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1.
In this article we consider the performance of the 3.84 Mcpstime-division duplex (TDD) mode of UTRA (Universal TerrestrialRadio Access) network. We emphasize two of the radio resourcemanagement algorithms, handover and uplink power control, whoserole in the overall system performance is studied extensively.First, a handover algorithm used in WCDMA (Wideband Code DivisionMultiple Access) standard is considered in a TDD-mode operation.This gives rise to a careful setting of different handoverparameters, and the evaluation of the effects to the systemperformance. Secondly, the specified uplink power controlalgorithm is considered. Since it is based on several user-mademeasurements which may involve both random and systematic errors acareful study about the suitability of the power control scheme iscarried out.  相似文献   
2.
下一代无线通信(NextG:Next-generationwireless)的主流是随时随地的无线通信系统和无缝的高质量无线业务。概述了随时随地的无线通信和业务发展情况,并且介绍了为下一代无线通信的发展提供基础的关键技术。  相似文献   
3.
1 IntroductionHandoverbetweencellsisplayinganimportantroleincellularcommunicationsystems[1~ 1 2 ] .Thehandoverprocedureanditseffectivenessareseriouslylimitedbythecellulararchitectureasaresultofmar ketplanning .Basedonthehexagonalcellulararchi tecture,manyhandoverprocedureshavebeendis cussedandevaluated ,andmostoftheimprovementproposedonthemleadstotheintroductionofsector ingcellularorlayeredcellularmodel.Otherwise ,abetterhandoverprocedureisessentialinmaintainingacallinprogressbutitreflectshi…  相似文献   
4.
载波快速捕获与跟踪的双数字锁频环路无缝切换   总被引:1,自引:0,他引:1  
锁频环广泛应用于载波频率快速同步的场合,为解决大捕获范围和跟踪精度之间的矛盾,通常捕获和跟踪状态时采用带宽不同的频率锁定环路,并根据载波同步情况进行切换.对这种硬切换所导致的跟踪环路的收敛过程、瞬态时间进行分析,并基于二阶锁频环与卡尔曼滤波等效结构,应用卡尔曼滤波算法进行两种状态之间环路增益时变的无缝切换.推导出高动态数字直扩接收机差积鉴频二阶锁频环路无缝切换控制增益,两种切换方式的仿真结果表明无缝切换的效果优于传统的硬切换方式.  相似文献   
5.
多网络长期共存是各电信运营商面临的普遍现象,鉴于目前各网络独立运营引入的多网间互操作复杂、联合运营效率不高的问题,如何实现高效的多网融合以提高网络运营效率和用户体验成为移动通信研究中的一个重要课题,并具有广泛的应用前景.面向5G,其研究与网络架构的设计是相辅相成的,在对多网融合现状及问题进行分析的基础上,讨论了多网融合涉及的关键技术需求,并给出面向5G的逻辑架构示例,分析了相关的设计原理,同时进一步给出了用户/核心网透明的多网统一接入和无缝的移动性管理解决方案,缩短了网络间互操作路径,降低了互操作复杂度,提高了网络运营效率和用户体验.  相似文献   
6.
李泰  李烨 《通信技术》2015,48(5):566-572
高铁的高速、全封闭特性给移动通信系统的越区切换性能带来了极大挑战,直接影响用户体验。阐述了移动通信系统中越区切换的概念,并指出高速铁路场景下越区切换面临的问题。回顾了国内外为解决这些问题所进行的相关研究及最新进展,包括网络架构优化和切换流程中测量、参数设置、执行策略、数据传输环节的优化,并指出群切换机制是未来值得关注的研究方向。  相似文献   
7.
介绍了移动IPv6的工作机制,提出一个移动IPv6和无线局域网(WLAN)集成的设计方案,以实现移动终端在无线局域网之间无缝切换,并建立实际的实验环境对移动IPv6进行测试.  相似文献   
8.
