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排序方式: 共有120条查询结果,搜索用时 437 毫秒
1.
非线性PD型比例导引鲁棒性研究 总被引:1,自引:0,他引:1
为研究存在视线角速度测量噪声时非线性比例微分(PD)型比例制导方案的鲁棒性,以近距大离轴角发射和目标大机动为拦截条件,对四种视线角速度测量噪声方差进行蒙特卡罗仿真模拟。结果表明,非线性PD型比例制导方案抗视线角速度测量噪声的鲁棒性强,对机动目标拦截制导精度高,是一种具工程应用价值的高精度末制导方案。 相似文献
2.
阐述了频率稳定性时频域表征的理论和测试方法,以及在振动条件下测量频率稳定性的意义,详细介绍了测量系统的组建方案及工作原理.最后提供了部分测试数据及测试曲线,并对测试系统的经济效益和社会效益进行了简单分析.该测试系统具有噪底低,体积小,便于携带,操作简便等特点,其综合技术指标达到国内领先水平,不仅适用于振动状态下的频率源特性测试,而且完全可以作为通用测试系统用于实验室、工厂等. 相似文献
3.
采用圆环阵列天线,利用最小规范算法和线性约束最小方差算法对弱GPS信号的干扰信号进行了抑制,并分别针对固定和可变天线阵元数目以及固定和可变干扰信号等多种情况进行了仿真和分析.GPS信号的功率电平假设为-175dBW,干扰信号的功率值在-100dBW~-140dBW范围内可变.仿真结果表明,圆环天线阵列能精确地判定干扰信号的来波方向,该方法能很好地改善对来波干扰信号的赋零深度. 相似文献
4.
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
5.
非平衡学习吸引了许多研究者的关注。一般情况下,少数类是更值得关注的,并且其误分类代价要远高于多数类。由于非平衡数据分布的非均衡性,标准的分类算法将难以适用。为了解决非平衡数据分类问题,给出了基于欠采样的零阶优化算法。首先,为了降低数据非平衡分布的影响,针对不同非平衡比的数据集给出了不同的两种采样策略。然后,采用了一种引入间隔均值项的支持向量机(Support vector machine,SVM)优化模型进行分类,并使用带有方差减小的零阶随机梯度下降算法进行求解,提高了算法的精度。在非平衡数据上进行了对比实验,实验证明提出的方法有效提高了非平衡数据的分类效果。 相似文献
6.
7.
不确定度评定的一种新方法──最大方差法 总被引:3,自引:0,他引:3
研究了不确定度评定的新方法──最大方差法,分析了它的原理,列出了最大方差法用表,举例说明了它的应用。 相似文献
8.
9.
针对传统Allan方差法分析激光陀螺误差特性过程中,不能合理解释方差中部分噪声项出现负值的情况,而采用阻尼振荡的分析方法能够对此给出合理解释,却又损失了辨识精度的问题,提出了一种基于动态Allan方差法理论的改进Allan方差法。该方法将阻尼振荡模型与动态Allan方差模型相结合,使得辨识结果的分析过程更加合理。激光陀螺零偏误差的辨识与分析结果表明:改进Allan方差法的辨识结果精度略高些,在改进Allan方差的三维分析图中可以显示出零偏中存在的数据突变情况,能够反应激光陀螺误差的动态特性。因此,改进Allan方差法更适用于激光陀螺误差特性的分析。 相似文献
10.
Mehdi Eshagh Morteza Ghorbannia 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
The spatial truncation error (STE) is a significant systematic error in the integral inversion of satellite gradiometric and orbital data to gravity anomalies at sea level. In order to reduce the effect of STE, a larger area than the desired one is considered in the inversion process, but the anomalies located in its central part are selected as the final results. The STE influences the variance of the results as well because the residual vector, which is contaminated with STE, is used for its estimation. The situation is even more complicated in variance component estimation because of its iterative nature. In this paper, we present a strategy to reduce the effect of STE on the a posteriori variance factor and the variance components for inversion of satellite orbital and gradiometric data to gravity anomalies at sea level. The idea is to define two windowing matrices for reducing this error from the estimated residuals and anomalies. Our simulation studies over Fennoscandia show that the differences between the 0.5°×0.5° gravity anomalies obtained from orbital data and an existing gravity model have standard deviation (STD) and root mean squared error (RMSE) of 10.9 and 12.1 mGal, respectively, and those obtained from gradiometric data have 7.9 and 10.1 in the same units. In the case that they are combined using windowed variance components the STD and RMSE become 6.1 and 8.4 mGal. Also, the mean value of the estimated RMSE after using the windowed variances is in agreement with the RMSE of the differences between the estimated anomalies and those obtained from the gravity model. 相似文献