Localization and navigation of passive objects enables new important applications in wireless environments. Monostatic sensor radar networks generate interesting solutions for passive localization and navigation in a variety of scenarios. In particular, ultrawide band (UWB) sensing provides fine delay resolution enabling high localization accuracy even in harsh prop- agation environments such as indoor. We develop a framework for design and analysis of passive navigation based on UWB monostatic sensor radar networks that relies on propagation environment and time-of-arrival estimation characterized by network experiments. As a case study, an UWB monostatic sensor radar network deployed in an indoor environment is considered, and the positio...
Wireless Sensor Networks (WSNs) consist of a collection of spatially distributed radio transceivers ...
In this paper we demonstrate the application of Hidden Markov Models (HMM) for localization and trac...
The recent advances in the Internet of Things (IoT) technologies have started a new era in sensor ne...
Localization and navigation of passive objects enables new important applications in wireless enviro...
Passive network localization via wireless sensor radars (WSRs) is rising interest for applications i...
Sensor radars (SRs) are important for a variety of applications requiring passive tracking of moving...
Radar sensor networks (RSNs) are gaining importance in the context of passive localization and track...
Due to its high delay resolution, the ultrawideband (UWB) technique has been widely adopted for fine...
Radar sensor networks (RSNs) are gaining importance in the context of passive localization and track...
A multistatic radar based on ultra-wideband (UWB), also known as a UWB radar sensor network, has bee...
Precise localization and tracking of moving non-collaborative persons and objects using a network of...
Precise localization and tracking of moving objects is of great interest for a variety of emerging a...
Wireless communications systems are increasingly used for environmental sensing in addition to their...
In the last years radar sensor networks for localization and tracking in indoor environment have gen...
Wireless Sensor Networks (WSNs) consist of a collection of spatially distributed radio transceivers ...
In this paper we demonstrate the application of Hidden Markov Models (HMM) for localization and trac...
The recent advances in the Internet of Things (IoT) technologies have started a new era in sensor ne...
Localization and navigation of passive objects enables new important applications in wireless enviro...
Passive network localization via wireless sensor radars (WSRs) is rising interest for applications i...
Sensor radars (SRs) are important for a variety of applications requiring passive tracking of moving...
Radar sensor networks (RSNs) are gaining importance in the context of passive localization and track...
Due to its high delay resolution, the ultrawideband (UWB) technique has been widely adopted for fine...
Radar sensor networks (RSNs) are gaining importance in the context of passive localization and track...
A multistatic radar based on ultra-wideband (UWB), also known as a UWB radar sensor network, has bee...
Precise localization and tracking of moving non-collaborative persons and objects using a network of...
Precise localization and tracking of moving objects is of great interest for a variety of emerging a...
Wireless communications systems are increasingly used for environmental sensing in addition to their...
In the last years radar sensor networks for localization and tracking in indoor environment have gen...
Wireless Sensor Networks (WSNs) consist of a collection of spatially distributed radio transceivers ...
In this paper we demonstrate the application of Hidden Markov Models (HMM) for localization and trac...
The recent advances in the Internet of Things (IoT) technologies have started a new era in sensor ne...