首页> 外文会议>Conference on infrared remote sensing and instrumentation >Onboard infrared signal processing system for asteroid sample return mission HAYABUSA2
【24h】

Onboard infrared signal processing system for asteroid sample return mission HAYABUSA2

机译:小行星样本返回任务HAYABUSA2的车载红外信号处理系统

获取原文

摘要

Onboard signal processing system for infrared sensors has been developed for HAYABUSA2 for the exploration of C class near-Earth asteroid 162173 (1999JU3), which is planned to be launched in 2014. An optical navigation camera with telephoto lens (ONC-T), a thermal-infrared imager (TIR), and a near infrared spectrometer (NIRS3) have been developed for the observation of geology, thermo-physical properties, and organic or hydrated materials on the asteroid. ONC-T and TIR are used for those scientific purposes as well as assessment of landing site selection and safe descent operation onto the asteroid surface for sample acquisition. NIRS3 is used to characterize the mineralogy of the asteroid surface by observing the 3-micron band, where the particular diagnostic absorption features due to hydrated minerals appear.Since the processing cycle of these sensors are independent, data processing, formatting and recording are processed in parallel. In order to provide the functions within the resource limitation of deep space mission, automatic packet routing function is realized in one chip router with Space Wire standard. Thanks to the Space Wire upper layer protocol (remote memory access protocol: RMAP), the variable length file system operation function can be delegated to the data recorder from the CPU module of the digital electronics of the sensor system. In consequence the infrared spectrometer data from NIRS3 is recorded in parallel with the infrared image sensors. High speed image compression algorithm is also developed for both lossless and lossy image compression in order to eliminate additional hardware resource while maintaining the JPEG2000 equivalent image quality.
机译:已为HAYABUSA2开发了用于红外传感器的机载信号处理系统,用于探索C级近地小行星162173(1999JU3),该飞机计划于2014年发射。已经开发了热红外成像仪(TIR)和近红外光谱仪(NIRS3),用于观测小行星上的地质,热物理性质以及有机或水合物质。 ONC-T和TIR用于这些科学目的,以及评估着陆点的选择和在小行星表面上安全下降的操作,以进行样品采集。 NIRS3通过观察3微米谱带来表征小行星表面的矿物学特征,其中出现了由水合矿物质引起的特殊诊断吸收特征。由于这些传感器的处理周期是独立的,因此数据处理,格式化和记录都在平行线。为了在深空任务的资源限制范围内提供功能,在具有Space Wire标准的单芯片路由器中实现了自动分组路由功能。得益于Space Wire上层协议(远程存储器访问协议:RMAP),可变长度文件系统操作功能可以从传感器系统的数字电子设备的CPU模块委派给数据记录器。因此,来自NIRS3的红外光谱仪数据与红外图像传感器并行记录。还开发了用于无损和有损图像压缩的高速图像压缩算法,以便在维持JPEG2000等效图像质量的同时消除额外的硬件资源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号