GSM网络是处在一个动态发展下的移动通信网络,切换成功率的优化是GSM网络的一项重要内容,在做好日常优化的同时,我们更加需要关注在动态网络环境下的切换成功率的优化.  相似文献   
9.
为满足用户分散的大规模视频流媒体应用需求,该文提出了一种基于多控制器集群缓存代理结构(Multi- controller based Cluster Streaming Cache Proxy, MCSCP),该体系由一组控制器构成控制子系统,由多个内容存储器构成分布式存储子系统。对控制子系统的关键问题进行了深入研究:采用图论思想给出控制器组的选取算法,设计了一种基于优先级的主控制器选举和在线切换协议(Priority based Master-controller Election and Handover, PMEH)。建立数学模型分析了多控制器体系对系统可靠性的改善程度,讨论了控制器选取算法的性能,研究了协议中报文发送间隔变量与系统开销的关系,并使用仿真实验给出了该参数的最佳取值范围。  相似文献   
10.
The future of telecommunications is to reach mass population in all regions of the world with services that will benefit humankind leading to the betterment of its and all life in our planet. Telecommunications and its services have to and will become part of life as is breathing to mankind. This future is by far not achieved and for some time to come whatever we develop there is always a next step to it. After all, that keeps our world going.Currently we are again at that stage of work on future generation communications where these words have not yet achieved a consensus. In this paper let us look at the crystal ball and try to materialize at least in words what we see in it [1–20].We first define fourth generation (4G) communication system and beyond 3G (B3G). Then we look at the requirements for future generation communications from the perspective of the users, the operators, and the service providers. Next the technologies that should and are being developed to materialize the future generation are discussed. A dip is also taken into the ongoing standardization or pre-standardization efforts. At first the introduction section tries to raise questions on the “future”.Prof. Dr. Ramjee Prasad, while being a father always there for his children, is also a visionary and a leader in the field of telecommunications. It is with pride and honour that I write in this paper, on the occasion of 60th birthday of my father, my thoughts of the future of telecommunications. I owe to him and my mother the knowledge that I present and the future that I have written of. It is from the spark that they had put in me that this vision of future was created thus the title “the future re-visited”. Disclaimer: This paper reflects opinion of the author not of NTT DoCoMo or DoCoMo Euro-Labs. Anand Raghawa Prasad Senior Member IEEE, project manager network level security model group, DoCoMo Euro-Labs, Munich, Germany was born in Ranchi, India. He received his Ph.D. degree in the field of WLANs: protocols, security and deployment and MSc (Ir.) degree in the field of Self Similarity in ATM Network Traffic from Delft University of Technology, The Netherlands, in 2003 and 1996, respectively. From 1996 to 1998 he worked as research engineer and later project leader in Uniden Corporation, Tokyo, Japan. From 1998 to 2000, he was distinguished member of technical staff and worked as systems architect for IEEE 802.11 based WLANs (WaveLAN and ORiNOCO) in Lucent Technologies, Nieuwegein, The Netherlands. Subsequently, he was technical director at Genista Corporation, Tokyo, Japan, and technical advisor of PCOM:I3, Aalborg, Denmark. He was a voting member of IEEE 802.11 and he is an active participant of 3GPP. In addition to his publications in journals, international conferences and chapters in books, he has 20$+$ patent applications in the field of wireless communications and has co-edited a book titled “WLAN Systems and Wireless IP for Next Generation Communications” and co-authored a book on “Wireless LANs and Wireless IP: Security, Mobility, QoS and Mobile Network Integration” both published by Artech House in 2002 and 2005 respectively. He is writing a book on “Security in Wireless Networks and Mobile Platforms” to be published in August 2006. He has participated in organizing of various International Conferences including VTC, PIMRC and WPMC. He was a guest editor of a special issue on “Security for Next Generation Communications” of the Springer Journal on Wireless Personal Communications and he is a guest editor of a special issue on “Seamless Handover in Next Generation Wireless/Mobile Communications” of Wireless Personal Communications.  相似文献   
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