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41.
《中国航空学报》2016,(6):1673-1684
A new variable speed control moment gyro (VSCMG) steering law is proposed in order to achieve higher torque precision. The dynamics of VSCMGs is established, and two work modes are then designed according to command torque:control momentum gyro (CMG)/reaction wheel (RW) hybrid mode for the large torque case and RW single mode for the small. When working in the CMG/RW hybrid mode, the steering law deals with the gimbal dead-zone nonlinearity through compensation by RW sub-mode. This is in contrast to the conventional CMG singularity avoidance and wheel speed equalization, as well as the proof of definitely hyperbolic singular property of the CMG sub-mode. When working in the RW single mode, the motion of gimbals will be locked. Both the transition from CMG/RW hybrid mode to RW single mode and the reverse are studied. During the transition, wheel speed equalization and singularity avoidance of both the CMG and RW sub-modes are considered. A steering law for the RWs with locked gimbals is presented. It is shown by simulations that the VSCMGs with this new steering law could reach a better torque precision than the normal CMGs in the case of both large and small torques.  相似文献   
42.
A new strategy of precise orbit determination (POD) for GEO (Geostationary Earth Orbit) satellite using SATRE (SAtellite Time and Ranging Equipment) is presented. Two observation modes are proposed and different channels of the same instruments are used to construct different observation modes, one mode receiving time signals from their own station and the other mode receiving time signals from each other for two stations called pairs of combined observations. Using data from such a tracking network in China, the results for both modes are compared. The precise orbit determination for the Sino-1 satellite using the data from 6 June 2005 to 13 June 2005 has been carried out in this work. The RMS (Root-Mean-Square) of observing residuals for 3-day solutions with the former mode is better than 9.1 cm. The RMS of observing residuals for 3-day solutions with the latter mode is better than 4.8 cm, much better than the former mode. Orbital overlapping (3-day orbit solution with 1-day orbit overlap) tests show that the RMS of the orbit difference for the former mode is 0.16 m in the radial direction, 0.53 m in the along-track direction, 0.97 m in the cross-track direction and 1.12 m in the 3-dimension position and the RMS of the orbit difference for the latter mode is 0.36 m in the radial direction, 0.89 m in the along-track direction, 1.18 m in the cross-track direction and 1.52 m in the 3-dimension position, almost the same as the former mode. All the experiments indicate that a meter-level accuracy of orbit determination for geostationary satellite is achievable.  相似文献   
43.
A new version of global empirical model for the ionospheric propagation factor, M(3000)F2 prediction is presented. Artificial neural network (ANN) technique was employed by considering the relevant geophysical input parameters which are known to influence the M(3000)F2 parameter. This new version is an update to the previous neural network based M(3000)F2 global model developed by Oyeyemi et al. (2007), and aims to address the inadequacy of the International Reference Ionosphere (IRI) M(3000)F2 model (the International Radio Consultative Committee (CCIR) M(3000)F2 model). The M(3000)F2 has been found to be relatively inaccurate in representing the diurnal structure of the low latitude region and the equatorial ionosphere. In particular, the existing hmF2 IRI model is unable to reproduce the sharp post-sunset drop in M(3000)F2 values, which correspond to a sharp post-sunset peak in the peak height of the F2 layer, hmF2. Data from 80 ionospheric stations globally, including a good number of stations in the low latitude region were considered for this work. M(3000)F2 hourly values from 1987 to 2008, spanning all periods of low and high solar activity were used for model development and verification process. The ability of the new model to predict the M(3000)F2 parameter especially in the low latitude and equatorial regions, which is known to be problematic for the existing IRI model is demonstrated.  相似文献   
44.
采用85%磷酸和氧化铝制备了低温固化的烧蚀基体——磷酸铝溶液。通过Brookfield流变仪监测体系的粘度变化;借助X射线衍射分析研究影响磷酸铝基体组成的两个主要因素,即Al/P比例和反应温度。结果表明,A l/P比例控制在1.3∶3~1.4∶3之间,反应温度不高于110℃时可获得性能良好的磷酸铝基体。XRD研究结果表明,磷酸铝溶液的过早硬化主要是由于AlPO4.xH2O沉淀引起的。使用螯合剂可有效抑制过早硬化,加入约2%草酸,2个月左右后溶液中可溶性磷酸盐百分含量为84%,基本满足使用需求。草酸的引入对高硅氧布/磷酸铝复合材料的强度基本没有影响。  相似文献   
45.
