VLDB 2026 Research / reviewers in the wild / expert
Claude Jauffret
dblp:133/5223
· DBLP profile ↗
21ranked-venue papers
7as first author
3since 2021 · last 2025
0000-0002-1995-7350ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Databases, data management, data science and information retrieval · 18 · 7 first-author · 3 since 2021Graphics, computer vision, multimedia, augmented reality and games · 3
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2025 | Fisher Information Matrix for a Parameter Observable up to an Orthogonal SymmetryabstractWe study the link between observability and non-singularity of the Fisher information matrix (FIM) such as they appear in the problems of tracking: most of the time, the sensors are mounted on a structure having a symmetrical configuration. Therefore, in this case, the parameter of interest is observable up to a symmetry. We prove that the FIM is singular in the subspace of symmetry. Still, there are several examples of observable parameters belonging to the symmetry subspaces. We explain this surprising paradox, and we illustrate it by several examples coming from the target motion analysis (TMA) literature. Annie-Claude Perez, Claude Jauffret |
FUSION | 2 |
| 2024 | What to Do with Biased Measurements?abstractEstimating a parameter with biased measurements is the topic of this paper. To do this, we propose three different models when the available data are corrupted by an additive constant bias. For each model, we detail the computation of the CramérRao lower bound (CRLB). For each model, examples using the traditional bearing-only target motion analysis (BOTMA) are given, for which we propose an estimator whose empirical performance is compared to the CRLB. Annie-Claude Perez, Claude Jauffret |
FUSION | 2 |
| 2023 | Observability of Bias of Measurements in Bearings-Only Target Motion AnalysisabstractThe problem of biased measurements in bearings-only target motion analysis (BOTMA) is the topic of this article. More precisely, we thoroughly establish the observability condition of the trajectory of the target together with the bias (assumed constant during the whole scenarios). Annie-Claude Perez, Claude Jauffret |
FUSION | 2 |
| 2020 | Observability in Target Motion Analysis from the Sum or the Difference of Ranges with Two Stationary SensorsabstractWe address in this paper the problem of observability in target motion analyses (TMA), when the measurements are a sum or a difference of ranges between a target and two motionless observers. Necessary and sufficient conditions of observability are given in time difference of arrival (TDOA) situation and in a bistatic situation. Annie-Claude Perez, Claude Jauffret |
FUSION | 2 |
| 2018 | Efficient Pseudolinear Estimation for Bearings and Frequencies Target Motion AnalysisabstractIn this paper, we present a pseudolinear estimate for bearings and frequencies target motion analysis. We propose two ways to reduce its inherent bias and evaluate its performance with Monte Carlo simulations, with reference to the Cramér-Ran lower bound. Claude Jauffret, Annie-Claude Perez |
FUSION | 1 |
| 2017 | Bearings-only target motion analysis: Observability when the observer maneuvers smoothlyabstractObservability in bearings-only target analysis (BOTMA) is studied when the target is in constant-velocity motion and the observer maneuvers gently (a constant turn motion or a constant acceleration motion). During our study, we proved that the rendezvous routes of the observer and the target play a key role in this analysis. We establish necessary and sufficient conditions of observability and we identify the virtual (or ghost) targets giving the same bearings when the system is not observable. Annie-Claude Perez, Claude Jauffret, Denis Pillon |
FUSION | 2 |
| 2017 | Range-only target motion analysis: Observability when the observer maneuvers moothlyabstractThis paper is the companion-paper of another paper presented in FUSION'17 concerning bearings-only target motion analysis (BOTMA). In this one, bearing data are replaced by range data: we study observability in range-only target motion analysis (ROTMA). When the observer is in constant turn motion, the target's trajectory is observable, as in BOTMA. If the observer is in constant acceleration motion, necessary and sufficient conditions of observability in ROTMA are proven to be not the same than in BOTMA, although the equality of the ranks of the respective Fisher information matrices. As in BOTMA, the rendezvous routes of the observer and the target play a crucial role. When the system is not observable, ghost-targets (the ones at the same range than the true target) are identified. Annie-Claude Perez, Claude Jauffret, Denis Pillon |
FUSION | 2 |
