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51.
刘志华%赵青%李德清%厉克勤%董一平 《宇航材料工艺》2000,30(2):48-50
介绍了真空空心阴极电弧焊接设备研制和焊接工艺研究情况,这是为解决钛合金容器焊接存在的飞溅问题而发明的一种先进的焊接工艺方法,在真空条件下,采用管状空心阴极,通入少量氩气,从而引燃电弧进行焊接。空心阴极焊接设备由空心阴极焊枪,真空系统,焊地电源,气体流量控制单元,总控制籍组成,文中详述了空心阴极焊枪设计,引弧试验情况及钛合金焊接工艺试验,结果表明焊接接头拉伸强度达到标准的要求,特别是与电子束焊相比,焊缝背面无焊接飞溅。 相似文献
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This paper presents the space environment detection of Chinese geosynchronous and sun-synchronous meteorological satellites and gives a short perspective of space environment observations on board meteorological satellites. 相似文献
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Jun Bang Jaemyung Ahn 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(5):1273-1285
This paper proposes a two-phase framework to obtain a near-optimal solution of multi-target Lambert rendezvous problem. The objective of the problem is to determine the minimum-cost rendezvous sequence and trajectories to visit a given set of targets within a maximum mission duration. The first phase solves a series of single-target rendezvous problems for all departure-arrival object pairs to generate the elementary solutions, which provides candidate rendezvous trajectories. The second phase formulates a variant of traveling salesman problem (TSP) using the elementary solutions prepared in the first phase and determines the final rendezvous sequence and trajectories of the multi-target rendezvous problem. The validity of the proposed optimization framework is demonstrated through an asteroid exploration case study. 相似文献
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一种新的SMC-PHD滤波的多目标状态估计方法 总被引:1,自引:0,他引:1
针对现有的应用于多目标跟踪概率假设密度粒子滤波器的目标状态估计方法不能很好地解决目标密度较高情况下的多目标状态估计问题,提出了一种新的基于粒子标签的多目标状态估计方法。该方法利用附加在每个粒子上的身份标签将粒子分为不同的粒子群,粒子群的个数与概率假设密度粒子滤波器的目标估计个数相同。随后根据粒子与最近量测的似然函数估计目标的运动状态,使得粒子概率假设密度滤波器在目标密集的情况下仍能准确地估计出目标状态。仿真试验表明,论文所提方法在目标密度较大情况下能够较好地估计出多目标状态,并提高了目标关联的准确性。 相似文献
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《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2023,71(1):1-15
The site selection and certification processes for planetary landers equipped with hazard avoidance capability are reviewed. The prior (large-scale) ‘landability’ of the target areas determined from orbital remote sensing can be only a few tens of per cent (~40 % for Perseverance, ~80–90 % for Apollo 11 and 60–70 % for subsequent Apollo landers) because on-board sensing is able to find safe areas at smaller scales (meters to tens of meters) than the delivery ellipse which may be several to several tens of kilometers across. This contrasts with the ‘blind’ landings of unguided missions, where safe terrain occupying 95–99 % of the landing ellipse are typically sought. The particulars of Apollo 11 and Perseverance/Ingenuity are discussed, together with the similar Chang-E-3 and Tianwen-1 Moon and Mars landers, and the Hayabusa-2 and OSIRIS-REx asteroid contacts, since these missions all used on-board terrain-relative navigation to steer relative to hazards either mapped previously or detected in real-time. These missions set the context for the application of these techniques to the Dragonfly mission to Titan, which has a more austere remote sensing basis on which to select a landing site, but whose rotor propulsion allows substantial divert capability. 相似文献
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The carrier synchronization algorithm of the autonomous radio for deep space is studied. When the signal modulation is unknown, this paper improves the existing universal carrier synchronization loop for multiple modulations, expands the frequency tracking range of the loop, proposes a Tong detection-based M-ary Phase Shift Keying (M-PSK) signal locking detection algorithm to rapidly and effectively determine whether the current phase discrimination mode matches the modulation mode, so as to independently choose whether to switch the phase discrimination mode. Through theoretical analysis and comparison, it is described that the total detection probability of the algorithm proposed in this paper is significantly higher than the probability of single lock detection. Simulation results show that the algorithm has high detection probability and low computational complexity at a low signal to noise ratio. 相似文献
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新一代测量雷达在发展各种先进武器平台与航空航天及空间技术方面有广泛的应用前景。本文讨论对测量雷达的一些新的需求及相关技术,对雷达精细测量的需求与有关技术是本文讨论重点。 相似文献
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