Pin-point landing is required to enable missions to land close, typically within 10 meters, to scientifically important targets in generally hazardous terrain. In Pin Point Landing both high accuracy and high speed estimation of position and orientation is needed to provide input to the control system to safely choose and navigate to a safe landing site. A proposed algorithm called VISion aided Inertial NAVigation (VISINAV) has shown that the accuracy requirements can be met. [2][3] VISINAV was shown in software only, and was expected to use FPGA enhancements in the future to improve the computational speed needed for pin point landing during Entry Descent and Landing (EDL). Homography, feature detection and spatial correlation are computationally intensive parts of VISINAV. Homography aligns the map image with the descent image so that small correlation windows can be used, and feature detection provides regions that spatial correlation can track from frame to frame in order to estimate vehicle motion. On MER the image Homography, Feature Detection and Correlation would take approximately 650ms tracking 75 features between frames. We implemented Homography, Feature detection and Correlation on a Virtex 4 LX160 FPGA to run in under 25ms while tracking 500 features to improve algorithm reliability and throughput.


    Access

    Access via TIB

    Check availability in my library

    Order at Subito €


    Export, share and cite



    Title :

    Implementation of Pin Point Landing Vision Components in an FPGA System


    Contributors:

    Conference:

    2011 IEEE Aerospace Conference ; 2011 ; Big Sky, MT, United States



    Publication date :

    2011-03-05




    Type of media :

    Conference paper


    Type of material :

    No indication


    Language :

    English




    VISION-BASED LANDING SYSTEM

    GARIEL MAXIME / BALDWIN IAN / SHIMANUKI BRIAN et al. | European Patent Office | 2023

    Free access

    LANDING POINT INDICATION SYSTEM

    COVINGTON CHARLES E / REGNIER BRADLEY / WORSHAM ROBERT et al. | European Patent Office | 2017

    Free access

    FPGA Vision Data Architecture

    Online Contents | 2013


    Vision-Based Aircraft Landing Aid

    ZHANG GUOBIAO | European Patent Office | 2015

    Free access

    Methods and system for vision-based landing

    WU BO / LIU ANG / ZHANG LITIAN | European Patent Office | 2023

    Free access