| 2017 | IMM-UGHF-NJ for continuous wave bistatic sonar tracking with propagation delayabstractAcoustic propagation delay has not been investigated for a continuous wave multistatic sonar tracking system except for the recent study conducted by Jauffret et al. [4], which estimates the trajectory of a constant velocity target. The results showed that the estimate bias caused by the propagation delay is not negligible, especially for a bistatic system. This paper develops an interacting multiple model unscented Gauss-Helmert filter with numerical Jacobian (IMM-UGHF-NJ) to track a maneuvering target with propagation delay using a bistatic sonar system. The IMM-UGHF-NJ can overcome the two tracking challenges introduced by the delay, namely, implicit state transition model and lack of analytical expression of the Doppler shifted frequency in the measurement model. Simulation tests have been conducted, and the results show that the IMM-UGHF-NJ can reduce the estimation error significantly, especially for fast moving targets. Rong Yang 0002, Yaakov Bar-Shalom, Claude Jauffret, Annie-Claude Perez, Gee Wah Ng |
FUSION | 3 |
| 2016 | Bearings-only TMA from electromagnetic and acoustic waves
Nabil Amirach, Claude Jauffret, Annie-Claude Perez, Dann Laneuville |
FUSION | 2 |
| 2016 | Doppler-only target motion analysis in a high duty cycle sonar system
Claude Jauffret, Annie-Claude Perez, Pierre Blanc-Benon, Hervé Tanguy |
FUSION | 1 |
| 2015 | Target motion analysis by inverse triangulation
Claude Jauffret, Annie-Claude Perez |
FUSION | 1 |
| 2014 | Cramér-Rao-type lower bound for a time of abrupt change
Claude Jauffret, Annie-Claude Perez |
FUSION | 1 |
| 2013 | Properties of range-only target motion analysis
Annie-Claude Perez, Claude Jauffret, Denis Pillon |
FUSION | 2 |
| 2011 | Bearings-only target motion analysis of a source in a circular constant speed motion from a non-maneuvering platform
Julien Clavard, Denis Pillon, Annie-Claude Perez, Claude Jauffret |
FUSION | 4 |
| 2010 | A statistical fusion for a leg-by-leg bearings-only TMA without observer maneuver
Annie-Claude Perez, Claude Jauffret, Denis Pillon |
FUSION | 2 |
| 2009 | Leg-by-leg bearings-only TMA without observer maneuver
Claude Jauffret, Denis Pillon, Annie-Claude Perez |
FUSION | 1 |
| 2008 | Multi frequencies and bearing target motion analysis : Properties and sonar applications
Claude Jauffret, Pierre Blanc-Benon, Denis Pillon |
FUSION | 1 |
| 2008 | Bearings-only TMA without observer maneuver
Claude Jauffret, Denis Pillon, Annie-Claude Perez |
FUSION | 1 |
| 1997 | Maximum likelihood estimator for magneto-acoustic localisationabstractThis paper is devoted to the localization of magneto-acoustic sources moving in a straight line at a constant speed. Our technique is based on the association of narrow band acoustic signals and magnetostatic measurements. First of all, we describe features that make possible the association of magnetic and acoustic data, secondly, we show that the positioning accuracy is much improved by this association. We focus on solving the problem with as few sensors as possible. A geometric discussion of identifiability is proposed, as well as a batch maximum likelihood estimator whose covariance matrix asymptotically achieves Cramer Rao lower bounds (CRLB). Gilles Dassot, Roland Blanpain, Claude Jauffret |
ICASSP | 3 |
| 1991 | Linear maximum likelihood estimatorabstractA general linear and quasi-efficient estimator is presented which is an optimal (for a given criterion) approximation of the maximum likelihood estimator (MLE with nonlinear measurement equation) when the measurements are corrupted by a Gaussian noise. This approach consists of choosing a particular state vector which characterizes the signal. The model is defined by special values of the signal at sample times which are the roots of an orthogonal Lagrange polynomial. It is rigorously established that the linear estimator is quasi-unbiased and has a covariance matrix which is close to the Cramer-Rao lower bound. A practical algorithm is derived, and it is shown to be very easy to implement. This method is successfully applied to the problem of target motion analysis (TMA).> Christian J. Musso, Claude Jauffret |
ICASSP | 2 |
| 1989 | Target motion analysis with bearings and frequencies measurements via instrumental variable estimator [passive sonar]abstractEstimating position and velocity of a moving source requires at least an ownship maneuver when performing bearing-only tracking (BOT). By concurrently processing bearing and Dopplerized radiated frequencies a unique target motion analysis (TMA) solution is available without any maneuver. A simple, fast, non-time-recursive estimator, working on several unknown measured spectral lines, is presented. The statistical efficiency of such a Doppler and bearing tracking (DBT) is proved by computer simulation. Simulation results show that DBT can yield proper estimates of source trajectory: range accuracy better than 10% within at most 10 min for a source at 20 km and nine sinusoids.> Jean-Michel Passerieux, Denis Pillon, Pierre Blanc-Benon, Claude Jauffret |
ICASSP | 4 |