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对同步卫星通信网提出新要求
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作者 张煦 《电信快报》 1999年第11期3-5,30,共4页
阐述对同步卫星通信网发展方向提出的一些新要求:改进卫星ATM 宽带网结构和星上装置ATM 交换机,有效承担Internet 业务和采用按需提供带宽方式。
关键词 卫星通信 宽带网 ATM 同步卫星通信网
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高速公路专用主干通信网组网技术
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作者 王一如 《中国市政工程》 2004年第6期59-61,共3页
介绍了专用通信网拓扑结构以及光同步数字通信网(SDH)、异步传输交换技术(ATM)、动态分组光纤传输技术(DPT)、光波长分割复用技术(WDM)和IP网络技术的发展,指出动态分组光纤传输技术(DPT)是目前最有前途的组网技术。最后列举了上海公路... 介绍了专用通信网拓扑结构以及光同步数字通信网(SDH)、异步传输交换技术(ATM)、动态分组光纤传输技术(DPT)、光波长分割复用技术(WDM)和IP网络技术的发展,指出动态分组光纤传输技术(DPT)是目前最有前途的组网技术。最后列举了上海公路通信网的拓扑结构和采用动态IP分组光纤传输技术的应用实例。 展开更多
关键词 高速公路 专用主干通信网 组网技术 异步传输交换技术 同步数字通信网
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软件锁相环在同步数字体系中的应用
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作者 徐大明 《舰船电子工程》 1999年第5期51-53,共3页
主要论述了同步通信网中,交换机时钟板软件锁相环的基本原理,及其实现的方法。由于篇幅有限,文中将不涉及技术细节的讨论。
关键词 SDH 锁相环 DA转换 同步通信网 数字通信网
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关于铁路同步网发展的一些建议
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作者 游先晋 《铁路通信信号工程技术》 1996年第1期62-63,共2页
1.前言通信网同步是指同一通信网络中时标和信号间相对应的各有效瞬间具有所要求的恒定关系。数字通信网中,同步是指在同一数字网中各节点时钟间频率和相位保持相对恒定关系,以使收发频率一致。
关键词 数字同步 综合定时供给系统 主从同步方式 通信网同步 数字网 数字通信网 程控交换机 铁路部门 通信网 铁路通信网
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一种G.703接口的实现方案
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作者 沈兰荪 陈芳 贾文辉 《电信科学》 北大核心 1995年第1期39-43,共5页
数据通信用户设备包括数据终端设备和数据电路终接设备。这两种设备需要通过一定的接口电路相连接。本文给出了一种符合CCITTG.703建议的接口实现方案,详细介绍了接口电路功能与设计技巧,该电路具有广泛的适用性。
关键词 G.70接口 同步传输 数据通信 同步通信网 接口
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Dynamic Connectivity in Cislunar Communication Networking Based on Geosynchronous Orbit Relay Satellites 被引量:3
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作者 Wu Xiaobo Zhou Xianwei Lin Fuhong 《China Communications》 SCIE CSCD 2012年第11期41-53,共13页
The architecture of cislunar multi-hop communication networks, which focuses on the requirements of lunar full-coverage and continuous cislunar communications, is presented on the basis of Geosynchronous Orbit (GEO) s... The architecture of cislunar multi-hop communication networks, which focuses on the requirements of lunar full-coverage and continuous cislunar communications, is presented on the basis of Geosynchronous Orbit (GEO) satellite network relays. According to the geographical distribution of the forthcoming Chinese Deep Space Measuring and Controlling Network (DSMCN), two networking schemes are proposed and two elevation angle optimization models are established for locating GEO relay satellites. To analyze the dynamic connectivity, a dynamic network model is constructed with respect to the time-varying characteristics of cislunar trunk links. The advantages of the two proposed schemes, in terms of the Connectivity Rate (CR), Interruption Frequency (IF), and Average Length of Connecting Duration (ALCD), are corroborated by several simulations. In the case of the lunar polar orbit constellation case, the gains in the performance of scheme I are observed to be 134.55%, 117.03%, and 217.47% compared with DSMCN for three evaluation indicators, and the gains in the performance of scheme II are observed to be 238. 22%, 240.40%, and 572.71%. The results validate that the connectivity of GEO satellites outperforms that of earth facilities significantly and schemes based on GEO satellite relays are promising options for cislunar multi-hop communication networking. 展开更多
关键词 cislunar communication networking dynamic connectivity dynamic network model GEO relay satellites lunar full coverage
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A Secret Sharing Featured Secure Communication System Based on Dual Synchronization of Chaos in Colpitts Circuits
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作者 范燕 史治国 +1 位作者 冉立新 陈抗生 《Journal of Shanghai Jiaotong university(Science)》 EI 2006年第2期158-164,171,共8页
A novel digital secure communication system employing dual synchronization of chaos in two pairs of Colpitts circuits is proposed. The binary information to be transmitted is firstly modulated by digital modulation sc... A novel digital secure communication system employing dual synchronization of chaos in two pairs of Colpitts circuits is proposed. The binary information to be transmitted is firstly modulated by digital modulation scheme, and then mixed together with two chaotic waveforms generated by two Colpitts circuits with different circuit parameters. Thus the combined (and encrypted) signal is transmitted through an additive white Gauss noise (AWGN) channel. In the receiver, the binary message can he recovered only when the parameters of the two Colpitts circuits are known. If the parameters of the two Colpitts circuits are owned by two different users, this can be viewed as a (2,2) threshold scheme. Based on large amount of simulations, the bit error rate (BER) performance of this communication scheme is presented. 展开更多
关键词 secret sharing dual synchronization of chaos Colpitts circuits
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Time synchronization in communication networks based on the Beidou foundation enhancement system 被引量:7
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作者 LIU Hui ZHANG RuFei +1 位作者 LIU JingNan ZHANG Ming 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第1期9-15,共7页
Communication networks rely on time synchronization information generated by base station equipment(either the Global Navigation Satellite System receiver or rubidium atomic clock) to enable wireless networking and co... Communication networks rely on time synchronization information generated by base station equipment(either the Global Navigation Satellite System receiver or rubidium atomic clock) to enable wireless networking and communications. Meanwhile, the time synchronization among base stations depends on the Network Time Protocol. With the development of mobile communication systems, the corresponding time synchronization accuracy has increased as well. In this case, the use of sparsely distributed-high-precision synchronization points to synchronize time for an entire network with high precision is a key problem and is the foundation of the enhanced network communication. The current receiver equipment for China's digital synchronous network typically includes dedicated multi-channel GPS receivers for communication; however, with the development of GPS by the USA, network security has been destabilized and reliability is low. Nonetheless, network time synchronization based on Beidou satellite navigation system timing devices is an inevitable development trend for China's digital communications network with the establishment of the independently developed BDS, especially the implementation and improvement of the Beidou foundation enhancement system. 展开更多
关键词 Beidou satellite navigation system precision timing time synchronization Beidou foundation enhancement system communication network time synchronization
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