タイトル | A Hybrid FPGA/Tilera Compute Element for Autonomous Hazard Detection and Navigation |
著者(英) | Khanoyan, Garen; Werner, Robert A.; Trawny, Nikolas; Villalpando, Carlos Y.; Stern, Ryan A.; Carson, John M., III |
著者所属(英) | Jet Propulsion Lab., California Inst. of Tech. |
発行日 | 2013-03-02 |
言語 | eng |
内容記述 | To increase safety for future missions landing on other planetary or lunar bodies, the Autonomous Landing and Hazard Avoidance Technology (ALHAT) program is developing an integrated sensor for autonomous surface analysis and hazard determination. The ALHAT Hazard Detection System (HDS) consists of a Flash LIDAR for measuring the topography of the landing site, a gimbal to scan across the terrain, and an Inertial Measurement Unit (IMU), along with terrain analysis algorithms to identify the landing site and the local hazards. An FPGA and Manycore processor system was developed to interface all the devices in the HDS, to provide high-resolution timing to accurately measure system state, and to run the surface analysis algorithms quickly and efficiently. In this paper, we will describe how we integrated COTS components such as an FPGA evaluation board, a TILExpress64, and multi-threaded/multi-core aware software to build the HDS Compute Element (HDSCE). The ALHAT program is also working with the NASA Morpheus Project and has integrated the HDS as a sensor on the Morpheus Lander. This paper will also describe how the HDS is integrated with the Morpheus lander and the results of the initial test flights with the HDS installed. We will also describe future improvements to the HDSCE. |
NASA分類 | Spacecraft Instrumentation and Astrionics; Spacecraft Design, Testing and Performance; Electronics and Electrical Engineering; Space Transportation and Safety |
権利 | Copyright |
|