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Multistatic Ground-Penetrating Radar Experiments

IEEE Transactions on Geoscience and Remote Sensing, 2007
A multistatic ground-penetrating radar (GPR) system has been developed and used to measure the response of a number of targets to produce data for the investigation of multistatic inversion algorithms. The system consists of a linear array of resistive-vee antennas, microwave switches, a vector network analyzer, and a 3-D positioner, all under computer
Tegan Counts   +4 more
openaire   +2 more sources

A Geometric View of Multistatic Radar Detection

2018 52nd Asilomar Conference on Signals, Systems, and Computers, 2018
Coherent detection for multistatic radar is generally described in ways that obscure its underlying geometrical structure. This paper presents a view of multistatic radar in which the radar transmission essentially labels position-velocity space with subspaces. The detector for a target with a particular position and velocity is thus a matched subspace
Stephen D. Howard   +2 more
openaire   +1 more source

Multistatic Radar Systems

2012
This chapter discusses the key elements in the design of a distributed multistatic synthetic aperture radar mission. A number of application domains are discussed, with an emphasis on single- and multi-baseline interferometric techniques, deriving lower and upper bounds to the required spacecraft separation.
Lopez-Dekker, Paco   +2 more
openaire   +2 more sources

Noncooperative registration for multistatic passive radars

IEEE Transactions on Aerospace and Electronic Systems, 2016
Multistatic passive radars localize targets by using multiple bistatic range measurements. Multistatic localization requires all range measurements to be unbiased. It is proved by real data processing that registration is an important topic to be addressed. Traditionally, atomic clocks or GPS are used to achieve unbiased measurements.
Jianxin Yi   +4 more
openaire   +2 more sources

Bistatic and Multistatic Radar Imaging

2019 IEEE Radar Conference (RadarConf), 2019
1.Prerequisite material: basics of radar a)Geometric relationships b)Basic radar physics c)Basic range-Doppler processing or imaging 2.Part I - Prof. Rigling a)Introduction to Bistatic Radar b)Bistatic Synthetic Aperture Radar c)Multistatic Synthetic Aperture Radar 3.Part II - Prof.
Brian Rigling, Marco Martorella
openaire   +1 more source

Waveform diversity in multistatic radar

2006 International Waveform Diversity & Design Conference, 2006
Future military sensor systems will contain intelligent software that will dynamically assess a scenario and modify its emissions and its receiver's signal and data processing to enhance performance. This capability is of particular interest in multistatic radar situations.
G.T. Capraro   +5 more
openaire   +1 more source

Multistatic radar micro-Doppler

2020
This chapter reviews how multistatic radar sensor networks can be utilised to sense a series of different moving targets to extract their micro-Doppler (μD) signatures and use these for classification purposes. The field of radar has advanced significantly since its inception in the early twentieth century.
Matthew Ritchie   +2 more
openaire   +1 more source

Characterisation of a Multistatic Radar System

2006 European Radar Conference, 2006
In this paper we report on the initial characterisation and calibration of a multistatic radar system, which has been designed using `commercial off the shelf components'. This initial test strategy will provide a useful gauge of how effectively the system can detect certain simple targets and thus pave the way for further work looking at developing ...
Shaun Doughty   +2 more
openaire   +1 more source

Frequency diversity in multistatic radars

2008 IEEE Radar Conference, 2008
This paper presents the model and analysis of a frequency-diverse radar system. Multistatic radar systems provide an inherent spatial diversity by processing signals from different platforms which view a potential target from different aspect angles. By using different frequencies at each platform, an additional diversity gain can be obtained on top of
Byung Wook Jung   +2 more
openaire   +1 more source

Phaseless FMCW Multistatic Radar

2022 IEEE Sensors, 2022
K. Aditi   +6 more
openaire   +2 more sources

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