《国防电子信息技术丛书:辅助GPS原理与应用》依托于作者在导航定位领域几十年的研究与工程实践经验,深入浅出地讲解了辅助定位技术与GPS接收机设计方面的内容,并对未来AGNSS技术的发展方向做出了前瞻。全书在回顾标准GPS技术结构的基础上,具体分析了GPS系统引入辅助技术的原因,而后结合理论和仿真案例对无精确定时条件下的AGPS技术辅助定位原理进行了详细论述,并讨论了AGPS技术辅助信息的特殊形式、在不同模块中的工作原理及AGPS的工业标准和政府规范。另外,《国防电子信息技术丛书:辅助GPS原理与应用》也对高灵敏度GPS接收机的整体设计理念给出了详细的指导。《国防电子信息技术丛书:辅助GPS原理与应用》讲解细致、内容丰富,具有重要的工程实践参考价值,适合作为导航定位技术相关专业的本科生和研究生的参考书籍,也可供相关领域的工程技术人员参考学习。第1章绪论1.1AGPS概述1.2本书内容结构1.3民用卫星导航信号1.4理论与实践方法1.5术语:辅助全球定位系统(AGPS),辅助全球导航卫星系统(A-GNSS)1.6本书读者定位1.7本书的新内容参考文献第2章标准GPS回顾2.1概述:GPS是如何设计的2.2GPS信号功率2.3卫星轨道2.4卫星时钟2.5星历2.6GPS信号2.7GPS接收机的基本功能参考文献第3章辅助,AGPS中的“A”3.1捕获和辅助概述3.2频率/码延迟搜索空间3.3标准GPS系统的频率/码延迟搜索3.4跟踪、重新捕获和辅助3.5移动台辅助和基于移动台的GPS3.6AGPS频率辅助3.7AGPS码延迟的时间辅助3.8典型的辅助方案,辅助冷启动参考文献第4章粗时段导航——瞬时GPS4.1概述4.2导航,代数描述4.3粗时导航方程4.4毫秒整周期和常见的偏差4.5更多导航细节参考文献第5章粗时间精度衰减因子5.1概述:水平精度衰减因子、精确度、3GPP标准5.2额外状态定理5.3粗时间HDOP例子参考文献第6章高灵敏度:室内GPS6.1概述6.2标准GPS接收机架构6.3前端分析6.4相关和相干累积6.5高灵敏度接收机结构6.6更长的相干累积时间6.7I、Q平方和非相干累积6.8高灵敏度信噪比工作表6.9其他影响灵敏度的因素6.10高灵敏度小结参考文献第7章辅助数据的生成7.1概述7.2参考站7.3全球性参考站网络7.4辅助数据中的初始位置7.5手持终端生成的端到端辅助数据参考文献第8章扩展星历和长期轨道8.1概述:没有辅助时的辅助8.2扩展星历的产生8.3运用扩展星历代替完整AGPS的增强自主系统8.4完好性监测——处理轨道和时钟变化参考文献第9章工业化标准和政府规定9.1概述9.23GPP定位标准9.33GPP29.4OMASUPL9.5AGPS手持终端的最低运行性能要求9.6测量单元和定位单元9.7政府授权参考文献第10章AGNSS的前景10.1概述10.2原始GPS中的意外收获与智能化设计10.3未来AGNSS系统的TTFF、灵敏度和精度参考文献附录A导航方程的推导附录BHDOP与多状态定理的替代证明附录C分贝、莱斯分布和瑞利分布附录D星历附录E转换因子、经验法和常数术语、定义和常用符号
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Vendeur : liu xing, Nanjing, JS, Chine
paperback. Etat : New. Ship out in 2 business day, And Fast shipping, Free Tracking number will be provided after the shipment.Paperback. Pages: 300 Language: Chinese in Publisher: Publishing House of Electronics Industry. Defense Electronics and Information Technology Series: Assisted GPS Principles and Applications relying on the author in the field of navigation and positioning decades of research and engineering practical experience. in layman's language to explain the auxiliary positioning GPS receiver design to make a forward-looking. and the future development direction of A GNSS technology. The book REVIEW standard GPS technology structure based on a concrete analysis of the reasons for the GPS system. the introduction of assistive technology. then combine theory and simulation scenarios are discussed in detail under no precise timing conditions A GPS technology assisted positioning principle. and discussed the AGPS technology special form of auxiliary information. and works in different modules and A GPS industry standards and government regulations. Defense Electronics Information Technology Series: Assisted GPS Principles and Applications of the overall design concept of the high-sensitivity GPS receiver gives detailed guidance. Contents: Chapter 1 Introduction 1.1 A GPS Overview 1.5 Terminology 1.2 book content structure of of 1.3 civilian satellite navigation signal 1.4 Theory and Practice: Assisted Global Positioning System (A GPS). Assisted Global Navigation Satellite Systems (A-GNSS) 1.6 book readers positioning 1.7 book Review 2.1 Overview Chapter 2 Reference Standard GPS: GPS How GPS signal power design 2.2 2.4 Satellite 2.3 Satellite Orbit Clock 2.5 ephemeris 2.6 GPS the signal 2.7 GPS receiver function references the first Chapter 3 auxiliary A GPS in A 3.1 Overview 3.2 frequency code capture and auxiliary delay 3.3 standard GPS system the frequency of the search space of code delay search 3.4 tracking re-captured and the auxiliary 3.5 mobile assisted and based on the mobile station GPS3.6 A GPS frequency auxiliary 3.7 A GPS time code delay auxiliary 3.8 typical auxiliary the auxiliary cold start References Chapter 4 - instantaneous GPS4.1 Overview 4.2 navigation rough period navigation algebraic description 4.3 rough when navigation equations 4.4 milliseconds whole cycle and common deviation of 4.5 more navigation detail with reference to the literature Chapter 5 rough time precision attenuation factor 5.1 Overview: The level of precision attenuation factor. accuracy. the 3GPP standard 5.2 additional state Theorem a 5.3 rough time HDOP example reference literature Chapter 6. high-sensitivity: The 6.2 standard GPS receiver architecture 6.3 front-end indoor GPS6.1 Overview Analysis 6.4 relevant and coherent cumulative 6.5 high-sensitivity receiver structure 6.6 longer coherent integration time 6.7 the I and Q square and incoherent cumulative 6.8 high sensitivity signal-to-noise ratio worksheet 6.9 The high sensitivity of other factors affect the sensitivity 6.10 Summary References Chapter 7 auxiliary data generated 7.1 Overview 7.2 Reference Station 7.3 global reference station network 7.4 auxiliary data in the initial position 7.5 handheld terminal generates end-to-end auxiliary data references first the 8 extended ephemeris and long-term orbit 8.1 Overview: no auxiliary auxiliary 8.2 extended ephemeris generation 8.3 instead of 8.4 the enhanced autonomous system of complete A GPS integrity monitoring use of extended ephemeris - handling orbit and clock change Reference 9 industrialized standards and government regulations in Chapter 9.1 Overview 9.2 3GPP targeting criteria 9.3 3GPP29.4 OMA SUPL9.5 A GPS handheld terminal minimum operational performance requirements 9.6 measuring unit and positioning unit 9.7 Government authorized References Chapter 10 A GNSS prospects 10.1 Overview 10.2 A GNSS system TTFF. sensitivity and accuracy References Appendix A navigation equation derivation the raw GPS windfall and intelligent design 10. N° de réf. du vendeur NE023336
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