Orthogonal decoupling correction method for theodolite orientation correction model

A technology for correcting models and theodolites, applied to theodolites, instruments, measuring devices, etc., can solve the problem that the fitting coefficient cannot reflect the real size of each item

Active Publication Date: 2014-06-04
INST OF OPTICS & ELECTRONICS - CHINESE ACAD OF SCI
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Problems solved by technology

[0015] The technical problem solved by the present invention: overcome the problem that the correlation of the existing theodolite pointing correction model causes the fitting coefficient to not reflect the real size of each item, eliminate the coupling between the model items, so that the fitting coefficient and the basis function can be truly Establish a corresponding relationship, so that the model can be more stable, so as to realize the extrapolation of the model

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  • Orthogonal decoupling correction method for theodolite orientation correction model
  • Orthogonal decoupling correction method for theodolite orientation correction model
  • Orthogonal decoupling correction method for theodolite orientation correction model

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[0027] The following are specific implementation methods of the present invention. However, the following embodiments are only for explaining the present invention, and the protection scope of the present invention should include all the content of the claims, and those skilled in the art can realize all the content of the claims of the present invention through the following embodiments.

[0028] The first step of the present invention is to select an appropriate pointing correction model according to the structure and environment of the equipment to be corrected. In order to simplify the process, the basic parameter model is still taken as an example for illustration, but any other model can be implemented by the method of the present invention. In fact, since the decoupling can be performed by the present invention, the more complete the number of terms pointing to the correction model, the better. The increase in the number of terms will not have any effect on the stability ...

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Abstract

The invention relates to an orthogonal decoupling correction method for a theodolite orientation correction model. Aiming at the problems that a solved coefficient cannot represent the real size of each item and the model is low in stability because strong correlation exists in each primary function in the theodolite orientation correction model, the model is decoupled by using an orthogonal method, and the correlation between the primary functions is eliminated, so that a novel orthogonal orientation correction model is established, and a novel model coefficient can be deduced by using the original model coefficient. The method has the beneficial effects that coupling among items of the orientation correction model of any item can be removed, and the model is relatively stable under the condition that the primary functions are not reduced. Moreover, the true level of each error item can be reflected, so that the extrapolation of the model is possible.

Description

Technical field [0001] The invention belongs to the field of photoelectric measurement, and specifically relates to orthogonal decoupling of the theodolite pointing correction model and a correction method thereof. Background technique [0002] Due to the environmental parameters and the equipment itself, the pointing accuracy of theodolite often contains large systematic errors. System errors are caused by many factors, including atmospheric refraction, telescope manufacturing and assembly errors, gravity deformation of the telescope, and deformation errors caused by temperature changes. The structural factors of the telescope include shafting errors, lens barrel deflection, fork arms or Deformation of the yoke, etc. In order to achieve high-precision measurement in the entire airspace, the method of establishing a pointing correction model is often used to calibrate the system error, and then correct the pointing error of the entire airspace. Specifically, it is generally bas...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01C25/00G01C1/02
CPCG01C1/02G01C25/00
Inventor 罗一涵张涯辉陈科钟代均
Owner INST OF OPTICS & ELECTRONICS - CHINESE ACAD OF SCI
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