共查询到18条相似文献,搜索用时 78 毫秒
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一种双向测距与时间同步系统的设计与分析 总被引:1,自引:0,他引:1
在研究双向单程伪距测量原理的基础上,设计了双向测距与时间同步(DRTS)终端系统总体构架,阐述了在系统中使用的技术,并搭建了基于DSP+FPGA的双向测距与时间同步系统软硬件平台。实验结果表明,此系统的码速率为5MHz、中心频率为15MI-Iz时,测距和时间同步的分辨率可达0.15cm和5ps(@1S),采用不同频率源时测距和时间同步的精度分别为1.038m和3.46ns,采用相同频率源时分别为0.28cm和9.43ps(参考频率稳定度1×10^-10/d量级)。与国外同类产品相比具有测量精度优势,但考虑通用性,此系统的硬件仍需进一步优化,软件上需要做到码速率可调。 相似文献
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利用同步卫星进行中日双向时间传递 总被引:1,自引:0,他引:1
时间同步是高精度授时不可缺少的环节。利用同步卫星进行双向时间传递可最大限度地消除路径因素对时间同步的影响,并且可准确,适时地得到高精度的比对结果。国际计量局(BIPM)为改善世界范围内时间同步,提出了全球双向卫星时间传递(TWSTT)计划。由中国科学院陕西天文台(CSAO)和日本邮政省通信综合研究所(GRL)所进行的双向卫星时间传递经过一年的工作,已经得到了较好结果,进一步的分析正在进行中。 相似文献
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介绍了利用卫星双向双频(C波段)观测来测定电离层时延的方法,并对不同经纬度的观测结果进行了比较和分析。卫星双向双频(C波段)观测精度高,采样间隔短,能测定电离层总电子含量的细微变化。 相似文献
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全球卫星导航系统(Global Navigation Satellite System, GNSS)通过播发卫星钟差和精密轨道信息实现时间和空间基准信息向导航用户的传递.随着高精度原子钟等导航卫星载荷、星间链路等天基/地基监测手段以及数据处理方法等技术的不断更新,卫星轨道和钟差产品的精度和实时性也逐步提升. 2018年12月,北斗三号卫星导航系统正式开通,为"一带一路"国家提供实时高精度、高可靠的基本导航定位服务.综述了北斗导航系统从北斗二号区域系统到北斗三号全球系统精密定轨与时间同步处理面临的困难和挑战,针对上述问题,阐述了北斗运行控制系统的解决途径和实现指标.与GPS等其他GNSS系统进行比较,分析了不同导航系统技术特点.最后展望了精密定轨与时间同步技术未来的发展路线图,为更高精度的GNSS导航定位授时服务提供参考. 相似文献
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为进一步提高用户定时校频精度,我们通过使用移相技术并利用高精度数字存储示波器和高精度计数器,对长波接收系统时间延迟的测试方法进行了改进,获得了比原先更精确的测量结果。 相似文献
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介绍了在Windows系统下用Visualc++、DDK和DriverStudio软件对PCI(peripheral component interconnect)设备驱动程序的编写。阐述了PCI设备驱动程序的分层结构和编写方式。PCI驱动属于内核模式驱动程序中的即插即用驱动,PCI的即插即用功能是本丈重点介绍对象。另外介绍了PCI设备驱动通过配置空间获取设备资源的过程与方法,以及驱动程序与操作系统之间的通讯机制。 相似文献
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The success of LISA Pathfinder in demonstrating the LISA drag-free requirement paved the way for using space interferometers to detect low-frequency and middle-frequency gravitational waves(GWs). The TAIJI GW mission and the new LISA GW mission propose using an arm length of 3 Gm(1 Gm = 10~6 km) and an arm length of 2.5 Gm respectively. For a space laser-interferometric GW antenna,due to astrodynamical orbit variation, time delay interferometry(TDI) is needed to achieve nearly equivalent equal-arms for suppressing the laser frequency noise below the level of optical path noise, acceleration noise, etc in order to attain the requisite sensitivity. In this paper, we simulate TDI numerically for the TAIJI mission and the new LISA mission. To do this, we work out a set of 2200-day(6-year) optimized science orbits for each mission starting on 2028 March 22 using the CGC 2.7.1 ephemeris framework. Then we use the numerical method to calculate the residual optical path differences of the first-generation TDI configurations and the selected second-generation TDI configurations. The resulting optical path differences of the second-generation TDI configurations calculated for TAIJI, new LISA and eLISA are well below their respective requirements for laser frequency noise cancelation. However, for the first-generation TDI configurations, the original requirements need to be relaxed by 3 to 30 fold to be satisfied. For TAIJI and the new LISA, about one order of magnitude relaxation would be good and recommended; this could be borne on the laser stability requirement in view of recent progress in laser stability, or the GW detection sensitivities of the second-generation TDIs have to be used in the diagnosis of the observed data instead of the commonly used X, Y and Z TDIs. 相似文献
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The solar longitude dependence of proton event delay time 总被引:1,自引:0,他引:1
The relationship between heliographic longitude and the delay between flare occurrence and solar proton observation is studied using results obtained aboard HEOS A1 during 1969. The result obtained differs from previous findings. We ascribe this to the formation of a long-lived magnetic field configuration close to the Sun associated with a particular group of active regions.CNRS. 相似文献
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V. S. Nuotio 《Celestial Mechanics and Dynamical Astronomy》1974,10(4):399-404
Expressions for the interplanetary radar time delay in the one-body problem of an arbitrary gravitational theory are deduced. The structure of the theory enters the result through two functions of one variable,f(r) andq(r), always connected by an identity. 相似文献
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朱凯 范瑾 Kun Liang Wei Tang Zhi-Sheng Gao Yan Zhu Yi Feng Wei-Wei Zhu Lei Qian You-Ling Yue Jin-You Song Xiang-Wei Shi Xing-Yi Wang Ming-Lei Guo Hang Zhang Heng-Qian Gan Hong-Fei Liu Cheng-Jin Jin Peng Jiang 《天文和天体物理学研究(英文版)》2020,(5):148-154
This paper reports on the time and frequency standard system for the Five-hundred meter Aperture Spherical radio Telescope(FAST),including the system design,stability measurements and pulsar timing observations.The stability and drift rate of the frequency standard are calculated using 1-year monitoring data.The UTC-NIM Disciplined Oscillator(NIMDO)system improves the system time accuracy and stability to the level of 5 ns.Pulsar timing observations were carried out for several months.The weighted RMS of timing residuals reaches the level of less than 3.0μs. 相似文献