TY - JOUR A1 - Strohmeier, Michael A1 - Walter, Thomas A1 - Rothe, Julian A1 - Montenegro, Sergio T1 - Ultra-wideband based pose estimation for small unmanned aerial vehicles JF - IEEE Access N2 - This paper proposes a 3-D local pose estimation system for a small Unmanned Aerial Vehicle (UAV) with a weight limit of 200 g and a very small footprint of 10 cm×10cm. The system is realized by fusing 3-D position estimations from an Ultra-Wide Band (UWB) transceiver network with Inertial Measurement Unit (IMU) sensor data and data from a barometric pressure sensor. The 3-D position from the UWB network is estimated using Multi-Dimensional Scaling (MDS) and range measurements between the transceivers. The range measurements are obtained using Double-Sided Two-Way Ranging (DS-TWR), thus eliminating the need for an additional clock synchronization mechanism. The sensor fusion is accomplished using a loosely coupled Extended Kalman Filter (EKF) architecture. Extensive evaluation of the proposed system shows that a position accuracy with a Root-Mean-Square Error (RMSE) of 0.20cm can be obtained. The orientation angle can be estimated with an RMSE of 1.93°. KW - UAV KW - navigation KW - pose estimation KW - distance measurement KW - DecaWave KW - extended Kalman filter KW - UWB Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-177503 VL - 6 ER - TY - THES A1 - Tzschichholz, Tristan T1 - Relative pose estimation of known rigid objects using a novel approach to high-level PMD-/CCD- sensor data fusion with regard to applications in space T1 - Relative Lagebestimmung bekannter fester Objekte unter Verwendung eines neuen Ansatzes zur anwendungsnahen Sensordatenfusion einer PMD- und CCD-Kamera hinsichtlich ihrer Anwendungen im Weltraum N2 - In this work, a novel method for estimating the relative pose of a known object is presented, which relies on an application-specific data fusion process. A PMD-sensor in conjunction with a CCD-sensor is used to perform the pose estimation. Furthermore, the work provides a method for extending the measurement range of the PMD sensor along with the necessary calibration methodology. Finally, extensive measurements on a very accurate Rendezvous and Docking testbed are made to evaluate the performance, what includes a detailed discussion of lighting conditions. N2 - In der Arbeit wird eine neuartige Methode zur Bestimmung der relativen Lage eines bekannten Objektes vorgestellt, welche auf einem anwendungsspezifischen Datenfusionsprozess basiert. Dabei wird ein PMD-Sensor zusammen mit einem CCD-Sensor benutzt, um die Lagebestimmung vorzunehmen. Darüber hinaus liefert die Arbeit eine Methode, den Messbereich des PMD-Sensors zu erhöhen zusammen mit der notwendigen Kalibrierungsmethoden. Schließlich werden detailierte und weitreichende Messungen aus einer sehr genauen Rendezvous und Docking-Testanlage gemacht, um die Leistungsfähigkeit des Algorithmus zu demonstrieren, was auch eine detaillierte Behandung der Beleuchtungsbedingungen einschließt. T3 - Forschungsberichte in der Robotik = Research Notes in Robotics - 8 KW - Bildverarbeitung KW - PMD KW - phase unwrapping KW - rendezvous and docking KW - data fusion KW - pose estimation KW - Sensor KW - Raumfahrt KW - Image Processing Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-103918 SN - 978-3-923959-95-2 SN - 1868-7474 ER -