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Ghilani / Bolkas / Olsen

Adjustment Computations

Spatial Data Analysis

Medium: Buch
ISBN: 978-1-394-34131-3
Verlag: Wiley
Erscheinungstermin: 08.07.2026
vorbestellbar, Erscheinungstermin ca. Juli 2026

Provides Comprehensive, Up-to-Date Guidance on Spatial Data Accuracy

As modern surveying, mapping, and geospatial technologies continue to evolve, the need for precise data adjustment and error analysis has never been greater. Adjustment Computations: Spatial Data Analysis, Seventh Edition, remains the definitive guide to understanding, applying, and mastering least squares and related techniques that ensure the accuracy of spatial datasets.

This updated edition integrates advances in spatial technologies, with new chapters covering laser scanning, point cloud processing, and parametric model estimation. Updated discussions of ASPRS standards, NSRS updates, and current computational tools reflect the latest professional practices and technologies. The text maintains its clear, pedagogical structure with concise chapters, worked examples, and practical software applications. Providing the analytical tools to deliver high-quality spatial data for diverse applications, this book: - Includes coverage of laser scanning and its errors, point cloud shape fitting, GNSS networks, coordinate transformations, and parametric modeling
- Incorporates updated standards from ASPRS and the National Spatial Reference System (NSRS)
- Provides access to companion software, MathCAD worksheets, and video lessons for hands-on problem solving
- Balances rigorous mathematics with accessible explanations and real-world surveying applications
- Features real-world case studies of infrastructure documentation, construction, and environmental monitoring

Ideal for undergraduate and graduate courses in surveying, geomatics, and geospatial analysis, Adjustment Computations: Spatial Data Analysis, Seventh Edition, supports curricula in civil engineering, geosciences, and GIS programs. It is also a useful reference for professional surveyors and geospatial analysts seeking to enhance data accuracy and reliability.


Produkteigenschaften


  • Artikelnummer: 9781394341313
  • Medium: Buch
  • ISBN: 978-1-394-34131-3
  • Verlag: Wiley
  • Erscheinungstermin: 08.07.2026
  • Sprache(n): Englisch
  • Auflage: 7th Auflage
  • Produktform: Gebunden
  • Gewicht: 1021 g
  • Seiten: 800
  • Format (B x H x T): 158 x 231 x 36 mm
  • Ausgabetyp: Kein, Unbekannt
  • Vorauflage: 978-1-119-38598-1
Autoren/Hrsg.

