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关于“国家信息基础结构”规划的考虑
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作者 张煦 《上海工程技术大学学报》 CAS 1995年第1期1-6,共6页
本文介绍“信息高速公路”的国家信息基础结构(NII),特别对其中通信网基础设施在规划时应该了解和考虑的问题作了简单说明.文中指出信息技术有通信网、计算机和微电子/光电子三个层次,侧重解释通信网发展方向是数字话音、计算机数据、... 本文介绍“信息高速公路”的国家信息基础结构(NII),特别对其中通信网基础设施在规划时应该了解和考虑的问题作了简单说明.文中指出信息技术有通信网、计算机和微电子/光电子三个层次,侧重解释通信网发展方向是数字话音、计算机数据、和压缩编码图象与电视的宽带综合业务数字网(B-ISDN)传输采用同步数字系列(SDH)、由光纤构成同步网(SONET),交换采用异步转移模式(ATM)、程控趋向于高级智能网(AIN).文中提到信息应用,包括专用的区域网(LAN/MAN/WAN),立即开通电子数据互换(EDI)和电子邮箱(E-maiI)等数据业务,也可利用小天线地面站(VSAT)卫星通信.用户加装计算机,实现多媒体通信(multimedia).文中又讲起个人移动通信(PCS),其无线接入(wirelessaccess)也属于通信基础设施的组成部分.本文最后讲到信息产业,强调发展信息制造工业的迫切重要性. 展开更多
关键词 信息高速公路 信息基础结构 通信网基础设施
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The Innovation and Development of Internet of Vehicles 被引量:9
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作者 Weiwei Zhang Xiaoqiang Xi 《China Communications》 SCIE CSCD 2016年第5期122-127,共6页
With the advancements in wireless sensor networks, Internet of Vehicles(IOV) has shown great potential in aiding to ease traffic congestion. In IOV, vehicles can easily exchange information with other vehicles and inf... With the advancements in wireless sensor networks, Internet of Vehicles(IOV) has shown great potential in aiding to ease traffic congestion. In IOV, vehicles can easily exchange information with other vehicles and infrastructures, thus, the development of IOV will greatly improve vehicles safety, promote green information consumption and have a profound impact on many industries. The purpose of this paper is to promote the innovation and development of IOV. Firstly, this paper presents general requirements of IOV such as guidelines, basic principles, and the goal of development. Secondly, we analyze critical applications, crucial support, and business model to promote the industrial development of IOV. Finally, this paper proposes some safeguard measures to further promote the development of IOV. 展开更多
关键词 internet of vehicles wireless communication vehicle platform
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Overlay Share Mesh for Interactive Group Communication with High Dynamic
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作者 吴言华 蔡云泽 许晓鸣 《Journal of Shanghai Jiaotong university(Science)》 EI 2007年第1期1-8,共8页
An overlay share mesh infrastructure is presented for high dynamic group communication systems, such as distributed interactive simulation (DIS) and distributed virtual environments (DVE). Overlay share mesh infrastru... An overlay share mesh infrastructure is presented for high dynamic group communication systems, such as distributed interactive simulation (DIS) and distributed virtual environments (DVE). Overlay share mesh infrastructure can own better adapting ability for high dynamic group than tradition multi-tree multicast infrastructure by sharing links among different groups. The mechanism of overlay share mesh based on area of interest (AOI) was discussed in detail in this paper. A large number of simulation experiments were done and the performance of mesh infrastructure was studied. Experiments results proved that overlay mesh infrastructure owns better adaptability than traditional multi-tree infrastructure for high dynamic group communication systems. 展开更多
关键词 area of interestc (AOI) overlay architecture group communication share mesh
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Smart Meter Deployment Threat and Vulnerability Analysis and Response
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作者 Steven Dougherty Takaki Saitoh 《Journal of Energy and Power Engineering》 2015年第2期199-213,共15页
Advanced intelligent or "smart" meters are being deployed in Asia. A result of deployment of smart meters, with associated equipment, is the electric power industry faced with new and changing threats, vulnerabiliti... Advanced intelligent or "smart" meters are being deployed in Asia. A result of deployment of smart meters, with associated equipment, is the electric power industry faced with new and changing threats, vulnerabilities and re-evaluate traditional approaches to cyber security. Protection against emerging cyber-security threats targeting smart meter infrastructures will increase risk to both the utility and customer if not addressed within initial rollouts. This paper will discuss the issues in SMI (smart meter infrastructures) deployments that pertain to cyber security. It will cover topics such as the threats to operations, infrastructure, network and people and organization and their associated risks. SMI deployments include not only the smart meter, but also the interfaces for home energy management systems as well as communication interfaces back to the utility. Utilities must recognize and anticipate the new threat landscape that can attack and compromise the meter and the associated field network collectors. They must also include threats to the WAN (wide-area-network) backhaul networks, smart meter headends, MDMS (meter data management systems) and their interfaces to CIS (customer information systems) and billing and OMS (outage management systems). Lessons learned from SMI implementations from North America, Europe and recently, Japan, will be discussed. How white-box and black-box testing techniques are applied to determine the threat impact to the SMI. Finally, organizational change risk will be discussed and how utilities have responded to re-organizing and developing a security governance structure for the SMI and other smart grid applications. 展开更多
关键词 Smart meter infrastructure cyber security risk assessment threat analysis meter vulnerability security operation center privacy.
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