Matthias Renker
University of Bern
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Publication
Featured researches published by Matthias Renker.
IEEE Transactions on Terahertz Science and Technology | 2013
Mark Whale; A. Murphy; Axel Murk; Matthias Renker; Urban Frisk; Olle Janson
In this paper, we present a novel technique for the removal of astigmatism in submillimeter-wave optical systems through employment of a specific combination of so-called astigmatic off-axis reflectors. This technique treats an orthogonally astigmatic beam using skew Gaussian beam analysis, from which an anastigmatic imaging network is derived. The resultant beam is considered truly stigmatic, with all Gaussian beam parameters in the orthogonal directions being matched. This is thus considered an improvement over previous techniques wherein a beam corrected for astigmatism has only the orthogonal beam amplitude radii matched, with phase shift and phase radius of curvature not considered. This technique is computationally efficient, negating the requirement for computationally intensive numerical analysis of shaped reflector surfaces. The required optical surfaces are also relatively simple to implement compared to such numerically optimized shaped surfaces. This technique is implemented in this work as part of the complete optics train for the STEAMR antenna. The STEAMR instrument is envisaged as a mutli-beam limb sounding instrument operating at submillimeter wavelengths. The antenna optics arrangement for this instrument uses multiple off-axis reflectors to control the incident radiation and couple them to their corresponding receiver feeds. An anastigmatic imaging network is successfully implemented into an optical model of this antenna, and the resultant design ensures optimal imaging of the beams to the corresponding feed horns. This example also addresses the challenges of imaging in multi-beam antenna systems.
Target and Background Signatures II | 2016
Arne Schroder; Uwe Aulenbacher; Matthias Renker; Urs Boniger; Roland Oechslin; Axel Murk; Peter Wellig
This contribution gives an overview of recent investigations regarding the detection of a consumer market unmanned aerial vehicles (UAV). The steadily increasing number of such drones gives rise to the threat of UAVs interfering civil air traffic. Technologies for monitoring UAVs which are flying in restricted air space, i. e. close to airports or even over airports, are desperately needed. One promising way for tracking drones is to employ radar systems. For the detection and classification of UAVs, the knowledge about their radar cross section (RCS) and micro-Doppler signature is of particular importance. We have carried out numerical and experimental studies of the RCS and the micro-Doppler of an example commercial drone in order to study its detectability with radar systems.
IEEE Transactions on Antennas and Propagation | 2013
Matthias Renker; Mark Whale; Axel Murk
We present a conceptual prototype model of a focal plane array unit for the STEAMR instrument, highlighting the challenges presented by the required high relative beam proximity of the instrument and focus on how edge-diffraction effects contribute to the arrays performance. The analysis was carried out as a comparative process using both PO & PTD and MoM techniques. We first highlight general differences between these computational techniques, with the discussion focusing on diffractive edge effects for near-field imaging reflectors with high truncation. We then present the results of in-depth modeling analyses of the STEAMR focal plane array followed by near-field antenna measurements of a breadboard model of the array. The results of these near-field measurements agree well with both simulation techniques although MoM shows slightly higher complex beam coupling to the measurements than PO & PTD.
Review of Scientific Instruments | 2014
Matthias Renker; Axel Murk; Simon Rea; Anders Emrich; Urban Frisk
This paper describes sideband response measurements and atmospheric observations with a double sideband and two Single Sideband (SSB) receiver prototypes developed for the multi-beam limb sounder instrument stratosphere-troposphere exchange and climate monitor radiometer. We first show an advanced Fourier-Transform Spectroscopy (FTS) method for sideband response and spurious signal characterization. We then present sideband response measurements of the different prototype receivers and we compare the results of the SSB receivers with sideband measurements by injecting a continuous wave signal into the upper and lower sidebands. The receivers were integrated into a total-power radiometer and atmospheric observations were carried out. The observed spectra were compared to forward model spectra to conclude on the sideband characteristics of the different receivers. The two sideband characterization methods show a high degree of agreement for both SSB receivers with various local oscillator settings. The measured sideband response was used to correct the forward model simulations. This improves the agreement with the atmospheric observations and explains spectral features caused by an unbalanced sideband response. The FTS method also allows to quantify the influence of spurious harmonic responses of the receiver.
ieee radar conference | 2015
Arne Schroder; Matthias Renker; Uwe Aulenbacher; Axel Murk; Urs Boniger; Roland Oechslin; Peter Wellig
european conference on antennas and propagation | 2011
Mark Whale; Matthias Renker; Axel Murk; O. Jansony; U. Frisky
Archive | 2011
Mark Whale; Axel Murk; Matthias Renker
Archive | 2011
Matthias Renker; Mark Whale; Axel Murk; A. Murphy; Richard J. Wylde
international radar symposium | 2018
Peter Wellig; Peter Speirs; Christof Schuepbach; Roland Oechslin; Matthias Renker; Urs Boeniger; Hans Pratisto
international radar symposium | 2018
Michael Caris; Frank Kloppel; Jörn Wilcke; Thorsten Brehm; Stefan Sieger; Rainer Sommer; Stephan Stanko; M. Frioud; D. Henke; Erich Meier; Matthias Renker; Peter Wellig