Autoren

Preface xvii

Acknowledgments xxiii

About the Companion Website xxv

1 Introduction 1

1.1 Introduction 1

1.2 Direct and Indirect Measurements 2

1.3 Measurement Error Sources 2

1.4 Definitions 3

1.5 Precision versus Accuracy 4

1.6 Redundant Observations in Surveying and Their Adjustment 7

1.7 Advantages of Least Squares Adjustment 8

1.8 Overview of the Book 10

Problems 10

2 Observations and Their Analysis 13

2.1 Introduction 13

2.2 Sample versus Population 13

2.3 Range and Median 14

2.4 Graphical Representation of Data 15

2.5 Numerical Methods of Describing Data 18

2.6 Measures of Central Tendency 19

2.7 Additional Definitions 19

2.8 Alternative Formulas for Determining Variance 22

2.9 Numerical Examples 25

2.10 Root Mean Square Error and Mapping Standards 29

2.11 Derivation of the Sample Variance (Bessel’s Correction) 32

2.12 Software 33

Problems 34

Practical Exercises 37

3 Random Error Theory 39

3.1 Introduction 39

3.2 Theory of Probability 39

3.3 Properties of the Normal Distribution Curve 42

3.4 Standard Normal Distribution Function 44

3.5 Probability of the Standard Error 47

3.6 Uses for Percent Errors 49

3.7 Practical Examples 50

Problems 53

Programming Problems 55

4 Confidence Intervals 57

4.1 Introduction 57

4.2 Distributions Used in Sampling Theory 59

4.3 Confidence Interval for the Mean: t Statistic 64

4.4 Testing the Validity of the Confidence Interval 67

4.5 Selecting a Sample Size 67

4.6 Confidence Interval for a Population Variance 69

4.7 Confidence Interval for the Ratio of Two Population Variances 70

4.8 Software 73

Problems 75

5 Statistical Testing 81

5.1 Hypothesis Testing 81

5.2 Systematic Development of a Test 84

5.3 Test of Hypothesis for the Population Mean 86

5.4 Test of Hypothesis for the Population Variance 88

5.5 Test of Hypothesis for the Ratio of Two Population Variances 91

5.6 Using Software 94

Problems 95

6 Propagation of Random Errors in Indirectly Measured Quantities 99

6.1 Basic Error Propagation Equation 99

6.2 Frequently Encountered Specific Functions 104

6.3 Numerical Examples 105

6.4 Software 109

6.5 Conclusions 111

Problems 111

Practical Exercises 114

7 Error Propagation in Angle and Distance Observations 115

7.1 Introduction 115

7.2 Error Sources in Horizontal Angles 116

7.3 Reading Errors 116

7.4 Pointing Errors 118

7.5 Estimated Pointing and Reading Errors with Total Stations 119

7.6 Target Centering Errors 120

7.7 Instrument Centering Errors 122

7.8 Effects of Leveling Errors in Angle Observations 126

7.9 Numerical Example of Combined Error Propagation in a Single Horizontal Angle 128

7.10 Using Estimated Errors to Check Angular Misclosure in a Traverse 130

7.11 Errors in Astronomical Observations for Azimuth 132

7.12 Errors in Electronic Distance Observations 137

7.13 Centering Errors When Using Range Poles 138

7.14 Software 139

Problems 140

Programming Problems 143

8 Error Propagation in Traverse Surveys 145

8.1 Introduction 145

8.2 Derivation of Estimated Error in Latitude and Departure 146

8.3 Derivation of Estimated Standard Errors in Course Azimuths 148

8.4 Computing and Analyzing Polygon Traverse Misclosure Errors 148

8.5 Computing and Analyzing Link Traverse Misclosure Errors 154

8.6 Software 158

8.7 Conclusions 159

Problems 159

Programming Problems 163

9 Error Propagation in Elevation Determination 165

9.1 Introduction 165

9.2 Systematic Errors in Differential Leveling 165

9.3 Random Errors in Differential Leveling 169

9.4 Error Propagation in Trigonometric Leveling 173

Problems 177

Programming Problems 179

10 Weights of Observations 181

10.1 Introduction 181

10.2 Weighted Mean 183

10.3 Relationship Between Weights and Standard Errors 185

10.4 Statistics of Weighted Observations 186

10.5 Weights in Angle Observations 187

10.6 Weights in Differential Leveling 188

10.7 Practical Examples 189

Problems 192

11 Principles of Least Squares 195

11.1 Introduction 195

11.2 Fundamental Principle of Least Squares 196

11.3 The Fundamental Principle of Weighted Least Squares 198

11.4 The Stochastic Model 199

11.5 Functional Model 199

11.6 Observation Equations 201

11.7 Systematic Formulation of the Normal Equations 203

11.8 Tabular Formation of the Normal Equations 205

11.9 Using Matrices to Form the Normal Equations 206

11.10 Least-Squares Solution of Nonlinear Systems 209

11.11 Least-Squares Fit of Points to a Line or Curve 213

11.12 Calibration of an EDM Instrument 216

11.13 Least-Squares Adjustment Using Conditional Equations 217

11.14 The Previous Example Using Observation Equations 219

11.15 Software 221

Problems 221

12 Adjustment of Level Nets 227

12.1 Introduction 227

12.2 Observation Equation 227

12.3 Unweighted Example 228

12.4 Weighted Example 230

12.5 Reference Standard Deviation 233

12.6 Another Weighted Adjustment 234

12.7 Software 237

Problems 240

Programming Problems 244

13 Precisions of Indirectly Determined Quantities 245

13.1 Introduction 245

13.2 Development of the Covariance Matrix 245

13.3 Numerical Examples 249

13.4 Standard Deviations of Computed Quantities 251

Problems 254

Programming Problems 256

14 Adjust