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作 者:凌小方 莫文静 裴昌凡 余睿 LING Xiaofang;MO Wenjing;PEI Changfan
机构地区:[1]成都飞机工业(集团)有限责任公司,成都610092
出 处:《科技创新与应用》2024年第35期27-30,共4页Technology Innovation and Application
摘 要:相比于传统测量技术,量子测量技术具有更高的分辨率、灵敏度和稳定性的优势,其发展前景十分广阔。量子测量技术提供航空零部件精密测量结果,用于复杂环境下的形变监测和结构设计,提升飞行性能和安全性。新一代量子传感技术可提供精度更高、性能更稳定的航空器姿态、环境参数测量结果,从而改善导航和姿态控制的准确性,提高航空器的安全性和任务执行能力。目前,我国在量子测量领域起步较晚,相关研究机构探索了将量子测量技术应用于航空领域的潜力,但仍处于理论设计和实验阶段。未来研究中,进一步加强量子测量技术与航空制造业深入结合,推动科研成果转化应用,促使航空装备的颠覆性变革。Compared to traditional measurement techniques,quantum measurement technology has the advantages of higher resolution,sensitivity and stability,and its development prospects are very broad.Quantum measurement technology provides precise measurement results of aerospace parts and components for deformation monitoring and structural design in complex environments to improve flight performance and safety.The new generation of quantum sensing technology can provide higher precision and more stable performance measurement results of aircraft attitude and environmental parameters,thereby improving the accuracy of navigation and attitude control,and improving the safety and mission execution capabilities of the aircraft.At present,China started late in the field of quantum measurement,and relevant research institutions have explored the potential of applying quantum measurement technology to the aviation field,but they are still in the theoretical design and experimental stage.In future research,we will further strengthen the in-depth integration of quantum measurement technology and aviation manufacturing industry,promote the transformation and application of scientific research results,and promote disruptive changes in aviation equipment.
关 键 词:量子测量 量子传感 精密测量 航空制造 航空装备
分 类 号:V11[航空宇航科学与技术—人机与环境工程]
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