The development direction of military aviation equipment technology directly affects a country's military aviation equipment, and thus determines the strength of a country's air power. This article analyzes and studies military aviation equipment that are being developed by the world's aviation and military powers and the application of emerging technologies to military aviation equipment. It is argued that the future military aviation equipment will develop in the direction featuring systematic, informational, agile, remote, and intelligent. The suggestions for the future development of China's military aviation equipment are also proposed.
ZHANG Dongbo
,
ZHAO Qunli
. Research on the development trend of military aviation equipment technology[J]. Science & Technology Review, 2018
, 36(22)
: 127
-130
.
DOI: 10.3981/j.issn.1000-7857.2018.22.011
[1] 张海涛. 美国2019财年国防预算释放了哪些信号[N]. 中国航空报, 2018-03-27(5). Zhang Haitao. What signals did the US defense budget for the 2019 fiscal year release[N]. China Aviation News, 2018-03-27(5).
[2] Hallion R P, Bedke M G C M, Schanz M V. Hypersonic weapons and US national security:A 21st century breakthrough[R]. Arlington, VA:The Mitchell Institute for Aerospace Studies Air Force Association, 2016.
[3] Seligman L. USAF speeds next-gen fighter family, with eye toward china[EB/OL].[2018-02-21]. http://aviationweek.com/defense/usaf-speeds-next-gen-fighter-family-eye-toward-china.
[4] Drew J. MDA backs laser-equipped UAVs to shoot down missiles[EB/OL]. (2016-06-27)[2018-02-21]. http://aviationweek.com/awindefense/mda-backs-laser-equipped-uavs-shootdown-missiles.
[5] Drew J. Analysis:Defence firms get creative at Air Warfare Symposium[EB/OL]. (2016-02-25)[2018-02-21]. https://www.flightglobal.com/news/articles/analysis-defence-firms-get-creative-at-air-warfare-422373.
[6] Drew J. US bomber force preparing computer-killing HPM cruise missiles[EB/OL]. (2016-08-01)[2018-02-21]. http://aviationweek.com/defense/us-bomber-force-preparing-computerkilling-hpm-cruise-missiles.
[7] Norris G. GE details sixth-generation adaptive fighter engine plan[EB/OL]. (2015-01-29)[2018-02-21]. http://aviationweek.com/defense/ge-details-sixth-generation-adaptive-fighter-engine-plan.
[8] Graphene-ceramic metamaterial shows promise in sensors and heat shields[EB/OL]. (2017-08-10)[2018-02-21]. https://www.theengineer.co.uk/graphene-metamaterial.
[9] Enterprise Capability Collaboration Team. Air superiority 2030 flight plan[R]. Arlington, VA:United States Air Force, 2016.
[10] United States Air Force. Air force future operating concept[R]. Arlington, VA:United States Air Force, 2015.
[11] Deptula D A. Consolidating the revolution:Optimizing the potential of remotely piloted aircraft[R]. Arlington, VA:The Mitchell Institute for Aerospace Studies Air Force Association, 2017.