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Philipp Wojaczek

Researcher at Fraunhofer Society

Publications -  21
Citations -  153

Philipp Wojaczek is an academic researcher from Fraunhofer Society. The author has contributed to research in topics: Passive radar & Clutter. The author has an hindex of 5, co-authored 20 publications receiving 86 citations.

Papers
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Journal ArticleDOI

Reciprocal-Filter-Based STAP for Passive Radar on Moving Platforms

TL;DR: An appropriate space-time adaptive processing scheme is proposed to cope with the Doppler spread clutter returns aiming at ground moving target indication applications and exploits the benefits of the reciprocal filtering strategy applied at a range compression stage together with a flexible displaced phase center antenna approach.
Journal ArticleDOI

Passive Radar STAP Detection and DoA Estimation Under Antenna Calibration Errors

TL;DR: This article addresses the problem of clutter cancelation for slowly moving target detection and localization in multichannel passive radar onboard mobile platforms with a post-Doppler space-time adaptive processing approach, and proposes three schemes aimed at recovering the detection performance losses associated with channel calibration errors.
Journal ArticleDOI

Passive Radar DPCA Schemes With Adaptive Channel Calibration

TL;DR: This article addresses the problem of direct signal interference (DSI) and clutter cancellation for passive radar systems on moving platforms employing displaced phase centre antenna (DPCA) approach with a two-stage strategy, consisting of a preliminary DSI removal stage at each receive channel, followed by a clutter-based calibration approach that basically enables an effective DPCA clutter suppression.
Proceedings ArticleDOI

A two-stage approach for direct signal and clutter cancellation in passive radar on moving platforms

TL;DR: This paper addresses the problem of direct signal interference (DSI) and clutter cancellation for passive radar systems on moving platforms using displaced phase centre antenna (DPCA) approach in the presence of receive channels imbalance.