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131.
文摘采用"四探针法"测定6种沥青基碳纤维单丝的轴向电阻率,通过3个经验公式计算得到其热导率,再将计算值与厂商公布值进行对比分析。结果表明:对于热导率600或300 W/(m·K)的碳纤维采用公式λ=1261/ρ计算得到的热导率值与厂商公布值最为吻合,而对于热导率在300~600 W/(m·K)的碳纤维采用公式λ=440 000/(100ρ+258)-295计算得到的热导率值与厂商公布值最为吻合。以此测试值为基础,建立了沥青基碳纤维单丝电阻率与其热导率的函数关系λ=152 740/(100ρ+22)-26,具有更强的普适性。 相似文献
132.
依据作战任务和使用要求进行基于能力验证的试飞设计与评估是适应新的军事变革背景下航空武器装备试验工作转型的重要方向。为了探索基于能力的航空装备试验鉴定模式,以某型武装直升机为研究对象,根据其作战使命任务要求和作战能力,开展试飞设计、试飞结果分析及飞行品质等级评定等研究,提出基于作战能力验证的武装直升机飞行品质试飞设计思路和方法,并给出有效的试飞结果评估方式。所获得的试飞结果真实体现了武装直升机贴地突防和机动规避等能力,该试飞设计思路和试飞方法可以指导后续军用直升机的试飞设计工作。 相似文献
133.
Yongheng Zhao Yanxia Zhang 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008,41(12):1955-1959
The automated classification of objects from large catalogs or survey projects is an important task in many astronomical surveys. Faced with various classification algorithms, astronomers should select the method according to their requirements. Here we describe several kinds of decision trees for finding active objects by multi-wavelength data, such as REPTree, Random Tree, Decision Stump, Random Forest, J48, NBTree, AdTree. All decision tree approaches investigated are in the WEKA package. The classification performance of the methods is presented. In the process of classification by decision tree methods, the classification rules are easily obtained, moreover these rules are clear and easy to understand for astronomers. As a result, astronomers are inclined to prefer and apply them, thus know which attributes are important to discriminate celestial objects. The experimental results show that when various decision trees are applied in discriminating active objects (quasars, BL Lac objects and active galaxies) from non-active objects (stars and galaxies), ADTree is the best only in terms of accuracy, Decision Stump is the best only considering speed, J48 is the optimal choice considering both accuracy and speed. 相似文献
134.
根据**飞机上,CW-1002和Ⅱ-5的试飞结果,对两种产品的性能做了对比分析;对飞行中大气温度的获取方法提出了的新意见。 相似文献
135.
Angles-only relative orbit determination in low earth orbit 总被引:1,自引:0,他引:1
Jean-Sébastien Ardaens Gabriella Gaias 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(11):2740-2760
The paper provides an overview of the angles-only relative orbit determination activities conducted to support the Autonomous Vision Approach Navigation and Target Identification (AVANTI) experiment. This in-orbit endeavor was carried out by the German Space Operations Center (DLR/GSOC) in autumn 2016 to demonstrate the capability to perform spaceborne autonomous close-proximity operations using solely line-of-sight measurements. The images collected onboard have been reprocessed by an independent on-ground facility for precise relative orbit determination, which served as ultimate instance to monitor the formation safety and to characterize the onboard navigation and control performances. During two months, several rendezvous have been executed, generating a valuable collection of images taken at distances ranging from 50?km to only 50?m. Despite challenging experimental conditions characterized by a poor visibility and strong orbit perturbations, angles-only relative positioning products could be continuously derived throughout the whole experiment timeline, promising accuracy at the meter level during the close approaches. The results presented in the paper are complemented with former angles-only experience gained with the PRISMA satellites to better highlight the specificities induced by different orbits and satellite designs. 相似文献
136.
Future piloted missions to explore asteroids, Mars, and other targets beyond the Moon will experience strict limitations on communication between vehicles in space and control centers on Earth. These limitations will require crews to operate with greater autonomy than any past space mission has demonstrated. The Antarctic Search for Meteorites (ANSMET) project, which regularly sends small teams of researchers to remote parts of the southern continent, resembles a space mission in many ways but does not rely upon a control center. It provides a useful crew autonomy model for planners of future deep space exploration missions. In contrast to current space missions, ANSMET gives the crew the authority to adjust competing work priorities, task assignments, and daily schedules; allows the crew to be the primary monitor of mission progress; demands greater crew accountability for operational errors; requires the crew to make the most of limited communication bandwidth; adopts systems designed for simple operation and failure recovery; and grants the crew a leading role in the selection and stowage of their equipment. 相似文献
137.
针对变形飞行器的发展现状、气动建模、动力学建模以及控制方法研究进行了综述。首先阐述了变形飞行器的定义及变形需求,再从四个方面梳理了变形飞行器的技术优势。针对不同的机翼变形方式,对飞行器各种变形技术的特点及发展现状进行了详细的分析与总结;将变形飞行器与固定外形飞行器的气动机理进行了对比分析,并对变形飞行器的动力学建模方法进行了梳理,总结了各种方法的特点;结合变形飞行器自身特性分析了飞行控制的特点及难点,并详细阐述了各类变形飞行器的控制研究进展。最后总结分析了变形飞行器的发展趋势:深化基础理论与技术研究,从材料、结构及控制等领域全方面朝着智能化方向发展,最终实现变形飞行器的工程化、自主化、智能化应用。 相似文献
138.
霍西恒王大伟李革萍 《民用飞机设计与研究》2014,(1):25-29
结合某型民机自然结冰条件下防冰系统的试飞,对试飞所需的测试改装工作进行了总结,并对试飞前需进行的各种安全性评估进行了总结说明,明确了试飞中需考虑的各种构型情况,提出一套循序渐进的自然结冰试飞方法。同时提出了试飞中结冰气象参数的可接受性判据,最后针对自然结冰试飞中结冰气象参数的处理提出了分段等效处理的方法。 相似文献
139.
140.
Upset condition encountered by an aircraft in flight could pose great threat to flight safety, which is of chief importance in civil aviation. The causal factors have the nonlinear and multiple characteristics, and as a result the conventional envelope protection system cannot successfully do with the condition. So dynamic envelope based on differential manifold theory, which can take more coupling factors into account, is proposed as a basis to design a novel envelope protection system. Then the relationship between the dynamic envelope and the control coefficient or pilot command is obtained, and the result shows that the dynamic envelope can be enlarged with the change of control coefficient. Furthermore, quantification of flight security is realized via defining relative distance between flight state and dynamic envelope, which can detect whether there is a risk for an aircraft in flight. Finally, an envelope protection system based on dynamic envelope enlargement is proposed on the basis. NASA’s Generic Transport Model encountering hazard gust wind in climbing phase is taken as an example to verify the system’s feasibility. The result shows that the system can give a better operation encountering upset condition and to a certain extent reduce the number of accidents or incidents. 相似文献