{"title":"以农业为导向的小型地球再遥感航天器轨道星座目标特性的最新技术发展状况和趋势分析","authors":"D.O. Khramov, O. Volosheniuk","doi":"10.15407/itm2023.04.031","DOIUrl":null,"url":null,"abstract":"The goal of this paper is to assess the existing capabilities of orbital constellations of agriculture-oriented Earth remote sensing spacecraft and the prospects for their development in the nearest future. The paper analyzes the state of the art and the trends in the development of modern orbital constellations of private companies’ small Earth remote sensing satellites used in solving agricultural problems. Important sources of information in the space industry, such as NewSpace Index, Gunter's Space Page, and WMO OSCAR, were analyzed. 52 constellations of spacecraft for optical multispectral and hyperspectral, thermal, and microwave (radar) imaging are considered. It is shown that they provide a survey frequency of several times a day. The minimum spatial resolution of optoelectronic surveillance sensors is 1 m (in the panchromatic channel). This allows one to solve problems at an intrafield level, quasi-continuously monitor the plant condition, and use spectral patterns and texture features in solving applied agricultural problems. All the constellations of radar satellites use the X-band, except for the radars of the Spacety constellation (China), which use the C-band. It is shown that the number of constellations of small remote sensing spacecraft in the period 2021–2025 is to be increased by more than three times compared to the period 2016–2020. The number of countries developing constellations of Earth remote sensing satellites has increased significantly. The leading countries and companies in the number and size of constellations are the United States and China and Planet (USA) and Chang Guang Satellite Technology Corporation (China), respectively. Private developers are particularly interested in thermal infrared imaging and hyperspectral optical imaging data. A new line in the private space industry, which is expected to facilitate the solution of agricultural problems, is the deployment of constellations of small meteorological satellites.","PeriodicalId":287730,"journal":{"name":"Technical mechanics","volume":"16 4","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-12-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Analysis of the state of the art and the trends in the development of the target characteristics of orbital constellations of small agriculture-oriented Earth re-mote sensing spacecraft\",\"authors\":\"D.O. Khramov, O. 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引用次数: 0
摘要
本文的目的是评估面向农业的地球遥感航天器轨道星座的现有能力及其在最近的将来的发展前景。本文分析了用于解决农业问题的私营公司小型地球遥感卫星现代轨道星座的技术现状和发展趋势。分析了空间行业的重要信息来源,如 NewSpace Index、Gunter's Space Page 和 WMO OSCAR。考虑了 52 个用于光学多光谱和超光谱、热和微波(雷达)成像的航天器星座。结果表明,它们的勘测频率为每天数次。光电监视传感器的最小空间分辨率为 1 米(全色通道)。这样就可以解决田间问题,对植物状况进行准连续监测,并利用光谱模式和纹理特征解决农业应用问题。除了 Spacety 星座(中国)的雷达使用 C 波段外,所有雷达卫星星座都使用 X 波段。据显示,2021-2025 年期间小型遥感航天器星座的数量将比 2016-2020 年期间增加 3 倍以上。开发地球遥感卫星星座的国家数量大幅增加。星座数量和规模领先的国家和公司分别是美国、中国和 Planet 公司(美国)以及长光卫星技术公司(中国)。私营开发商对热红外成像和高光谱光学成像数据特别感兴趣。私营空间工业的一个新领域是部署小型气象卫星群,预计这将有助于解决农业问题。
Analysis of the state of the art and the trends in the development of the target characteristics of orbital constellations of small agriculture-oriented Earth re-mote sensing spacecraft
The goal of this paper is to assess the existing capabilities of orbital constellations of agriculture-oriented Earth remote sensing spacecraft and the prospects for their development in the nearest future. The paper analyzes the state of the art and the trends in the development of modern orbital constellations of private companies’ small Earth remote sensing satellites used in solving agricultural problems. Important sources of information in the space industry, such as NewSpace Index, Gunter's Space Page, and WMO OSCAR, were analyzed. 52 constellations of spacecraft for optical multispectral and hyperspectral, thermal, and microwave (radar) imaging are considered. It is shown that they provide a survey frequency of several times a day. The minimum spatial resolution of optoelectronic surveillance sensors is 1 m (in the panchromatic channel). This allows one to solve problems at an intrafield level, quasi-continuously monitor the plant condition, and use spectral patterns and texture features in solving applied agricultural problems. All the constellations of radar satellites use the X-band, except for the radars of the Spacety constellation (China), which use the C-band. It is shown that the number of constellations of small remote sensing spacecraft in the period 2021–2025 is to be increased by more than three times compared to the period 2016–2020. The number of countries developing constellations of Earth remote sensing satellites has increased significantly. The leading countries and companies in the number and size of constellations are the United States and China and Planet (USA) and Chang Guang Satellite Technology Corporation (China), respectively. Private developers are particularly interested in thermal infrared imaging and hyperspectral optical imaging data. A new line in the private space industry, which is expected to facilitate the solution of agricultural problems, is the deployment of constellations of small meteorological satellites.