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1.
通过对星间链路和空间态势感知系统国内外发展现状的分析,指出星间链路在空间信息有效获取、安全传输和实时应用以及保障空间态势感知系统战场生存能力等方面起着重要的作用.针对星间链路在未来空间态势感知系统中的应用需求,提出包含空间通信模型和空间导航模型在内的空间感知体系基本架构,并对该架构下星间链路的设计要求或者特点进行分析,指出星间链路应该具有灵活可变的星间路由策略和联网结构,并能够支持高速可变和安全可靠的星间数据传输.分别从空间网络和卫星节点2个层面提出了系统实现的关键技术,并给出部分关键技术的研究重点和研究方法.上述研究结果可以为星间链路及相关领域的研究工作提供一定的借鉴和帮助.  相似文献   
2.
一种绕飞编队卫星星间链路系统的总体设计方法   总被引:2,自引:1,他引:1  
为了建立高精度相对定位编队卫星的星间链路,提出了一种基于GPS的绕飞编队卫星星间链路系统设计方法。针对我国首次以InSAR为背景的任务,以某绕飞编队星座星间链路系统总体方案为例,利用STK/MATLAB分析软件,对天线覆盖区与组阵进行了仿真分析,并根据分析结果做了系统优化,包括星间轨道构型、天线设计组阵图、天线安装位置、链路预算、星间通信措施设计分析以及电磁兼容性分析等。结果表明:基于GPS的编队卫星能够从系统角度优化设计建立星间链路,从而完成编队跟飞、绕飞期间的星间通信与测量任务,为卫星建立星座构型、相对定位测量提供了可靠、稳定的传输通道。该设计方法可为同类卫星或其他类型卫星星间链路系统设计提供参考。  相似文献   
3.
星间网络拓扑是建立星间链路首要考虑的问题,以往文献中描述星间网络拓扑一般都用直观图形的表示方法,即以卫星作为节点、链路作为边画出的图形。但是这种直观图形表示法,当卫星数量增加时,图形庞大而杂乱难以辨认,同时无法满足分析问题的需要。为此,文章提出了一种利用图论中的二分图及其对应的关联矩阵描述星间网络拓扑的方法,此方法具有图形描述简单明了、关联矩阵描述便于仿真分析的特点。  相似文献   
4.
Within the next decade, there will be a number of GNSS (Global Navigation Satellite System) available, i.e. modernized GPS, Galileo, restored GLONASS, BeiDou and many other regional GNSS augmentation systems. Thus, measurement redundancies and geometry of the satellites can be improved. GDOP (Geometric Dilution of Precision) and PDOP (Position Dilution of Precision) are associated with the constellation geometry of satellites, and they are the geometrically determined factors that describe the effect of geometry on the relationship between measurement error and position error. GDOP and PDOP are often used as standards for selecting good satellites to meet the desired positioning precision. In this paper, the related conclusions of minimum of GDOP which was discussed are given, and it is used to study the minimum of PDOP for two cases that the receiver is on the earth’s surface and the receiver is on satellite. The corresponding theorem and constructive solutions of minimum of PDOP are given. Then, the rationality of the ISL (inter-satellite link) establishment criteria in Walker-δ constellation is discussed by using the theory of minimum of PDOP. Finally, the minimum of PDOP is calculated when the number of satellites is 4–10, and these results are verified by using Monte Carlo method.  相似文献   
5.
以一种新型的PWM控制器-ISL6752为核心,对其控制机理进行分析,在Simplorer7.0仿真平台基础上建立了其内部关键子模块的模型,进行理论设计与系统综合仿真,并以一台48V/20A的原理样机为例进行验证对比,其模型对于原理性分析以及设计控制网络的参数具有重要的指导价值。  相似文献   
6.
文章提出了带有优先级的最短时延卫星路由策略,将业务分为话音业务和数据业务,根据业务时延要求的不同,优先处理话音业务,再根据源卫星、目的卫星的位置,计算路径延时的度量标准,以此得到经过优劣排序的候选路径集合,并对最佳路径进行计算。仿真结果表明,算法显著降低了话音业务的时延水平,有效提高通话质量。  相似文献   
7.
