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The complete guide to adjusting for measurement error —expanded and updated.
All measurements contain errors. And with global positioning systems, total station instruments, digital metric cameras, and satellite imaging systems now generating vast quantities of data, adjustment for errors is crucial to accurate interpretation. Adjustment Computations provides a complete, up-to-date treatment of every aspect of least squares adjustment, the most rigorous procedure available for computing adjustments to measured data.
This comprehensive work starts with basic principles and proceeds to the development of proper mathematical and stochastic models. Advanced topics include use of constraint equations and blunder detection. Each chapter is supported by clear, practical examples, numerous illustrations, and helpful end-of-chapter problems. The accompanying disk contains three software packages: statistical analysis, the performance of least squares adjustments, and basic matrix operations.
New material in this expanded edition includes:
- Error propagation in angle and distance measurements, traverse computations, and elevation determination
- Confidence intervals and statistical testing
- Adjustment of GPS networks
- Blunder detection in horizontal survey networks.
An excellent reference and self-study source for working surveyors, photogrammetrists, and GIS managers, this book is an indispensable resource for students preparing for the LSIT, LS, and PE exams and the ideal text for courses in surveying, civil engineering, forestry, cartography, and geology.
- Sales Rank: #2566251 in Books
- Published on: 1997-02-05
- Original language: English
- Number of items: 1
- Dimensions: 9.57" h x 1.43" w x 6.40" l, .0 pounds
- Binding: Hardcover
- 584 pages
From the Publisher
The only book devoted solely to least square adjustments. Early chapters define terms and introduce the fundamentals of errors and methods for analyzing them. The next chapters deal with error propagation in diverse types of basic surveying instruments, followed by those which describe observation weighting and introduce the least squares method for adjusting observations. Applications of least squares in adjusting basic types of surveys are presented in separate chapters. The more advanced topics of blunder detection, the general least squares approach and computer optimization are covered in the last chapters. Example problems, ranging from the analysis of a single observation to adjustment of complex data networks, illustrate statistical analyses and least squares adjustment of typical surveying measurements. The accompanying disk contains programs for statistical evaluations, the performance of least square adjustments and basic matrix operations.
From the Back Cover
The complete guide to adjusting for measurement error —expanded and updated.
All measurements contain errors. And with global positioning systems, total station instruments, digital metric cameras, and satellite imaging systems now generating vast quantities of data, adjustment for errors is crucial to accurate interpretation. Adjustment Computations provides a complete, up-to-date treatment of every aspect of least squares adjustment, the most rigorous procedure available for computing adjustments to measured data.
This comprehensive work starts with basic principles and proceeds to the development of proper mathematical and stochastic models. Advanced topics include use of constraint equations and blunder detection. Each chapter is supported by clear, practical examples, numerous illustrations, and helpful end-of-chapter problems. The accompanying disk contains three software packages: statistical analysis, the performance of least squares adjustments, and basic matrix operations.
New material in this expanded edition includes:
- Error propagation in angle and distance measurements, traverse computations, and elevation determination
- Confidence intervals and statistical testing
- Adjustment of GPS networks
- Blunder detection in horizontal survey networks.
An excellent reference and self-study source for working surveyors, photogrammetrists, and GIS managers, this book is an indispensable resource for students preparing for the LSIT, LS, and PE exams and the ideal text for courses in surveying, civil engineering, forestry, cartography, and geology.
About the Author
PAUL R. WOLF, PhD, Emeritus Professor, Department of Civil and Environmental Engineering, University of Wisconsin, is the author of Elements of Photogrammetry and the bestselling Elementary Surveying, now in its ninth edition.
CHARLES D. GHILANI, PhD, is Associate Professor in the College of Engineering and Chair of the Surveying Program at Pennsylvania State University.
Most helpful customer reviews
3 of 4 people found the following review helpful.
Wonderfull reference
By A Customer
It covers the title subjects very well, and also covers related topics (such as blunder detection in horizontal networks) very well.
5 of 5 people found the following review helpful.
The included software package
By Uwe Raback, development worker
This is an excellent and relevant book. It is well structured, and the examples are very much practice oriented. However, when I tried to install the included software under Windows 98 and Windows 2000 Prof I failed. Only under Windows 95 it runs!
Did I something wrong or it is just like that!
I would appreciate any helpful comment!
3 of 3 people found the following review helpful.
Excellent Resource
By Todd in DC
Starts off with some basic principles before going in to more developed mathematical and stochastic models and even includes topics include in the use of constraint equations and blunder detection. Explanations are supported by clear & practical problems. Excellent book for surveyors and photogrammetrist.
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