and its performance for the localization of a stationary emit...
Abstract It is well known that the Doppler frequency shift contains the emitter location information...
This paper considers recursive tracking of one mobile emitter using a sequence of time difference of...
This paper presents an effective recursive tracking method for the single mobile emitter using corre...
Mobiles devices are essential in wireless correspondence frameworks, improvement of exact and depend...
This paper presents a comparative analysis of three nonlinear filters for estimation of the location...
This paper presents a comparative analysis of three nonlinear filters for estimation of the location...
In this letter, we propose a moving-target tracking algorithm based on a particle filter that uses t...
Time Difference of Arrival (TDOA) measurements are gained in a network of sensors where a minimum of...
In this paper, passive emitter localization using Time Difference of Arrival (TDOA) measurements wit...
In this thesis, the passive localization problem is studied. Robust and recursive solutions are pres...
This paper proposes CAF algorithm to estimate localisation accuracy of a stationary emitter which is...
Abstract — In classical TDOA/FDOA emitter location methods, pairs of sensors share the received data...
Low-power devices such as cell phones, and wireless routers are commonly used to control Improvised ...
A potentiality of the location problem in wireless networks that has not been explored enough is the...
The maximum likelihood estimator (MLE) and its performance for the localization of a stationary emit...
Abstract It is well known that the Doppler frequency shift contains the emitter location information...
This paper considers recursive tracking of one mobile emitter using a sequence of time difference of...
This paper presents an effective recursive tracking method for the single mobile emitter using corre...
Mobiles devices are essential in wireless correspondence frameworks, improvement of exact and depend...
This paper presents a comparative analysis of three nonlinear filters for estimation of the location...
This paper presents a comparative analysis of three nonlinear filters for estimation of the location...
In this letter, we propose a moving-target tracking algorithm based on a particle filter that uses t...
Time Difference of Arrival (TDOA) measurements are gained in a network of sensors where a minimum of...
In this paper, passive emitter localization using Time Difference of Arrival (TDOA) measurements wit...
In this thesis, the passive localization problem is studied. Robust and recursive solutions are pres...
This paper proposes CAF algorithm to estimate localisation accuracy of a stationary emitter which is...
Abstract — In classical TDOA/FDOA emitter location methods, pairs of sensors share the received data...
Low-power devices such as cell phones, and wireless routers are commonly used to control Improvised ...
A potentiality of the location problem in wireless networks that has not been explored enough is the...
The maximum likelihood estimator (MLE) and its performance for the localization of a stationary emit...
Abstract It is well known that the Doppler frequency shift contains the emitter location information...