NASA 2024-2025 in Review: Progress, Accomplishments and Challenges
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摘要: 2024-2025年, 美国国家航空航天局(NASA)持续推进月球–火星深空探索、空间科学研究、载人航天工程、航空技术创新与商业航天能力建设, 在多个关键领域取得重要进展. 在深空探索方面, NASA系统推进载人重返月球探索计划, 完成多项关键系统测试与任务准备, 并取得阶段性成果; 在空间科学方面, 天体生物学、行星防御、日球层物理、空间天文学及对地观测领域持续产出重要科学发现; 在近地轨道方面, 国际空间站实现连续载人驻留25周年, 并加快向商业空间站过渡; 在航空与航天技术方面, 静音超声速、高超声速及城市空中交通技术不断取得突破. 本文系统梳理NASA在2024-2025年取得的主要进展与成果, 并简要分析期间NASA经历的预算波动, 为理解其未来发展方向提供参考.Abstract: In 2024-2025, National Aeronautics and Space Administration (NASA) of the USA achieved a series of significant milestones across deep-space exploration, human spaceflight, and aeronautics. Guided by its Moon to Mars exploration approach, NASA continued to advance the Artemis campaign through critical system integration, mission preparation, and sustained development of key elements, including the Gateway lunar platform, the Commercial Lunar Payload Services (CLPS) initiative, and associated lunar surface exploration capabilities. As part of the agency’s Golden Age of innovation and exploration, international collaboration further expanded during this period, NASA and its partners landed two robotic science missions on the Moon; garnered more signatories for the Artemis Accords with 59 nations. In Low Earth Orbit (LEO), the International Space Station (ISS) reached its 25th anniversary of continuous human presence while accelerating the transition toward commercial orbital platforms. NASA also led a variety of science discoveries and technological outcomes. In Earth science, a joint U.S.-India satellite mission enhanced global monitoring of terrestrial ecosystems and cryospheric dynamics. In deep-space communications, the successful demonstration of laser-based communications substantially increased data transmission capabilities. In planetary defense, the third interstellar object in our solar system was identified and tracked. In aeronautics, the first flight test of the X-59 low-boom supersonic aircraft and continued progress in hypersonic technologies and Urban Air Mobility (UAM) underscored NASA’s role in next-generation aviation innovation. Despite these achievements, NASA faces mounting challenges. Budgetary constraints, program cost growth, and schedule delays—particularly in flagship exploration programs—pose risks to long-term mission sustainability. As NASA transitions toward a hybrid model integrating governmental leadership with commercial service provision, its future trajectory will depend on balancing fiscal discipline, technological ambition, and international collaboration. This paper reviews these major accomplishments and concludes with an addendum on NASA’s current budget challenges, providing a strategic framework for understanding the agency's current state and future trajectory.
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[1] TAVEAU J. NASA accelerates space exploration, earth science for all in 2024[EB/OL]. (2024-12-06)[2026-01-31]. https://www.nasa.gov/news-release/nasa-accelerates-space-exploration-earth-science-for-all-in-2024/ [2] TAVEAU J. NASA ignites new golden age of exploration, innovation in 2025[EB/OL]. (2025-12-16)[2026-01-31]. https://www.nasa.gov/news-release/nasa-ignites-new-golden-age-of-exploration-innovation-in-2025/ [3] NASA. Moon to mars architecture[EB/OL]. (2026-01-31)[2026-01-31]. https://www.nasa.gov/moontomarsarchitecture/ [4] NASA. Artemis II[EB/OL]. (2026-01-31)[2026-01-31]. https://www.nasa.gov/mission/artemis-ii/ [5] NASA. Artemis