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641.
装备时延校准误差是靶场测控系统中事件记录和交会定位的重要误差因素,其精确校准是实现装备时间同步的关键技术。针对装备时延问题展开研究,提出了一种物理含义清晰、易于测量的装备时延定义,实现了离散站点装备时延校准,验证了基于改进型B码的装备时延校准监控的有效性。试验结果表明,时延校准的精度达到了十微秒量级。 相似文献
642.
X. Luo B. Heck J.L. Awange 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2013
Global Navigation Satellite Systems (GNSS) are emerging as possible tools for remote sensing high-resolution atmospheric water vapour that improves weather forecasting through numerical weather prediction models. Nowadays, the GNSS-derived tropospheric zenith total delay (ZTD), comprising zenith dry delay (ZDD) and zenith wet delay (ZWD), is achievable with sub-centimetre accuracy. However, if no representative near-site meteorological information is available, the quality of the ZDD derived from tropospheric models is degraded, leading to inaccurate estimation of the water vapour component ZWD as difference between ZTD and ZDD. On the basis of freely accessible regional surface meteorological data, this paper proposes a height-dependent linear correction model for a priori ZDD. By applying the ordinary least-squares estimation (OLSE), bootstrapping (BOOT), and leave-one-out cross-validation (CROS) methods, the model parameters are estimated and analysed with respect to outlier detection. The model validation is carried out using GNSS stations with near-site meteorological measurements. The results verify the efficiency of the proposed ZDD correction model, showing a significant reduction in the mean bias from several centimetres to about 5 mm. The OLSE method enables a fast computation, while the CROS procedure allows for outlier detection. All the three methods produce consistent results after outlier elimination, which improves the regression quality by about 20% and the model accuracy by up to 30%. 相似文献
643.
《中国航空学报》2016,(6):1795-1805
This paper focuses on the type synthesis of two degree-of-freedom (2-DoF) rotational parallel mechanisms (RPMs) that would be applied as mechanisms actuating the inter-satellite link antenna. Based upon Lie group theory, two steps are necessary to synthesize 2-DoF RPMs except describing the continuous desired motions of the moving platform. They are respectively generation of required open-loop limbs between the fixed base and the moving platform and definition of assembly principles for these limbs. Firstly, all available displacement subgroups or submanifolds are obtained readily according to that the continuous motion of the moving platform is the inter-section of those of all open-loop limbs. These subgroups or submanifolds are used to generate all the topology structures of limbs. By describing the characteristics of the displacement subgroups and submanifolds intuitively through employing simple geometrical symbols, their intersection and union operations can be carried out easily. Based on this, the assembly principles of two types are defined to synthesize all 2-DoF RPMs using obtained limbs. Finally, two novel categories of 2-DoF RPMs are provided by introducing a circular track and an articulated rotating platform, respectively. This work can lay the foundations for analysis and optimal design of 2-DoF RPMs that actuate the inter-satellite link antenna. 相似文献
644.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2020,65(11):2645-2661
Timing group delay (TGD) is an important parameter that affects the positioning performance of global navigation satellite systems (GNSS). The BeiDou navigation satellite system (BDS) broadcasts TGD corrections from B3I frequency to B1I and B2I frequencies, namely TGD1 and TGD2. On July 21, 2017, BDS updated TGD values with a maximum change of more than 4 ns. In this contribution, we explain the motivation for the BDS TGD update, which is due to the systematic bias between narrowly correlated and widely correlated pseudo-ranges in BDS monitoring receivers. To investigate the impact of the updated TGD, BDS signal-in-space range error (SISRE) and user positioning performance regarding single point positioning (SPP) and precise point positioning (PPP) are analyzed. Results show that after the update of TGD, the difference between the new TGD and multi-GNSS experiment (MGEX) differential code bias (DCB) decreases from 1.38 ns to 0.29 ns on TGD1 and from 0.40 ns to 0.25 ns on TGD2. With the contribution of more accurate TGD, the systematic bias of BDS radial SISRE no longer exists, and the overall BDS SISRE also reduces from 1.33 m to 0.87 m on B1I/B2I frequency, from 1.05 m to 0.89 m on B1I frequency, from 0.92 m to 0.91 m on B2I frequency, respectively, which proves the similar precision of BDS TGD and MGEX DCB. One week of statistical results from 28 globally distributed MGEX stations shows that the SPP performance improves on non-B3I frequencies after the TGD update, with a maximum improvement of more than 22% for the B1I/B2I or B1I/B3I combination. The new TGD mainly reduces SPP positioning bias in the East component. The updated TGD also slightly improves the PPP convergence performance for the B1I/B3I combination, but mostly contributes to a more accurate estimation of the receiver clock and ambiguities. 相似文献
645.
