Abstract- Accurate range estimation and tracking of moving targets is an important task in urban sensing applications. A dual-frequency radar, which estimates the range of a target based on the phase difference between two closely spaced frequencies, has been shown to be a cost-effective approach to accomplish both range-to-motion estimation and tracking. This approach, however, suffers from two drawbacks: it cannot deal with multiple moving targets, and has poor performance in noisy environments. To overcome these drawbacks, we propose, in this paper, the use of time-frequency signal representations. High signal-to-noise ratio (SNR) is obtained by focusing on the moving target instantaneous Doppler frequency law provided by the power local...
Multipath signals arise in many active sensing modalities, such as radar and sonar. Moving targets c...
A global navigation satellite system (GNSS)-based multistatic radar is explored for target localizat...
We propose a computationally efficient algorithm for localizing multiple targets on a delay-Doppler ...
Abstract—A dual-frequency radar, which estimates the range of a target based on the phase difference...
International audienceThe dual-frequency continuous wave radar measures the target range by comparin...
Localization of a moving target in a dual-frequency radars system has now gained considerable attent...
Abstract—In this paper, we propose a multi-frequency array structure that achieves accurate target l...
Frequency-based localization methods are widely used to find emitter locations. Several techniques a...
This dissertation is focused on developing the new target localization and the target velocity estim...
Target localization and the velocity estimation methods are proposed for frequency-only MIMO Radar w...
In this correspondence, we focus on the design and the analysis of schemes aimed at estimating the p...
The multiple target localization using only Doppler frequencies in Multiple-Input Multiple-Output (M...
When the time resolution of the signals is not so good, we can't rely on the time of arrival (TOA) i...
This article addresses the joint estimation of range, velocity and azimuth for multiple fast-moving ...
A new approach is described for combining range and Doppler data from multiple radar platforms to pe...
Multipath signals arise in many active sensing modalities, such as radar and sonar. Moving targets c...
A global navigation satellite system (GNSS)-based multistatic radar is explored for target localizat...
We propose a computationally efficient algorithm for localizing multiple targets on a delay-Doppler ...
Abstract—A dual-frequency radar, which estimates the range of a target based on the phase difference...
International audienceThe dual-frequency continuous wave radar measures the target range by comparin...
Localization of a moving target in a dual-frequency radars system has now gained considerable attent...
Abstract—In this paper, we propose a multi-frequency array structure that achieves accurate target l...
Frequency-based localization methods are widely used to find emitter locations. Several techniques a...
This dissertation is focused on developing the new target localization and the target velocity estim...
Target localization and the velocity estimation methods are proposed for frequency-only MIMO Radar w...
In this correspondence, we focus on the design and the analysis of schemes aimed at estimating the p...
The multiple target localization using only Doppler frequencies in Multiple-Input Multiple-Output (M...
When the time resolution of the signals is not so good, we can't rely on the time of arrival (TOA) i...
This article addresses the joint estimation of range, velocity and azimuth for multiple fast-moving ...
A new approach is described for combining range and Doppler data from multiple radar platforms to pe...
Multipath signals arise in many active sensing modalities, such as radar and sonar. Moving targets c...
A global navigation satellite system (GNSS)-based multistatic radar is explored for target localizat...
We propose a computationally efficient algorithm for localizing multiple targets on a delay-Doppler ...