III[EB/OL]. (2026-01-31)[2026-01-31]. https://www.nasa.gov/mission/artemis-iii/ [6] DONALDSON A A. NASA selects companies to advance moon mobility for Artemis missions[EB/OL]. (2024-04-03)[2026-01-31]. https://www.nasa.gov/news-release/nasa-selects-companies-to-advance-moon-mobility-for-artemis-missions/ [7] NASA. Commercial lunar payload services[EB/OL]. (2026-01-31)[2026-01-31]. https://www.nasa.gov/commercial-lunar-payload-services/ [8] HAMMOND T G, PANIKKANVALAPPIL S R, ALLEN P L, et al. Programmed cell death and redox metabolism protect Chlamydomonas reinhardtii populations from the galactic cosmic environment on the Artemis-1 mission[J]. Scientific Reports, 2025, 15(1): 23396. doi: 10.1038/s41598-025-05419-w [9] CRANFORD N. Artemis II crew to advance human spaceflight research[EB/OL]. (2025-09-12)[2026-01-31]. https://www.nasa.gov/humans-in-space/artemis-ii-crew-to-advance-human-spaceflight-research/ [10] HRP Communications Team. NASA announces CHAPEA crew for year-long mars mission simulation[EB/OL]. (2025-09-05)[2026-01-31]. https://www.nasa.gov/missions/analog-field-testing/chapea/nasa-announces-chapea-crew-for-year-long-mars-mission-simulation/ [11] Office of the Spokesperson. United States welcomes Hungary, Malaysia and the Philippines signing the Artemis accords[EB/OL]. (2025-12-02)[2026-01-31]. https://www.state.gov/releases/office-of-the-spokesperson/2025/12/united-states-welcomes-hungary-malaysia-and-the-philippines-signing-the-artemis-accords/ [12] NASA Hubble Mission Team. NASA’s Hubble traces hidden history of Andromeda galaxy[EB/OL]. (2025-01-16)[2026-01-31]. https://science.nasa.gov/missions/hubble/nasas-hubble-traces-hidden-history-of-andromeda-galaxy/ [13] SHEKHTMAN L. NASA’s SPHEREx space telescope begins capturing entire sky[EB/OL]. (2025-05-01)[2026-01-31]. https://www.nasa.gov/missions/spherex/nasas-spherex-space-telescope-begins-capturing-entire-sky/ [14] TAVEAU J. NASA Says mars rover discovered potential biosignature last year[EB/OL]. (2025-09-10)[2026-01-31]. https://www.nasa.gov/news-release/nasa-says-mars-rover-discovered-potential-biosignature-last-year/ [15] SHEKHTMAN L. NASA’s curiosity rover detects largest organic molecules found on mars[EB/OL]. (2025-03-24)[2026-01-31]. https://science.nasa.gov/missions/mars-science-laboratory/nasas-curiosity-rover-detects-largest-organic-molecules-found-on-mars/ [16] TAVEAU J. NASA’s asteroid Bennu sample reveals mix of life’s ingredients[EB/OL]. (2025-01-29)[2026-01-31]. https://www.nasa.gov/news-release/nasas-asteroid-bennu-sample-reveals-mix-of-lifes-ingredients/ [17] JOHNSON-GROH M. NASA’s parker solar probe snaps closest-ever images to sun[EB/OL]. (2025-07-10)[2026-01-31]. https://science.nasa.gov/science-research/heliophysics/nasas-parker-solar-probe-snaps-closest-ever-images-to-sun/ [18] LABORATORY J P. NASA’s deep space communications demo exceeds project expectations[EB/OL]. (2025-09-18)[2026-01-31]. https://www.nasa.gov/directorates/stmd/tech-demo-missions-program/deep-space-optical-communications-dsoc/nasas-deep-space-communications-demo-exceeds-project-expectations/ [19] MORTON E. View interstellar comet 3I/ATLAS through NASA’s multiple lenses[EB/OL]. (2025-11-19)[2026-01-31]. https://science.nasa.gov/solar-system/view-interstellar-comet-3i-atlas-through-nasas-multiple-lenses/ [20] NASA Science Editorial Team. Latest calculations conclude asteroid 2024 YR4 now poses no significant threat to earth in 2032 and beyond[EB/OL]. (2025-02-24)[2026-01-31]. https://science.nasa.gov/blogs/planetary-defense/2025/02/24/latest-calculations-conclude-asteroid-2024-yr4-now-poses-no-significant-threat-to-earth-in-2032-and-beyond/ [21] DOYLE T P. New NASA strategy envisions sustainable future for space operations[EB/OL]. (2024-04-09)[2026-01-31]. https://www.nasa.gov/news-release/new-nasa-strategy-envisions-sustainable-future-for-space-operations/ [22] Commercial Low Earth Orbit Development Program. NASA’s low earth orbit microgravity strategy[EB/OL]. (2024-12-31)[2026-01-31]. https://www.nasa.gov/wp-content/uploads/2024/12/2024-12-lms-final-goals-and-objectives.pdf [23] DORAN D. 25 Years of scientific discovery aboard the international space station[EB/OL]. (2025-11-21)[2026-01-31]. https://www.nasa.gov/missions/station/iss-research/25-year-of-scientific-discovery-aboard-international-space-station/ [24] NASA. NASA sees key progress on Starlab commercial space station[EB/OL]. (2025-07-16)[2026-01-31]. https://www.nasa.gov/humans-in-space/commercial-space/leo-economy/nasa-sees-key-progress-on-starlab-commercial-space-station/ [25] CHOLULA N. NASA’s X-59 completes first flight, prepares for more flight testing[EB/OL]. (2025-11-19)[2026-01-31]. https://www.nasa.gov/centers-and-facilities/armstrong/nasas-x-59-completes-first-flight-prepares-for-more-flight-testing/ [26] LEVINE J. NASA tech to measure heat, strain in hypersonic flight[EB/OL]. (2025-06-18)[2026-01-31]. https://www.nasa.gov/centers-and-facilities/armstrong/nasa-tech-to-measure-heat-strain-in-hypersonic-flight/ [27] BANKE J. NASA advances pressure sensitive paint research capability[EB/OL]. (2025-07-03)[2026-01-31]. https://www.nasa.gov/aeronautics/pressure-sensitive-paint-2025/ [28] FRIESEN T. What is NASA’s distributed spacecraft autonomy?[EB/OL]. (2025-08-05)[2026-01-31]. https://www.nasa.gov/centers-and-facilities/ames/what-is-nasas-distributed-spacecraft-autonomy/ [29] ATKINSON J. Strap in! NASA aeroshell material takes extended space trip[EB/OL]. (2025-08-27)[2026-01-31]. https://www.nasa.gov/centers-and-facilities/langley/strap-in-nasa-aeroshell-material-takes-extended-space-trip/ [30] NASA. Maiden flight of Spyder hypersonic rocket[EB/OL]. (2025-06-13)[2026-01-31]. https://www.nasa.gov/stmd-flight-opportunities/flight-summaries/maiden-flight-of-spyder-hypersonic-rocket/ [31] NASA. Fiscal year 2026 agency fact sheet[EB/OL]. (2025-05-30)[2026-01-31]. https://www.nasa.gov/wp-content/uploads/2025/05/combined-mission-fact-sheets-finalv2-05302026-1207pm.pdf?emrc=686bc4d4ecaa1 [32] The Planetary Society. WE saved NASA science in 2026[EB/OL]. (2025-05-30)[2026-01-31]. https://www.planetary.org/save-nasa-science [33] The White House. Congressional bill H. R. 4323 and H. R. 6938 signed into law[EB/OL]. (2026-01-23)[2026-01-31]. https://www.whitehouse.gov/briefings-statements/2026/01/congressional-bill-h-r-4323-and-h-r-6938-signed-into-law/ [34] 119th Congress. H. R. 1 - An act to provide for reconciliation pursuant to title II of H. Con. Res. 14[EB/OL]. (2025-07-04)[2026-01-31]. https://www.congress.gov/bill/119th-congress/house-bill/1/text [35] JEFF F. NASA to look for new options to carry out Mars Sample Return program[EB/OL]. (2024-04-15)[2026-01-31]. https://spacenews.com/nasa-to-look-for-new-options-to-carry-out-mars-sample-return-program/ [36] JEFF F. ESA finalizing ministerial package[EB/OL]. (2025-10-23)[2026-01-31]. https://spacenews.com/esa-finalizing-ministerial-package/ -
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范唯唯 女, 1989年8月出生于黑龙江省哈尔滨市, 现为中国科学院科技战略咨询研究院科技战略情报研究所创新副研究员, 博士研究生, 主要研究方向为空间科技战略情报研究、俄罗斯科技政策研究. E-mail:
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