646.
为了探究直流滑动弧放电应用于航空发动机燃烧室内点火的性能特点,设计了直流滑动弧等离子体点火器,在模型燃烧室内进行了煤油/空气混合气的点火实验,利用高速相机记录了滑动弧等离子体点火器的电弧产生和滑动过程以及燃烧室内煤油/空气混合气的点火和火焰发展过程,研究了不同空气工作介质流量、驱动电源输出电流、点火器电极夹角和点火器安装位置等因素对滑动弧等离子体点火器点火特性的影响。结果表明:滑动弧在运动过程中会产生不规则的跳动,并且存在着电弧分流的现象,导致电弧长度发生变化;在湍流的作用下,初始火核会演变为分裂的、大面积的湍流火焰,着火面积不断增大,最终在t=21ms时形成稳定燃烧;随着空气工作介质流量增大、驱动电源输出电流减小以及点火器的安装位置远离燃油雾化喷嘴,滑动弧等离子体点火器的电弧长度减小,点火延迟时间逐渐增长,例如余气系数α=8时,I=30A下电弧长度为47.1mm,相比I=20A增长了75.1%,点火延迟时间为21ms,相比I=20A缩短了40%;而随着点火器电极夹角的增大,电弧长度先增大后减小,点火延迟时间则先减小后增长,在电极夹角θ=45°时,电弧长度最长,点火延迟时间最短,分别为30.5mm和12ms。 相似文献
647.
针对存在总线通信时延和掉包的航空发动机分布式控制系统,分别进行了时延和掉包情况下的系统建模和稳定性分析;利用增广离散化方法将时延系统转化为增广无时延模型,利用迭代方法将数据掉包建模为一定掉包界内的切换系统;分别提出时延和掉包条件下系统的稳定性条件,并通过求解线性矩阵不等式确定系统输出反馈控制增益;最后比较了基于保持输入和重构增益的2种掉包补偿措施。研究结果表明:采用基于时延的反馈控制增益设计和重构增益掉包补偿措施,可以保证分布式发动机控制系统的稳定性并获得最佳性能。 相似文献
648.
卫星双向时间比对的设备时延包含在伪码测距的测量值之中,精确标定设备时延是提升卫星双向时间比对精度的关键。针对卫星双向时间比对中的设备时延标定问题,提出了一种基于同源零基线测量的设备时延标定方法,将中国科学院国家授时中心的1套3.7m天线地面站和2套5m天线地面站并址安装,3套地面站同时进行卫星双向时间比对模式的观测,以此来标定3套地面站之间的设备时延相对值。试验结果表明,该方法可使设备时延标定的精度达到亚ns量级,能有效减小设备时延对卫星双向时间比对精度的影响,对于多个地面站站间时间比对具有一定的实际意义。 相似文献
649.
650.
Toyobur RAHMAN 《中国航空学报》2011,24(6):797-806
The international reference ionosphere (IRI) model is generally accepted standard ionosphere model. It describes the ionosphere environment in quiet state and predicts the ionosphere parameters within a certain precision. In this paper, we have made a breakthrough in the application of the IRI model by modifying the model for regions of China. The main objectives of this modification are to construct the ionosphere parameters foF2 and M (3000) F2 by using the Chinese reference ionosphere (CRI) coefficients, appropriately increase hmE and hmF2 height, reduce the thickness of F layer, validate the parameter by the measured values, and solve the electron concentration distribution with quasi-parabolic segment (QPS). In this paper, 3D ray tracing algorithm is constructed based on the modified IRI model and international geomagnetic reference field (IGRF) model. In short-wave propagation, it can be used to predict the electromagnetic parameters of the receiving point, such as the receiving area, maximum useable frequency (MUF) and the distribution of the group delay etc., which can help to determine the suitability of the communication. As an example, we estimate the group delay distributions around Changchun in the detection from Qingdao to Changchun using the modified IRI model and IGRF model, and provide technical support for the short-wave communication between the two cities. 相似文献