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1.
Pengbin Guo Jian Sun Shuling Hu Ju Xue 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(3):787-798
Pulsar navigation is a promising navigation method for high-altitude orbit space tasks or deep space exploration. At present, an important reason for restricting the development of pulsar navigation is that navigation accuracy is not high due to the slow update of the measurements. In order to improve the accuracy of pulsar navigation, an asynchronous observation model which can improve the update rate of the measurements is proposed on the basis of satellite constellation which has a broad space for development because of its visibility and reliability. The simulation results show that the asynchronous observation model improves the positioning accuracy by 31.48% and velocity accuracy by 24.75% than that of the synchronous observation model. With the new Doppler effects compensation method in the asynchronous observation model proposed in this paper, the positioning accuracy is improved by 32.27%, and the velocity accuracy is improved by 34.07% than that of the traditional method. The simulation results show that without considering the clock error will result in a filtering divergence. 相似文献
2.
The significance of external influences on the environment of Earth and its atmosphere has become evident during recent years.
Especially, on time scales of several hundred years, the cosmogenic isotope concentration during the Wolf-, Spoerer-, Maunder-
and Dalton-Minimum indicates an increased cosmic ray flux. Because these grand minima of solar activity coincide with cold
periods, a correlation of the Earth climate with the cosmic ray intensities is plausible. Any quantitative study of the effects
of energetic particles on the atmosphere and environment of the Earth must address their transport to Earth and their interactions
with the Earth’s atmosphere including their filtering by the terrestrial magnetosphere. The first problem is one of the fundamental
problems in modern cosmic ray astrophysics, and corresponding studies began in the 1960s based on Parker’s cosmic ray modulation
theory taking into account diffusion, convection, adiabatic deceleration, and (later) the drift of energetic particles in
the global heliospheric magnetic field. It is well established that all of these processes determining the modulation of cosmic
rays are depending on parameters that are varying with the solar magnetic cycle. Therefore, the galactic cosmic ray intensities
close to Earth is the result of a complex modulation of the interstellar galactic spectrum within the heliosphere. The modern
view of this cosmic ray modulation is summarized in our contribution. 相似文献
3.
用激光多普勒技术测量了二维扩压器中不可压湍流边界层分离流动,得到了时均速度和雷诺剪应力分布。实验结果分析表明:以Coles速度律发展的Bardina速度分布可以描述瞬时间歇分离点以前和瞬时间歇再附点以后的时均速度分布,但无法描述分离区的边界层速度型。Cross速度分布可描述分离区的边界层速度分布。Cebeci&Smith涡粘性代数模型难以正确地描述分离边界层的雷诺剪应力。 相似文献
4.
星载合成孔径雷达回波多普勒频率的计算 总被引:2,自引:0,他引:2
从星载合成孔径雷达(SAR)与目标的相对运动关系出发,以SAR发射信号的波长、卫星的轨道参数和目标的位置(地心经纬度)为已知条件,导出了计算目标回小以的多普勒频率的解析公式,这对于星载SAR系统的性能 初步设计具有重要作用。 相似文献
5.
6.
Doppler ultrasound is frequently used for monitoring circulating microbubbles during decompression to assess the symptoms of Decompression Sickness (DCS). This analysis was carried out to evaluate its effectiveness for screening symptoms of DCS during simulated extravehicular activities (EVA). The information from various hypobaric chamber studies carried out at the NASA Johnson Space Center, Houston, TX was used in this analysis (n = 516). The circulating microbubbles were detected in the precordial area in 42% (218/516), and symptoms were reported in 16% (81/516) of these exposures. The accuracy of Doppler-detectable bubbles (Spencer grades) on all symptoms of DCS was examined by calculating measures of sensitivity and specificity. The efficacy of Doppler as a screening device was examined by calculating their positive predictive value (PPV) and negative predictive value (NPV). The results of these analyses indicated that the sensitivity of Doppler decreased, and the PPV increased with higher Spencer grades. However, the likelihood of detecting true negative cases (NPV) was consistently higher with all bubble grades. Due to the high false-positive rate and low prior probabilities of the risk of DCS, Doppler was found to be more useful to identify those who did not develop DCS, than to detect positive cases of DCS in the simulated EVA exposures. 相似文献
7.
8.
利用旋转基线方法进行双星快速定向 总被引:3,自引:4,他引:3
我国双星定位系统载波相位可观测信息少,且对地静止,难以直接利用传统的多星系统(GPS、GLONASS等)解模糊方法进行双星定向。针对此种情况,提出了一种旋转基线确定单差模糊度参数初值的方法,总定向时间不超过50秒,从而可实现双星快速定向。并且通过多位置观测,具备一定的周跳检测能力。进行了仿真实验,结果表明:当基线长度为2米,原始载波相位测量精度为1%周时,定向精度优于偏航角0.045度、俯仰角0.048度。该项技术应用于惯导系统的初始对准,可实现快速寻北,大幅减少其对准时间。此外,与双星无源定位系统结合,可组建一套我国完全自主的无源快速定位定向系统,大大提高了隐蔽性,对于我军的炮兵阵地联测意义重大。进一步,将双星与INS进行组合导航,应用前景广阔,因此该项技术具有较深的研究开发潜力。 相似文献
9.
10.
从傅里叶变换的定义出发,利用时变信号的短时傅里叶变换,推导出量子力学中的Heisenberg测不准原理,说明了两者之间存在这种联系的必然性,并给出了测不准原理在小波分析中的应用举例。 相似文献