The conventional moving source localization methods are based on centralized sensors. This paper presents a moving source localization method for distributed passive sensors using TDOA and FDOA measurements. The novel method firstly uses the steepest descent algorithm to obtain a proper initial value of source position and velocity. Then, the coarse location estimation is obtained by maximum likelihood estimation (MLE). Finally, more accurate location estimation is achieved by subtracting theoretical bias, which is approximated by the actual bias using the estimated source location and noisy data measurement. Both theoretical analysis and simulations show that the theoretical bias always meets the actual bias when the noise level is small, ...
Abstract Time difference of arrival (TDOA) localization does not require time stamping of the source...
Abstract: Time dierence of arrival (TDOA)-based methods usually achieve the most accurate source loc...
In this paper, passive emitter localization using Time Difference of Arrival (TDOA) measurements wit...
Current bias compensation methods for distributed localization consider the time difference of arriv...
In this paper, four different localization techniques based on TDOA-measurements for single sensor p...
The maximum likelihood estimator (MLE) and its performance for the localization of a stationary emit...
AbstractA closed-form approximate maximum likelihood (AML) algorithm for estimating the position and...
Passive source localization is the estimation of the positions of the sources or emitters given the ...
In this thesis we addressed the problem of passively gathering information about an emitter of elect...
In this paper, a new single sensor passive emitter localization approach is presented. The use of si...
Abstract To weaken the effect of receiver location error on localization accuracy and make the local...
For the purpose of source localization, we have proposed a constrained weighted least squares...
Abstract—Classical localization systems based on TDOA/FDOA use a two-stage estimation approach. In t...
Source localization is investigated based on noisy measurements of TDOA (time-difference of arrival)...
Abstract By utilizing the time difference of arrival (TDOA), the frequency difference of arrival (FD...
Abstract Time difference of arrival (TDOA) localization does not require time stamping of the source...
Abstract: Time dierence of arrival (TDOA)-based methods usually achieve the most accurate source loc...
In this paper, passive emitter localization using Time Difference of Arrival (TDOA) measurements wit...
Current bias compensation methods for distributed localization consider the time difference of arriv...
In this paper, four different localization techniques based on TDOA-measurements for single sensor p...
The maximum likelihood estimator (MLE) and its performance for the localization of a stationary emit...
AbstractA closed-form approximate maximum likelihood (AML) algorithm for estimating the position and...
Passive source localization is the estimation of the positions of the sources or emitters given the ...
In this thesis we addressed the problem of passively gathering information about an emitter of elect...
In this paper, a new single sensor passive emitter localization approach is presented. The use of si...
Abstract To weaken the effect of receiver location error on localization accuracy and make the local...
For the purpose of source localization, we have proposed a constrained weighted least squares...
Abstract—Classical localization systems based on TDOA/FDOA use a two-stage estimation approach. In t...
Source localization is investigated based on noisy measurements of TDOA (time-difference of arrival)...
Abstract By utilizing the time difference of arrival (TDOA), the frequency difference of arrival (FD...
Abstract Time difference of arrival (TDOA) localization does not require time stamping of the source...
Abstract: Time dierence of arrival (TDOA)-based methods usually achieve the most accurate source loc...
In this paper, passive emitter localization using Time Difference of Arrival (TDOA) measurements wit...