Submit an Article
Become a reviewer
Vol 156
Pages:
238-241
Download volume:
RUS
Research article
Surveying and geodesy

Determination of plumb line deviation components using space navigation system consumer equipment

Authors:
A. I. Yakovlev
About authors
  • St. Petersburg Branch of the Military Engineering University
Date submitted:
2003-06-27
Date accepted:
2003-07-14
Date published:
2004-09-09

Abstract

A method of determining the components of the plumb line deviation (ξ, η) by comparing the results of geometric levelling with exceedances determined using the equipment of space navigation systems consumers is proposed. The possibility of defining components of plumb line deviation is theoretically substantiated. On a specific practical example, the values of ξ, η are determined with an accuracy of about 0.5-1.0".

Go to volume 156

References

  1. Максимов В.Г. Определение уклонений отвесных линий с использованием GPS/ГЛОНАСС / В.Г.Максимов, Д.И.Плешаков, Ю.А.Бодлов // Геодезия и картография. 2002. № 5. С.6-10.
  2. Машимов М.М. Планетарные теории геодезии. М.: Недра, 1982. 261 с.
  3. Яковлев А.И. О возможности определения уклонений отвесных линий с использованием аппаратуры потребителей космических навигационных систем // Научн.-техн. сборник ВИУ (филиал) / Военно-инжен. ун-т. СПб, 2000. С. 20-22.

Similar articles

Development of St. Petersburg subway tunnel lining stress-strain state during operation
2004 M. O. Lebedev
Green spaces in the St. Petersburg cadaster system
2004 I. I. Minkevich, V. F. Kovyazin, V. M. Shabnov
Influence of depth on the stability of brine chambers, laid on the dome-type fields
2004 S. A. Tolstunov, S. P. Mozer
Determination of latitude and azimuth without the aid of a chronometer by a star with unknown coordinates
2004 I. S. Pandul
Parametric support for calculations of long-term stability of structures during construction and reconstruction of buildings in the territory of development of weak water-saturated sandy-clay sediments
2004 R. E. Dashko, A. V. Shidlovskaya
Mathematical model of rock massif deformation and fracture
2004 A. G. Olovyannyi