张涛  张军 《航空学报》2007,28(4):922-929
 星间链路切换将严重影响卫星网络的通信性能,需要对切换链路加以保护,这方面的研究目前还很欠缺。为此,给出一种新颖的星间链路切换保护(ISLHP)算法,该算法可同时生成业务路径和备份路径,且具有最小的综合费用(包括备份费用和业务费用)。算法采用本地链路保护,为星间链路切换提供快速恢复,并利用星间链路切换的可预测性和备份资源的可共用性,通过降低需要保护的链路数,减少闲置的备份资源,来提高网络资源的利用率。仿真结果表明:该算法具有切换恢复时间短,网络资源利用率高等优点。  相似文献   
46.
Al2O3(YAG)/LaPO4层状陶瓷复合材料研究   总被引:2,自引:0,他引:2  
选择Al2O3(YAG)作为基体片层材料,LaPO4作为界面层材料,采用凝胶注模成型技术制备出基体层材料的坯片,然后在基体层坯片上采用浸渍或喷涂工艺附着界面层材料,最后将坯片叠置于模具中热压烧结.制备的陶瓷复合材料微观结构均匀,基体片层厚度为110-150μm,界面层厚度为10~30μm,实测层厚比为11.重点研究工艺参数及界面层成分对层状陶瓷复合材料室温性能的影响.结果表明,氧化物基层状陶瓷复合材料的抗弯强度比基体材料略有下降,但室温断裂韧性达到了13.52MPa·m1/2,是基体材料断裂韧性的3倍.对比氧化物基层状陶瓷复合材料与基体材料在断裂过程中裂纹扩展路径的差异.  相似文献   
47.
Studies of nanoindentation were performed on nc-Si:H films to evaluate the effects of the fabrication processes on their mechani-cal properties. It is observed that with the decrease of the SiH4 contents, the grain size of the films increases gradually, and as does the crystalline volume fraction. The smaller the grains become, the more homogeneous the films, and the more even the hardness as well as the modulus will be. The hardness and the modulus will increase with the substrate’s temperature rising. The hardness and the modulus of the nc-Si:H films on the Si substrate prove to be higher than those on the glass substrate given the same technology parameters. How-ever, the films on the glass substrate appear to be more homogeneous.  相似文献   
48.
张乐  周洲  许晓平 《航空动力学报》2018,33(7):1612-1621
基于飞翼无人机(UAV)保形进气道和工程应用实例,进行了不同格栅间距的格栅设计。结合多层快速多极子方法(MLFMM)和混合网格计算方法,开展了保形进口格栅气动和隐身综合特性研究。结果表明:①随着格栅尺寸(间距)减小,格栅隐身效果逐渐增强;频率为1GHz下,格栅间距为波长的1/3时,格栅电磁屏蔽效率约为48.93%,而当格栅间距达到波长的1/6时,接近于完全屏蔽;②保形进口格栅对无人机翼面上流动干扰较小而对进气道内流特性影响明显;③随着格栅尺寸减小,全机升阻特性逐渐略微下降,进气道出口截面总压恢复逐渐降低而畸变指数逐渐增大。   相似文献   
49.
基于小波变换的自适应多用户检测算法   总被引:1,自引:0,他引:1  
在分析传统自适应多用户检测的基础上 ,提出了一种基于小波变换的自适应多用户检测算法。用小波变换进行前处理 ,然后再通过 LMS算法实现自适应多用户检测。与通常的自适应多用户检测算法相比 ,该算法利用了小波变换对小波空间进行了分解 ,信号经小波变换后自相关性会下降 ,收敛速度提高。同时在此分解过程中 ,根据信号与白噪声在不同尺度上的小波变换模极大值表现完全不同的特性进行信号的消噪。理论分析和仿真结果表明 ,该算法收敛速度较快 ,计算量增加较少 ,易于实时实现 ,而且具有良好性能。同时仿真实验表明 ,收敛速度与小波基选择有关 ,对于同一小波基系列 ,小波基的正则性越好收敛速度越快  相似文献   
50.
考虑铣削过程中的自激振动和强迫振动,基于延迟微分方程的稳定性判定准则和强迫振动共振区的半带宽理论,提出一种铣削系统稳定性动态优化新方法.该方法通过选择切削参数和修改系统结构参数,在保证加工表面精度的前提下,获得大的稳定性材料去除率.其目标函数是材料去除率,约束条件是铣削过程稳定且非共振,动态优化变量是铣削系统的切削参数和结构参数.优化程序被阐明,实例分析结果显示,系统在稳定非共振条件下,加工时的材料去除率相比于优化前提高了18.86%.另外,为获得最大的稳定材料去除率和较好的表面精度,在铣削系统优化过程中,应同时考虑颤振稳定性和共振的影响.  相似文献   
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