Satellite autonomous navigation is an important function of the BeiDou-3 navigation System (BDS-3). Satellite autonomous navigation means that the navigation satellite uses long-term forecast ephemeris and Inter-Satellite Link (ISL) measurements to determinate its own spatial position and time reference without the support of the ground Operation and Control System (OCS) for a long time to ensure that the navigation system can normally maintain the time and space reference. This paper aims to analyze the feasibility of distributed autonomous navigation algorithms. For the first time, a ground parallel autonomous navigation test system (GPANTS) is built. The performance of distributed autonomous navigation is then analyzed using the two-way ISL ranging of BDS-3 satellites. First, the BDS simulation platform and the GPANTS are introduced. Then, the basic principles of distributed satellite autonomous orbit determination and time synchronization based on ISL measurements are summarized. Preliminary evaluation of the performance of the BDS-3 constellation autonomous navigation service under ideal conditions through simulation data. Then the performance of autonomous navigation for 22 BeiDou-3 satellites using ISL measurements is evaluated. The results show that when satellites operate autonomously for 50 days without the support of any ground station, the User Range Error (URE) of autonomous orbit determination is better than 3 m, and the time synchronization accuracy is better than 4 ns.  相似文献   
8.
Autonomous satellite navigation is based on the ability of a Global Navigation Satellite System (GNSS), such as Beidou, to estimate orbits and clock parameters onboard satellites using Inter-Satellite Link (ISL) measurements instead of tracking data from a ground monitoring network. This paper focuses on the time synchronization of new-generation Beidou Navigation Satellite System (BDS) satellites equipped with an ISL payload. Two modes of Ka-band ISL measurements, Time Division Multiple Access (TDMA) mode and the continuous link mode, were used onboard these BDS satellites. Using a mathematical formulation for each measurement mode along with a derivation of the satellite clock offsets, geometric ranges from the dual one-way measurements were introduced. Then, pseudoranges and clock offsets were evaluated for the new-generation BDS satellites. The evaluation shows that the ranging accuracies of TDMA ISL and the continuous link are approximately 4?cm and 1?cm (root mean square, RMS), respectively. Both lead to ISL clock offset residuals of less than 0.3?ns (RMS). For further validation, time synchronization between these satellites to a ground control station keeping the systematic time in BDT was conducted using L-band Two-way Satellite Time Frequency Transfer (TWSTFT). System errors in the ISL measurements were calibrated by comparing the derived clock offsets with the TWSTFT. The standard deviations of the estimated ISL system errors are less than 0.3?ns, and the calibrated ISL clock parameters are consistent with that of the L-band TWSTFT. For the regional BDS network, the addition of ISL measurements for medium orbit (MEO) BDS satellites increased the clock tracking coverage by more than 40% for each orbital revolution. As a result, the clock predicting error for the satellite M1S was improved from 3.59 to 0.86?ns (RMS), and the predicting error of the satellite M2S was improved from 1.94 to 0.57?ns (RMS), which is a significant improvement by a factor of 3–4.  相似文献   
9.
In this paper, the establishment criteria, routing algorithm and the probability of use of ISLs (inter-satellite links) in the mixed navigation constellation of GEO satellites, IGSO satellites and MEO satellites are analyzed. Firstly, the general criteria of ISL establishment in mixed navigation constellation are proposed from the perspective of geometry, and the influences of these criteria on routing algorithms and the probability of use of ISLs are discussed. Then, from the perspective of autonomous orbit determination, the routing algorithm in mixed navigation constellation is designed. Thirdly, a stochastic study of ISLs load in mixed navigation constellation is proposed, and the formulae of probability of use of ISLs are given. Finally, in the simulation, the establishment criteria, routing algorithm and the probability of use of ISLs in a specific mixed navigation constellation of 3GEO + 3IGSO + 24MEO are discussed in detail. The findings of this paper provide a basis for the ISL establishment and routing algorithm, and offer the quantitative indicators for the use of ISL in the mixed navigation constellation.  相似文献   
10.
由于卫星网拓扑时变的特性,使得现有的多协议标签交换(MPLS)技术难以在卫星网中有效地运行。以铱(Irid ium)系统为例,首先分析低轨卫星网(LEO)中星际链路的变化情况。针对卫星网具有频繁断接性和传输大时延等特点,将基于MPLS技术的LEO卫星网系统进行功能模块的划分,并重点对MPLS协议中的标签设计、信令协议选择、标签交换路径(LSP)的切换等问题进行仿真,同时提出相应的改进方案。  相似文献   
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