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1.
《中国航空学报》2020,33(11):2851-2863
Recent years have witnessed a booming of the industry of civil Unmanned Aircraft System (UAS). As an emerging industry, the UAS industry has been attracting great attention from governments of all countries and the aviation industry. UAS are highly digitalized, informationized, and intelligent; therefore, their integration into the national airspace system has become an important trend in the development of civil aviation. However, the complexity of UAS operation poses great challenges to the traditional aviation regulatory system and technical means. How to prevent collisions between UASs and between UAS and manned aircraft to achieve safe and efficient operation in the integrated operating airspace has become a common challenge for industry and academia around the world. In recent years, the international community has carried out a great amount of work and experiments in the air traffic management of UAS and some of the key technologies. This paper attempts to make a review of the UAS separation management and key technologies in collision avoidance in the integrated airspace, mainly focusing on the current situation of UAS Traffic Management (UTM), safety separation standards, detection system, collision risk prediction, collision avoidance, safety risk assessment, etc., as well as an analysis of the bottlenecks that the current researches encountered and their development trends, so as to provide some insights and references for further research in this regard. Finally, this paper makes a further summary of some of the research highlights and challenges.  相似文献   
2.
《中国航空学报》2020,33(2):634-663
The determination of optimal aerial transport networks and their associated flight frequencies is crucial for the strategic planning of airlines, as well as for carrying out market research, to establish target markets, and for aircraft and crew rostering. In addition, optimum airplane types for the selected networks are crucial to improve revenue and to provide reduced operating costs. The present study proposes an innovative approach to determine the optimal aerial transport network simultaneously with the determination of the optimum fleet for that network, composed of three types of airplanes (network and vehicle integrated design). The network profit is maximized. The passenger’s demands between the airports are determined via a gravitational model. An embedded linear programming solution is responsible for obtaining potential optimal network configurations. The optimum fleet combination is determined from a database of candidate aircraft designs via genetic algorithm. A truly realistic airplane representation is made possible thanks to accurate surrogate models for engine and aerodynamics is adopted. An accurate engine deck encompassing a compression map and an innovative engine weight calculation besides an aerodynamical artificial neural network module enable a high degree of accuracy for the mission analysis. The proposed methodology is applied to obtain the optimum network comprised of twenty main Brazilian airports and corresponding fleet.  相似文献   
3.
黄灵恩 《飞行力学》1993,11(3):87-91
对无动力J—7LP动力学缩比模型进行了遥控试飞,以研究其失速尾旋特性,全偏平尾和方向舵可使模型进八尾旋,舵面全回中即可从各种尾旋中改出。偏转副翼对尾旋特性有明显的影响。  相似文献   
4.
The architecture of digital sheet metal manufacturing system is proposed based on the classification of sheet metal manufacturing information.The essence of digital manufacturing is the definition,management and transfer of information,and the key technologies are brought forward and described.It is pointed out that knowledge-based manufacturing elements design is necessary to make digital technology efficient.The management of all kinds of sheet metal manufacturing element information is to build single source of manufacturing data.Multi-state model-based digital transfer and coordination method is designed to provide a foundation for digital manufacturing of aircraft sheet metal part.The application of digital sheet metal manufacturing is exemplified with an aircraft sheet metal part.The application result is compared to that of the traditional analog transfer technology.It is shown that the developed technology can improve part quality,shorten manufacturing time and lower manufacturing cost.  相似文献   
5.
通过对“长征三号”运载火箭的一些安全性设计实例帕的分析来建立安全性设计的概念,论述安全性设计在型号设计中的重要作用和地位。分析认为,安全性设计应以总体、系统设计师为主,并从设计初期抓起。  相似文献   
6.
空间交会动力学和安全模式   总被引:1,自引:0,他引:1  
本文首先导出空间交会相对运动方程并给出其物理解释,然后给出动力学方程的解析解,并分析其动力学性质,最后导出不碰撞安全区和位置保持点的表达式。选择适当初始条件可以求出安全区和保持点。  相似文献   
7.
介绍了在石油化工系统广泛应用的格雷厄姆一金尼、化工安全定量评价、DOW和ICI Mond等安全评价方法,并利用三种方法对发射场液体推进剂作业进行了安全性评价,初步证明了其在推进剂安全评价中的可行性。同时,评价结果对实施科学防护具有积极的指导意义。  相似文献   
8.
航空发动机全程滑态变结构控制研究   总被引:4,自引:2,他引:4       下载免费PDF全文
樊丁  赵庆荣 《推进技术》2002,23(6):485-488
一种新的滑模变结构控制方法-全程滑态变结构控制首次应用于航空发动机控制系统,该控制方法能有效地缩短系统状态到达滑动模态的时间,避免了定常滑态变结构控制系统在能达阶段对扰动的敏感性,且其控制律的设计可以改善系统的瞬态性能,克服未知参数摄动的影响,仿真结果表明,基于全程滑态变结构控制所设计的发动机控制系统,其鲁棒性要优于发动机定常滑态结构控制系统。  相似文献   
9.
航空发动机进口温度畸变参数和防喘控制系统设计   总被引:5,自引:0,他引:5       下载免费PDF全文
张绍基 《推进技术》2006,27(1):15-19
主要研究了航空发动机防喘控制系统的设计和研制,特别是研究了当战斗机发射导弹时温度畸变对发动机的影响。引入的温度畸变参数包括:进口相对平均温升δT;进口温升率dT/dt;当量热区角Φe;连续温度畸变时间tB。通过试验和数据分析的方法得出发动机防喘控制系统的设计准则,发动机防喘控制系统的研制和飞行试验证明了该设计准则的正确性。  相似文献   
10.
采用混合分数平衡化学反应模型和离散液滴模型,研究了不同长深比和后缘倾角的凹槽在液体煤油双模态燃烧中的火焰稳定特性。结果表明,集燃料喷射、混合及火焰稳定为一体的凹槽,在所模拟的工作过程中增强了燃料与空气的混合和燃烧;并得到最优的凹槽结构;混合分数平衡化学反应模型和离散液滴模型能准确地预测煤油在双模态燃烧室内的喷雾燃烧。  相似文献   
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