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A dynamic planning method for satellite imaging mission based on improved genetic algorithm


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Khan, O., Moursi, M. S. E., Zeineldin, H. H., Khadkikar, V., & Hossani, M. A. (2019). A benchmark model for multi-orbital transient analysis of satellite electrical power subsystem. IET Renewable Power Generation, 14(2). Search in Google Scholar

Ryu, J. H. (2021). Decadal measurements of the first geostationary ocean color satellite (goci) compared with modis and viirs data. Remote Sensing, 14. Search in Google Scholar

Podgorn, J., Marin, F., & Doviak, M. (2023). X-ray polarization from parsec-scale components of active galactic nuclei: observational prospects. Monthly Notices of the Royal Astronomical Society (1), 1. Search in Google Scholar

Pittori, C. (2018). Agile results on relativistic outflows above 100mev. International Journal of Modern Physics D, 27(10). Search in Google Scholar

Zhou, G., Xu, W., Niu, C., Zhang, K., Ma, Z., & Wang, J., et al. (2017). Versatile time-dependent spatial distribution model of sun glint for satellite-based ocean imaging. Journal of Applied Remote Sensing, 11(1), 016020. Search in Google Scholar

Mayumi, Y., Maki, K., Nagao, T. M., Hiroshi, M., Tomoyuki, N., & Akiko, H. (2018). Common retrieval of aerosol properties for imaging satellite sensors. Journal of the Meteorological Society of Japan, 96. Search in Google Scholar

Kuhlmann, G., Brunner, D., Grégoire Broquet, & Meijer, Y. (2020). Quantifying co2 emissions of a city with the copernicus anthropogenic co2 monitoring satellite mission. Atmospheric Measurement Techniques, 13(12), 6733–6754. Search in Google Scholar

Mcgrath, C. N., Scott, C., Cowley, D., & Macdonald, M. (2020). Towards a satellite system for archaeology? simulation of an optical satellite mission with ideal spatial and temporal resolution, illustrated by a case study in scotland. Remote Sensing, 12(24), 4100. Search in Google Scholar

Kotarba, A. Z. (2022). Errors in global cloud climatology due to transect sampling with the calipso satellite lidar mission. Atmospheric research. Search in Google Scholar

I.R. Mann C.D.A. Nokes C. Cupido D.M. Miles B. Bruner D.G. Elliott D. Barona S. Damkjar C.F. Lange D. Sameoto L. Wyard-Scott M. Fleischauer C. Robson C. Lissinna D.K. Milling R.E. Ferrari A. Kale J. Grey A. Hamilton K. Ball K. Cote T. Robertson E. Austen G. Yi T. Hrynyk. (2020). The experimental albertan satellite #1 (ex-alta 1) cube-satellite mission. Space Science Reviews, 216(5). Search in Google Scholar

Chen, Y., Xu, M., Shen, X., Zhang, G., & Xu, J. (2020). A multi-objective modeling method of multi-satellite imaging task planning for large regional mapping. Remote Sensing, 12(3), 344. Search in Google Scholar

Bartholomaeus, J., Barschke, M. F., Werner, P., & Stoll, E. (2022). Initial results of the tubin small satellite mission for wildfire detection. Acta astronautica. Search in Google Scholar

Cui, K., Xiang, J., & Zhang, Y. (2017). Mission planning optimization of video satellite for ground multi-object staring imaging. Advances in Space Research, S0273117717307950. Search in Google Scholar

Frasson, R. P. D. M., Guy J.‐P. Schumann, Kettner, A. J., Brakenridge, G. R., & Krajewski, W. F. (2019). Will the surface water and ocean topography (swot) satellite mission observe floods?. Geophysical Research Letters, 46(17–18). Search in Google Scholar

Tseng, T. P., Chen, S. Y., Chen, K. L., Huang, C. Y., & Yeh, W. H. (2018). Determination of near real-time gnss satellite clocks for the formosat-7/cosmic-2 satellite mission. GPS Solutions, 22(2), 47. Search in Google Scholar

Lu, Z., Shen, X., Li, D., Chen, Y., & Li, D. (2021). A mission planning modeling method of multipoint target imaging within a single pass for super-agile earth observation satellite. IEEE Systems Journal, PP(99), 1–12. Search in Google Scholar

Schrder, L., Horwath, M., Dietrich, R., Helm, V., Broeke, M. R. V. D., & Ligtenberg, S. (2019). Four decades of antarctic surface elevation changes from multi-mission satellite altimetry. The Cryosphere. Search in Google Scholar

Barentine, J. C., Walczak, K., Gyuk, G., Tarr, C., & Longcore, T. (2021). A case for a new satellite mission for remote sensing of night lights. Remote Sensing, 13(12). Search in Google Scholar

eISSN:
2444-8656
Language:
English
Publication timeframe:
Volume Open
Journal Subjects:
Life Sciences, other, Mathematics, Applied Mathematics, General Mathematics, Physics