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1.
针对低轨(low earth orbit,LEO)Walker星座构型稳定性维持问题,分析了低轨卫星的轨道摄动和星座构型稳定性的影响因素。通过分析低轨Walker星座的轨道摄动和相对漂移特点,提出了两次偏置策略。首先,依据未偏置时星座相对漂移量拟合得出第一次偏置时的偏置量。然后利用第一次偏置后的相对漂移量拟合得出第二次偏置量,消除残余项影响。两次偏置量叠加,使相对漂移大大降低。结果表明,低轨Walker星座中各卫星的初始参数偏差造成了升交点赤经和沿迹角相对漂移的发散,两次偏置策略可将两种星座的相对漂移量降至0.1°以下,证明了策略的有效性,提高了星座构型稳定性。 相似文献
2.
《中国航空学报》2021,34(4):293-305
This paper addresses the challenge of synchronized multiple spacecraft attitude reorientation in presence of pointing and boundary constraints with limited inter-spacecraft communication link. Relative attitude pointing constraint among the fleet of spacecraft has also been modeled and considered during the attitude maneuvers toward the desired states. Formation fling control structure that consists of decentralized path planners based on virtual structure approach joint with discrete time optimal local controller is designed to achieve the mission’s goals. Due to digital computing of spacecraft’s onboard computer, local optimal controller based on discrete time prediction and correction algorithm has been utilized. The time step of local optimal algorithm execution is designed so that the spacecraft track their desired attitudes with appropriate error bound. The convergence of the proposed architecture and stability of local controller’s tracking error within appropriate upper bound are proved. Finally, a numerical simulation of a stereo imaging scenario is presented to verify the performance of the proposed architecture and the effectiveness of the algorithm. 相似文献
3.
为探究低温环境下单组元300N发动机的工作特性,揭示影响发动机低温性能的主要影响因素,以300N发动机为试验对象,开展了模拟飞行工况的发动机低温试验。给出了低温试验研究方法,分别从温度差异对发动机性能影响、催化剂活性差异对发动机低温启动特性影响和低温对电磁阀响应特性影响等方面获得研究结果。结果表明,低温是影响发动机低温性能的主要影响因素,-48℃条件催化剂无法完成推进剂的催化分解,发动机发生爆炸;-30℃条件下起活时间为80.5~87.5ms,发动机可正常启动,且启动温度与起活时间呈指数关系;催化剂批次差异也对发动机低温工作性能产生一定影响,不同批次催化剂低温起活时间的差异可达91ms;低温试验过程中,电磁阀的关闭受到低温推进剂粘性和背压的影响,产生了明显的迟滞现象,延迟时间约100ms,对发动机在轨的精准控制存在一定影响。 相似文献
4.
Alireza A. Ardalan Iraj Jazireeyan Naser Abdi Mohammad-Hadi Rezvani 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(6):1537-1545
Performance of SARAL/AltiKa mission has been evaluated within 2016 altimeter calibration/validation framework in Persian Gulf through three campaigns conducted in the offshore waters of Sajafi, Imam Hassan and Kangan Ports, while the altimeter overflew the passes 470, 111 and 25 on 13 Feb, 7 March and 17 June 2016, respectively. As the preparation, a lightweight buoy was equipped with a GNSS receiver/choke-ring antenna and a MEMS-based IMU to measure independent datasets in the field operations. To obtain accurate sea surface height (SSH) time series, the offset of the onboard antenna from the equilibrium sea level was predetermined through surveying operations as the buoy was deploying in the onshore waters of Kangan Port. Accordingly, the double-difference carrier phase observations have been processed via the Bernese GPS Software v. 5.0 so as to provide the GNSS-derived time series at the comparison points of the calibration campaigns, once the disturbing effects due to the platform tilt and heave have been eliminated. Owing to comparing of the SSH time series and the associating altimetry 1?Hz GDR-T datasets, the calibration/validation of the SARAL/AltiKa has been performed in the both cases of radiometer and ECMWF wet troposphere corrections so as to identify potential land contamination. An agreement of the present findings in comparison with those attained in other international calibrations sites confirms the promising feasibility of Persian Gulf as a new dedicated site for calibration/validation of ongoing and future altimetry missions. 相似文献
5.
