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《中国航空学报》2020,33(3):749-770
Angle of Attack (AOA) is a crucial parameter which directly affects the aerodynamic forces of an aircraft. The measurement of AOA is required to ensure a safe flight within its designed flight envelop. This paper intends to summarise a comprehensive survey on the measurement techniques and estimation methods for AOA, specifically in Unmanned Aerial Vehicle (UAV) applications. In the case of UAVs, weight constraint plays a major role as far as sensor suites are concerned. This results in selecting a suitable estimation method to extract AOA using the available data from the autopilot. The most feasible and widely employed AOA measurement technique is by using the Multi-Hole Probes (MHPs). The MHP measures the AOA regarding the pressure variations between the ports. Due to the importance of MHP in AOA measurement, the calibration methods for the MHP are also included in this paper. This paper discusses the AOA measurement using virtual AOA sensors, their importance and the operation. 相似文献
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提出一种新型的磁耦合变势能阱双稳态压电颤振能量收集器,设计了外部磁场作用下颤振能量收集系统的双稳态构型,并利用弹性支撑的外部磁铁的运动实现了变势能阱技术,解释了变势能阱双稳态对颤振能量收集系统的性能增强机理。建立了磁力-压电-气动弹性耦合的颤振能量收集系统的动力学分析模型,根据非线性磁偶极模型以及平衡点稳定性理论,讨论了系统出现双稳态构型的参数条件。对磁耦合双稳态颤振能量收集系统的动态特性进行了数值仿真研究,结果显示,双稳态构型能够使无磁力颤振能量收集系统的超临界颤振行为转变为亚临界颤振,发生极限环振动的风速能够降低50%以上,拓宽了能量收集器的有效工作风速范围,并分析了磁铁间距、磁偶极矩对能量收集性能的影响规律。采用弹性支撑的外部磁铁的运动来自适应调节内外部磁铁之间的距离,达到变势能阱的目的,有效地降低了双稳态的势能阱深度,使系统更容易发生双稳态势能阱间的跃迁运动,从而在双稳态的设计基础上,实现了能量收集工作风速范围和输出电功率的同步提升,为低风速下的能量收集提供了一种有效的设计途径。 相似文献
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研究了运用压电陶瓷作动器对碳纤维增强复合材料(CFRP)格栅反射器的型面主动控制。首先,采用了一种具有独立电压自由度的梁单元,以及考虑高阶剪切变形的板单元,对主控格栅反射器进行有限元建模;运用能量变分哈密尔顿原理推导了主控格栅反射器的有限元控制方程,并给出了反射面型面残余均方根(RMS)误差最小的电压最优控制方法。然后,研究了在典型载荷下,反射面残余RMS误差最小的PZT作动器位置分布的优化配置问题;提出了一种将遗传算法和梯度投影方法相结合的改进优化方法,用来求出在限定作动器数量的条件下,作动器几何位置的优化配置,使控制后反射面的残余RMS误差最小;给出的数值算例验证了方法的正确性和有效性。最后,研制了格栅反射器型面主动控制的实验样机,针对反射器的初始制造误差进行了型面主动控制,验证了控制方法的可行性和有效性。 相似文献
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针对拦截高速目标的作战特点,分析了比例导引(PN)与反比例导引(RPN)的捕获区。首先,通过分析拦截弹与目标的相对运动关系,推导得到了顺轨和逆轨的零控拦截条件,此条件由目标和拦截弹的速度前置角以及二者速度比确定;其次,以拦截弹和目标速度前置角为坐标系,推导得到了PN以及RPN捕获区以及各自导航比设置范围。PN的捕获区由逆轨零控拦截条件以及与其相切且斜率为1/(N-1)的两条直线构成,RPN的捕获区由顺轨零控拦截条件以及与其相切且斜率为1/(-N-1)的两条直线构成;然后,利用函数对称性将PN与RPN捕获区转换到同一坐标区间,得到了相同条件下RPN捕获区要大于PN捕获区的结论;最后,开展了四种情形下的仿真,验证了本文捕获区分析的合理性及有效性。 相似文献
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分别利用大气等离子喷涂技术制备了Ni/Al粘结底层、火焰喷涂技术制备了NiCrAl/Diatomite可磨耗封严涂层,研究了喷涂距离、送粉速率、火焰气体总流量、喷涂角度和氧燃比等喷涂参数对生长速率和涂层硬度的影响。结果表明,在较低的氧燃比条件下(O2∶C2H2<1.6),随着喷涂距离的增大,涂层生长速率逐渐下降,硬度先保持不变后逐渐上升;当O2∶C2H2>1.6时,涂层的生长速率会随着喷涂距离的增大先增大后减小,硬度随之逐渐下降。随着喷枪对基体相对移动速度的增大,涂层生长速率略微下降,硬度略有上升。气体总流量的增大使得涂层的生长速率明显上升,硬度明显下降。随着送粉量的增大,涂层生长速率明显提高,硬度随之先上升后下降。 相似文献
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《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2020,65(7):1701-1713
Equatorial plasma bubbles (EPBs) are common features of the equatorial and low-latitude ionosphere and are known to cause radio wave scintillation which leads to the degradation of communication and navigation systems. Although these structures have been studied for decades, a full understanding of their evolution and dynamics remains important for space weather mitigation purposes. In this study, we present cases of EPBs occurrences around April and July 2012 geomagnetic storm periods over the African equatorial sector. The EPBs were observed from the Communications/Navigation Outage Forecasting System (C/NOFS) and generally correlated well to the ionospheric irregularities observed from the Global Positioning System total electron content (GPS-TEC) measurements (rate of TEC change, ROT). This study revealed that the evolution of the EPBs during moderate storms is controlled by the strength of the daytime equatorial electrojet (EEJ) currents regardless of the strength of the equatorial ionization anomaly (EIA), the latter is observed during the July storm case in particular. These effects were more evident during the main and part of the early recovery phases of the geomagnetic storm days considered. However, the evening hours TEC gradients between regions of the magnetic equator and ionization crests also played roles in the existence of ionospheric irregularities. 相似文献
10.
《中国航空学报》2020,33(2):391-406
A thermal-solid-liquid complex operational environment induces structural interface developing a typical coupling sliding/impact wear behavior. It results in contact damage until systems fail, which may cause significant economic losses and catastrophic consequences. The key point of solving this problem is to reveal the coupling damage mechanism of the sliding/impact behavior in typical systems and life characterization under a complicate evolving environment. This has been a hot topic in the area of mechanical reliability. The main work in this paper can be concluded as follows. Firstly, the main industries in which the “sliding/impact behavior” takes place have been introduced. Then, existing studies on the wear mechanism and degree analysis are presented, which includes surface morphology analysis, wear debris analysis, and wear degree measurement. Meanwhile, existing problems in theoretical modeling and experiments in current research are summarized, so as to point out a bright direction for future research on wear prediction. They include interface contact modeling, mathematic coupling mechanism modeling, wear equation establishment, and wear life characterization, which can provide some new ideas for improving the existing studies on the sliding/impact wear behavior. 相似文献