METHOD OF GEODETIC MEASUREMENTS AND SYSTEM FOR HIGH-RISE CONSTRUCTIONS Russian patent published in 2010 - IPC G01C15/00 

Abstract RU 2381448 C1

FIELD: measuring technology.

SUBSTANCE: invention refers to geodetic measurement technology for a high-rise building to be erected, and also to a coordinate transformation system for connection and adjustment of at least one geodetic metre. At least three reference points are specified by receivers of the satellite global positioning system on the current uppermost level of a fabric structure. A position of the framed electron-optical geodetic tool is specified with regard three reference points. An inclination of the actual line originating from the imaginary axis from inclination fabric loads are recorded by a gravimetry gauge. The static coordinate system connected with the imaginary axis is transformed to the coordinate system connected to the actual line and dynamically depending on the inclination by reduction of at least three reference points, relative position of the geodetic metre, and the inclination of the actual line.

EFFECT: development of precise and reliable geodetic measurement technology for the variable-height fabric to be erected, and especially for the high-rise buildings exposed to inclination loads and with laboured use of reference points on the ground surface.

9 cl, 2 dwg

Similar patents RU2381448C1

Title Year Author Number
ROTARY CUTTING TOOL 2010
  • Khecht,Dzhil
RU2514739C2
CLAMP FOR SECURING ARTICLES 2001
  • Sholokhov A.V.
  • Dynin A.M.
RU2208719C2
OPTICAL SYSTEM OF ON-BOARD PROJECTION INDICATOR 2023
  • Savitskij Aleksandr Mikhajlovich
  • Polishchuk Grigorij Sergeevich
  • Voronova Marina Valentinovna
  • Sokolskij Mikhail Naumovich
  • Stroganov Anatolij Aleksandrovich
  • Golovin Arsenij Dmitrievich
RU2814202C1
OPTICAL SYSTEM FOR ONBOARD PROJECTOR INDICATOR 2015
  • Krasnova Ljudmila Olegovna
  • Savitskij Aleksandr Mikhajlovich
  • Sokolskij Mikhail Naumovich
  • Stroganov Anatolij Aleksandrovich
  • Shukalov Anatolij Vladimirovich
  • Efros Aleksandr Isaakovich
RU2582210C1
ONE-DIMENSIONAL WIDE-BAND-PHASE UNIQUE-BASED ON THE BASIS OF ARTIFICIAL NEURAL NETWORK 2017
  • Yurev Igor Anatolevich
  • Fesenko Maksim Vladimirovich
  • Kolbasko Ivan Vasilevich
RU2679005C2
METHOD OF DETERMINATION OF INSTRUMENT ERROR OF INERTIAL NAVIGATION SYSTEM METERS AT INITIAL ALIGNMENT STAGE 2005
  • Zakharin Aleksandr Viktorovich
  • Shepet' Igor' Petrovich
  • Khabarov Aleksej Nikolaevich
  • Demchuk Anzhela Anatol'Evna
  • Onufrienko Valerij Vasil'Evich
  • Napol'Skij Viktor Petrovich
  • Kuchevskij Semen Viktorovich
RU2300081C1
CUTTING PLATE AND CUTTER USING IT 2022
  • Moskvitin Aleksandr Aleksandrovich
  • Moskvitin Sergej Aleksandrovich
  • Moskvitin Aleksandr Aleksandrovich
  • Moskvitin Andrej Aleksandrovich
  • Demikhovskaya Marina Igorevna
  • Lagutin Aleksandr Grigorevich
RU2801064C1
HIGH-CAPACITY TIRE 2011
  • Khamada Takeshi
RU2551699C2
AUTOMATED COMPLEX FOR STRUCTURING COMPUTER CODES, ADEQUATE TO UNDEFINED OBJECTS 2003
  • Artjukhov Viktor Valer'Evich
RU2295763C2
METHOD FOR CORRECTING THE ANGLES OF SIGHT TO A POINT 2020
  • Rysenkov Konstantin Nikolaevich
  • Vojchenko Oleg Stepanovich
  • Zobov Igor Sergeevich
  • Derevnin Sergej Vladimirovich
  • Ovchinnikova Kseniya Vadimovna
RU2758860C1

RU 2 381 448 C1

Authors

Van Kranen-Bruk Jul

Dates

2010-02-10Published

2007-01-09Filed