首页> 外文期刊>IEEE Transactions on Vehicular Technology >An Advanced Satellite UMTS Testbed for Laboratory and Over-the-Air Experiments of Third-Generation Mobile Services: Part I—System Design Aspects
【24h】

An Advanced Satellite UMTS Testbed for Laboratory and Over-the-Air Experiments of Third-Generation Mobile Services: Part I—System Design Aspects

机译:用于第三代移动服务的实验室和无线实验的高级卫星UMTS测试平台:第一部分-系统设计方面

获取原文
获取原文并翻译 | 示例
           

摘要

This paper provides an overview of the advanced S-UMTS testbed (ATB; S-UMTS = satellite universal mobile telecommunication system) project that is funded by the European Space Agency, which was instrumental to define, validate, and demonstrate the adaptations of third-generation (3G) mobile technologies based on wideband code-division multiple access (W-CDMA) for supporting via-satellite services. Such services are often generically referred to as S-UMTS. One of the main project targets was to develop and demonstrate, in the laboratory and over the air, a set of technical solutions for the efficient provision of point-to-point (PTP, i.e., interactive) and point-to-multipoint (PTM, i.e., multicasting/broadcasting) services to best exploit the precious satellite communications resources. With respect to previous work, which was mostly devoted to the connection-oriented mode (i.e., circuit basis), particular emphasis was dedicated to optimizing solutions for the connectionless modes (i.e., packet basis and reliable multicasting/broadcasting, both real time and nonreal time). As a matter of fact, the wide-area delivery of multimedia services to mobile users is expected to represent the most important commercial opportunity for S-UMTS systems, as witnessed by recent initiatives taking place in the United States, Korea, and Japan. After dwelling on the aims of the ATB project, this paper presents the key required adaptations and extensions, for satellite applications, to the W-CDMA scheme as standardized by the Third Generation Partnership Project for terrestrial applications. This paper then continues by describing the architecture of the real-time end-to-end testbed (taking the name ATB after the project name), which was developed with the main objective of supporting laboratory and over-the-air trials, and its main constituting elements. In a companion paper, the architecture of the overall via-satellite demonstrator, which is largely based on the ATB, is addres-sed, together with the key results of the laboratory and over-the-air trials.
机译:本文概述了由欧洲航天局资助的高级S-UMTS测试平台(ATB; S-UMTS =卫星通用移动电信系统)项目,该项目有助于定义,验证和演示第三代卫星的适应性。基于宽带码分多址(W-CDMA)的新一代(3G)移动技术,用于支持卫星通孔服务。此类服务通常通常称为S-UMTS。主要项目目标之一是在实验室和空中开发和演示一套技术解决方案,以有效地提供点对点(PTP,即交互式)和点对多点(PTM) (即多播/广播)服务,以最好地利用宝贵的卫星通信资源。关于以前主要致力于面向连接模式(即电路基础)的工作,特别强调了针对无连接模式(即数据包基础和实时和非实时的可靠多播/广播)的优化解决方案。时间)。实际上,正如在美国,韩国和日本正在采取的新举措所证明的那样,向移动用户的多媒体服务的广域交付有望代表S-UMTS系统最重要的商业机会。在阐述了ATB项目的目标之后,本文介绍了第三代合作伙伴计划针对地面应用而对卫星应用到W-CDMA方案所要求的关键修改和扩展,以用于卫星应用。然后,本文将继续描述实时端到端测试平台(在项目名称后命名为ATB)的体系结构,该体系结构的主要目的是支持实验室和无线试验及其支持。主要构成要素。在随附的论文中,添加了主要基于ATB的整个卫星通孔演示器的架构,以及实验室和无线试验的主要结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号