Intensity-associated remote sensing imaging field test technology passed acceptance

[China Instrument Network Instrument Research and Development] On November 7th, the 863 Program of the “Intensity Associated Remote Sensing Imaging Field Comprehensive Testing Technology” project led by the Ministry of Earth Observation of the Chinese Academy of Sciences held an acceptance meeting in Beijing.

Acceptance meeting site
The acceptance will be hosted by the National Remote Sensing Center of the Ministry of Science and Technology. The acceptance panel consists of 38 companies from China Electronics Technology Group Corporation, the National Satellite Meteorological Center, the Beijing Institute of Remote Sensing Information, the Institute of Resources and Information Research of the Chinese Academy of Forestry, Beijing Normal University. University, Tsinghua University, Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences. Wang Yu, Director of the Institute of Optoelectronics, Li Chuanrong, Director of the Science and Technology Commission, Tang Yan, Researcher of the Earth Observation Department, Wang Sheng, Deputy Director of the Balloon Center, and Project Leader, Han Shensheng, a member of the Chinese Academy of Sciences' Shanghai Guangji Institute, and members of the task force, attended the conference.
The acceptance report was conducted in a way that combines the meeting report with the on-site results display. At the acceptance meeting, the project leader Han Shensheng first introduced the overall project background, completion overview, and future development direction; then the project leader Wang Chaoliang reported the task completion status, key issues, solutions, and topics to the participating experts. Levels and evaluation of research results, etc.; then the expert group inspected the research results of the hardware and software of the project, including the tethered balloon system, stable platform, strength-associated sparse-based feature library system, on-site processing and comprehensive analysis system, and simulation of strength-related platforms. Adaptability analysis system. After on-the-spot questioning, inspection and discussion, the expert group believed that the project fulfilled all the technical indicators and expected results required by the task book, unanimously agreed that the project passed the acceptance, and highly evaluated the research results obtained by the project.
The “Intensity-Associated Remote Sensing Imaging Comprehensive Field Testing Technology” project broke through the three-year research cycle, breaking through the key objectives of external field performance testing, adaptive high-performance compressive sensing correlation reconstruction, high-power ball-based power supply, and stable platform flexible precision transmission control. With the technology, the first set of staring load field comprehensive test system in China was constructed, and three large-scale comprehensive field test tests were successfully carried out. This laid a solid foundation for the development and application of intensity-related remote sensing loads. The research results of the project will be incorporated into the National High Resolution Remote Sensing Integrated Calibration Field, serving the research and development of new remote sensing loads in China, analysis and verification of imaging application models, and further promoting the development of China's Earth observation technology.
(Original Title: The project of the “Intensity-related remote sensing imaging field test technology” project of the 863 Program of the Earth Observing Division successfully passed the inspection and acceptance)

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