排序方式: 共有17条查询结果,搜索用时 265 毫秒
1.
2.
3.
航天器火工冲击环境防护技术现状与应用 总被引:4,自引:0,他引:4
火工冲击环境是航天器经历的最恶劣的力学环境之一,尤其以航天器与运载火箭分离时最为恶劣。火工冲击环境会影响有冲击敏感元件的设备甚至航天器的正常工作,严重时可导致发射任务失败。因此,有必要研究火工冲击环境的防护措施。文章分析了火工冲击环境特点及载荷组成,阐明了火工冲击载荷来源、作用机制及防护原则,分析了航天器系统级和部件级火工冲击防护措施的现状,在调研国内外航天器火工冲击防护措施最新进展的基础上,提出了我国航天器火工冲击防护技术的研究方向及应用建议。 相似文献
4.
The traditional absolute calibration based on oscilloscopic observation is not suitable for crosslink transmitter. A new calibration algorithm is developed by using a digital signal processing technique. The output signal of crosslink transmitter and the pulse per second signal are sampled in synchronization. At first, the delay reference is determined according to straight line fitting for the signal level stepping segment. The sampling data of crosslink transmitting signal is decimated and then phase acquisition processing is made to determine the initial synchronization point. A fine search for the start of the pseudo random code has been processed between front and rear of the initial synchronization point. Finally, the transmitter delay can be obtained according to the sampling frequency and the calibration delay of the test cable and attenuator. Compared with the oscilloscopic observation method, the analysis and test results show that the proposed technique has overcome the faults caused by whole chip ambiguity and the calibration accuracy can be improved by an order of magnitude. 相似文献
5.
6.
7.
8.
9.
10.