遥感卫星的多光谱数据应用于找矿已取得显著成效,2004年7月中国卫星地面站开始提供ASTER(Advanced Space-borne Thermal Emission and Reflection Radiometer,高级星载热发射反照辐射计)数据,因涵盖波长范围宽[VNIR(Visible and Near In...遥感卫星的多光谱数据应用于找矿已取得显著成效,2004年7月中国卫星地面站开始提供ASTER(Advanced Space-borne Thermal Emission and Reflection Radiometer,高级星载热发射反照辐射计)数据,因涵盖波长范围宽[VNIR(Visible and Near Infra-red)、SWIR(Short wave-length Infra-red)、TIR(Thermal Infra-red)]、波段多(14个波段)、性价比合理等因素,ASTER数据的研究迅速发展。长久以来,对覆盖区进行蚀变遥感异常信息提取一直是遥感找矿的关注点之一。笔者等利用ASTER数据对浅覆盖区——包古图斑岩铜矿的Ⅱ号、Ⅴ号斑岩体进行蚀变遥感异常提取,提取的蚀变异常与野外地质情况吻合性好。分别提取了光谱特征谱带差异明显的2组蚀变矿物的异常信息:第一组是蒙脱石、埃洛石、伊利石与绢云母;第二组是方解石、黑云母与绿泥石。提出了需要进一步工作的异常靶区。展开更多
Multispectral time delay and integration charge coupled device (TDICCD) image compression requires a low- complexity encoder because it is usually completed on board where the energy and memory are limited. The Cons...Multispectral time delay and integration charge coupled device (TDICCD) image compression requires a low- complexity encoder because it is usually completed on board where the energy and memory are limited. The Consultative Committee for Space Data Systems (CCSDS) has proposed an image data compression (CCSDS-IDC) algorithm which is so far most widely implemented in hardware. However, it cannot reduce spectral redundancy in mukispectral images. In this paper, we propose a low-complexity improved CCSDS-IDC (ICCSDS-IDC)-based distributed source coding (DSC) scheme for multispectral TDICCD image consisting of a few bands. Our scheme is based on an ICCSDS-IDC approach that uses a bit plane extractor to parse the differences in the original image and its wavelet transformed coefficient. The output of bit plane extractor will be encoded by a first order entropy coder. Low-density parity-check-based Slepian-Wolf (SW) coder is adopted to implement the DSC strategy. Experimental results on space multispectral TDICCD images show that the proposed scheme significantly outperforms the CCSDS-IDC-based coder in each band.展开更多
遥感卫星图像数据量的高速增长,以及遥感卫星搭载的相机不同工作模式下产生的数据差异化处理的需求,为星间数据处理带来了巨大挑战。针对星载Gbit·s-1级高速数据收发及文件缓存等星间数据处理面临的问题,以百兆每秒级星载高速接收...遥感卫星图像数据量的高速增长,以及遥感卫星搭载的相机不同工作模式下产生的数据差异化处理的需求,为星间数据处理带来了巨大挑战。针对星载Gbit·s-1级高速数据收发及文件缓存等星间数据处理面临的问题,以百兆每秒级星载高速接收缓存系统为切入点,以遥感卫星数据处理的发展为依据,在分析SerDes传输原理的基础上,采用模型仿真和工程验证的方法,制定了高速串行数据链路层传输协议SSLLP(Satellite Serial Link Layer Protocol)和类文件化高速缓存的策略。在硬件设计和软件开发的基础上,最终完成了具备处理入口速率3.2 Gbit·s^(-1)并能以类文件化的方式缓存64个数据文件的星载数据处理单元的工程实现。测试结果表明,基于SSLLP的高速串行数据接收正确,缓存策略有效,系统高效可靠。该设计已在某型号任务中取得在轨验证,为星载高速串行数据处理系统提供了参考。展开更多
文摘遥感卫星的多光谱数据应用于找矿已取得显著成效,2004年7月中国卫星地面站开始提供ASTER(Advanced Space-borne Thermal Emission and Reflection Radiometer,高级星载热发射反照辐射计)数据,因涵盖波长范围宽[VNIR(Visible and Near Infra-red)、SWIR(Short wave-length Infra-red)、TIR(Thermal Infra-red)]、波段多(14个波段)、性价比合理等因素,ASTER数据的研究迅速发展。长久以来,对覆盖区进行蚀变遥感异常信息提取一直是遥感找矿的关注点之一。笔者等利用ASTER数据对浅覆盖区——包古图斑岩铜矿的Ⅱ号、Ⅴ号斑岩体进行蚀变遥感异常提取,提取的蚀变异常与野外地质情况吻合性好。分别提取了光谱特征谱带差异明显的2组蚀变矿物的异常信息:第一组是蒙脱石、埃洛石、伊利石与绢云母;第二组是方解石、黑云母与绿泥石。提出了需要进一步工作的异常靶区。
基金supported by the National High Technology Research and Development Program of China (Grant No. 863-2-5-1-13B)
文摘Multispectral time delay and integration charge coupled device (TDICCD) image compression requires a low- complexity encoder because it is usually completed on board where the energy and memory are limited. The Consultative Committee for Space Data Systems (CCSDS) has proposed an image data compression (CCSDS-IDC) algorithm which is so far most widely implemented in hardware. However, it cannot reduce spectral redundancy in mukispectral images. In this paper, we propose a low-complexity improved CCSDS-IDC (ICCSDS-IDC)-based distributed source coding (DSC) scheme for multispectral TDICCD image consisting of a few bands. Our scheme is based on an ICCSDS-IDC approach that uses a bit plane extractor to parse the differences in the original image and its wavelet transformed coefficient. The output of bit plane extractor will be encoded by a first order entropy coder. Low-density parity-check-based Slepian-Wolf (SW) coder is adopted to implement the DSC strategy. Experimental results on space multispectral TDICCD images show that the proposed scheme significantly outperforms the CCSDS-IDC-based coder in each band.
文摘遥感卫星图像数据量的高速增长,以及遥感卫星搭载的相机不同工作模式下产生的数据差异化处理的需求,为星间数据处理带来了巨大挑战。针对星载Gbit·s-1级高速数据收发及文件缓存等星间数据处理面临的问题,以百兆每秒级星载高速接收缓存系统为切入点,以遥感卫星数据处理的发展为依据,在分析SerDes传输原理的基础上,采用模型仿真和工程验证的方法,制定了高速串行数据链路层传输协议SSLLP(Satellite Serial Link Layer Protocol)和类文件化高速缓存的策略。在硬件设计和软件开发的基础上,最终完成了具备处理入口速率3.2 Gbit·s^(-1)并能以类文件化的方式缓存64个数据文件的星载数据处理单元的工程实现。测试结果表明,基于SSLLP的高速串行数据接收正确,缓存策略有效,系统高效可靠。该设计已在某型号任务中取得在轨验证,为星载高速串行数据处理系统提供了参考。