基于民机的适航要求,建立了一种基于数字虚拟飞行的侧风着陆地面航向操稳特性评估方法。以着陆滑跑过程中最大机体倾斜角和最大航迹偏移量作为评估的关键参数,依据人机闭环数字飞行仿真计算结果,评估了某大型水陆两栖飞机侧风着陆任务的地面航向操稳特性适航符合性。对于20 kts侧风分量,算例飞机着陆滑跑的机身最大机体倾斜角为3.44°,最大侧向航迹偏差为2.51 m,能够满足适航要求。进一步研究表明,侧风分量大小、道面污染情况均影响侧风着陆的安全性。在干道面上当侧风分量超过30 kts时即会出现地面打转现象;道面污染增加滑跑减速所消耗的跑道长度,同时不利于驾驶员对滑行航向的控制。所提评估方法可应用于民机的概念和方案设计阶段,并为后续开展飞行试验验证等提供理论参考。 相似文献
6.
Xingyuan Yan Guanwen Huang Qin Zhang Chenchen Liu Le Wang Zhiwei Qin 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(3):1270-1279
Eight new-generation BeiDou satellites (BeiDou-3) have been launched into Medium Earth Orbit (MEO), allowing for global coverage since March 2018, and they are equipped with new hydrogen atomic clocks and updated rubidium clocks. Firstly, we analyzed the signals for the carrier-to-noise-density ratio (C/N0) and pseudorange multipath (MP) by using international GNSS (Global Navigation Satellite System) Monitoring and Assessment System (iGMAS) station data, and found that B1C has a lower C/N0, and B2a has the same level of C/N0 as the B1I and B3I signals. For pseudorange multipath, compared with the BeiDou-2 satellites, the obvious systematic variation of MP scatters related to the elevation angle is greatly improved for the BeiDou-3 and BeiDou-3e satellites signals. For the signals of the BeiDou-3 satellites, the order of the Root Mean Square (RMS) values of multipath and noise is B3I?<?B1I?<?B2a?<?B1C. Then, the comparison of the precise orbit determination and clock offset determination for the BeiDou-2, BeiDou-3, and BeiDou-3 experimental (BeiDou-3e) satellites was done by using 10 stations from iGMAS. The 3D precision of the 24?h orbit overlap is 24.55, 25.61, and 23.35?cm for the BeiDou-3, BeiDou-3e, and BeiDou-2 satellites, respectively. BeiDou-3 satellite has a comparable precision to that of the BeiDou-2 satellite. For the precision of clock offset estimation, the Standard Deviation (STD) of the BeiDou-3 MEO satellite is 0.350?ns, which is an improvement of 0.042?ns over that of the BeiDou-2 MEO satellite. The stabilities of the BeiDou-3 and BeiDou-3e onboard clocks are better than those of BeiDou-2 by factors of 2.84 and 1.61 at an averaging time of 1000 and 10,000?s, respectively. 相似文献
7.
起落架结构的寿命监控对保障其安全性与经济性具有重要作用,但由于地面谱复杂的高低载荷非线性交互作用,难以准确计算单机谱的损伤。以当量损伤计算方法为基础,通过对寿命监控中的单机谱进行初步筛选,判别单机谱与基准谱的相似程度,进而分析损伤计算方法的适用性。提出了一种基于时间序列分析中的动态时间弯曲方法的起落架载荷谱相似性判别方法,进行了基准谱与4个单机谱下的疲劳实验,通过分析损伤计算误差与起落架载荷谱相似距离的关系,验证所提载荷谱相似性判别方法的合理性。 相似文献
8.
9.
《中国航空学报》2021,34(9):47-59
The aircraft system has recently gained its reputation as a reliable and efficient tool for sensing and parsing aerial scenes. However, accurate and fast semantic segmentation of high-resolution aerial images for remote sensing applications is still facing three challenges: the requirements for limited processing resources and low-latency operations based on aerial platforms, the balance between high accuracy and real-time efficiency for model performance, and the confusing objects with large intra-class variations and small inter-class differences in high-resolution aerial images. To address these issues, a lightweight and dual-path deep convolutional architecture, namely Aerial Bilateral Segmentation Network (Aerial-BiSeNet), is proposed to perform real-time segmentation on high-resolution aerial images with favorable accuracy. Specifically, inspired by the receptive field concept in human visual systems, Receptive Field Module (RFM) is proposed to encode rich multi-scale contextual information. Based on channel attention mechanism, two novel modules, called Feature Attention Module (FAM) and Channel Attention based Feature Fusion Module (CAFFM) respectively, are proposed to refine and combine features effectively to boost the model performance. Aerial-BiSeNet is evaluated on the Potsdam and Vaihingen datasets, where leading performance is reported compared with other state-of-the-art models, in terms of both accuracy and efficiency. 相似文献
10.