(请使用IE浏览器访问本系统)

  学科分类

  基础科学

  工程技术

  生命科学

  人文社会科学

  其他

篇目详细内容

【篇名】 Multi-antenna synchronized global navigation satellite system receiver and its advantages in high-precision positioning applications
【刊名】 Frontiers of Earth Science
【刊名缩写】 Front. Earth Sci.
【ISSN】 2095-0195
【EISSN】 2095-0209
【DOI】 10.1007/s11707-016-0559-2
【出版社】
【出版年】 2016
【卷期】 10 卷4期
【页码】 772-783 页,共 12 页
【作者】 Danan DONG; Wen CHEN; Miaomiao CAI; Feng ZHOU; Minghua WANG; Chao YU; Zhengqi ZHENG; Yuanfei WANG;
【关键词】 multi-antenna synchronized global navigation satellite system receiver|high-precision positioning|attitude determination|multipath effect mitigation|phase center variation correction|ground-based carrier phase wind-up calibration

【摘要】

The multi-antenna synchronized global navigation satellite system receiver is a high precision, low cost, and widely used emerging receiver. Using this type of receiver, the satellite and receiver clock errors can be eliminated simultaneously by forming between antenna single-differences, which is equivalent to the conventional double-difference model. However, current multi-antenna synchronized global navigation satellite system receiver products have not fully realized their potential to achieve better accuracy, efficiency, and broader applications. This paper introduces the conceptual design and derivable products of multi-antenna synchronized global navigation satellite system receivers involving the aspects of attitude determination, multipath effect mitigation, phase center variation correction, and ground-based carrier phase wind-up calibration. Through case studies, the advantages of multi-antenna synchronized global navigation satellite system receivers in high-precision positioning applications are demonstrated.

版权所有 © CALIS管理中心 2008