Фялковский А. Л. Полевая экспериментальная установка для исследования
реальной точности получения координат с использованием глобальных
навигационных спутниковых систем / Сборник докладов VI международной
научно-практической конференции "Научно-техническое творчество
молодёжи - путь к обществу, основанному на знаниях". М., 2014. С. 120 -
122.
59. Фялковский А. Л. Исследование рабочего места антенны постоянно
действующей базовой станции //
Изв. вузов
"Геодезия и аэрофотосъёмка".
2015. № 3. С. 21-26.
60. Фялковский А. Л. Деформационный мониторинг высотных сооружений с
использованием глобальных навигационных спутниковых систем //
Промышленное и гражданское строительство. 2015. № 5. С. 54-59.
61. Хлыстунов М. С., Прокопьев В. И., Могилюк Ж. Г. Высокоразрешающие
исследования закономерностей формирования порывов ветра в Москве //
Промышленное и гражданское строительство. 2014. № 11. С. 44-47.
62. Чен К., Джиблин П., Ирвинг А. MATLAB в математических исследованиях.
Пер. с англ. М.: Мир, 2001. 346 с.
63. Шануров Г. А., Мельников С. Р. Геотроника. Наземные и спутниковые
радиоэлектронные средства и методы выполнения геодезических работ. М.:
УПП "Репрография" МИИГАиК, 2001. 136 с.
142
64. Шестаков Н. В., Герасименко М. Д., Касахара М. Проектирование наиболее
нормативных измерений в геодинамических GPS/ГЛОНАСС-сетях //
Изв.
вузов
"Геодезия и аэрофотосъёмка". 2008. № 1. С. 18-27.
65. Шестаков Н. В., Герасименко М. Д. К Вопросу об оптимальном
проектировании деформационных геодезических GPS-сетей //
Изв. вузов
"Геодезия и аэрофотосъёмка". 2009. № 5. С. 11-17.
66. Шестаков Н. В., Герасимов Г. Н., Герасименко М. Д. Учёт сезонных
вариаций
координат
пунктов
GPS/ГЛОНАСС-наблюдений
при
исследовании современных движений земной коры // Геодезия и
картография. 2009. №9. С. 46-51.
67. Шешеня Н. Л., Козловский С. В. Основные высокоущербные природные и
техноприродные процессы на территории Московской области //
Промышленное и гражданское строительство. 2010. № 11. С. 13-15.
68. Шухов В. Г. Строительная механика. Избранные труды. Под редакцией
Ишлинского А. Ю. М.: "Наука", 1977. 193 с.
69. Ященко В. Р., Ямбаев Х. К. Геодезический мониторинг движений земной
коры. М.: изд- во МИИГАиК, 2007. 208 с.
70.
Amiri-Simkooei A. R., Tiberius C. C. J. M. Assessing receiver noise using GPS
short baseline time series // GPS Solutions. 2007. Т. 11. №. 1. P. 21-35.
DOI
10.1007/s10291-006-0026-8
71.
Baselga S. Submillimetric GPS distance measurement over short baselines: case
study in inner consistency // Baselga S., García-Asenjo L., Garrigues P.
Measurement Science and Technology. 2013. Т. 24. №. 7.
doi:10.1088/0957-
0233/24/7/075001
72.
Baselga S., García-Asenjo L., Garrigues P. Submillimetric GPS distance
measurement over short baselines: noise mitigation by global robust estimation //
Measurement Science and Technology. 2014. Т. 25. №. 10. P. 105004.
doi:10.1088/0957-0233/25/10/105004
143
73.
Behr J., Hudnut K., King N. Monitoring structural deformation at Pacoima dam,
California using continuous GPS. Proceeding of ion GPS. Institute of Navigation,
1998. Т. 11. P. 59-68.
74.
Beutler G. Accuracy and biases in the geodetic application of the Global
Positioning System // Beutler G
., Bauersima I., Botton S.
et al. Mitt. Satell.-
Beobachtungsstn. Zimmerwald, Nr. 22, 18 pp. 1987. Т. 22.
75. Bilich A., Larson K. M., Axelrad P. SNR-Based Multipath Corrections to GPS
Phase Measurements: Improving the Accuracy of Permanent GPS Stations /
AGU Fall Meeting Abstracts. 2002. Т. 1. P. 06.
76. Bilich A., Larson K. M., Axelrad P. Observations of signal-to-noise ratios (SNR)
at geodetic GPS site CASA: Implications for phase multipath / Proceedings of the
Centre for European Geodynamics and Seismology. 2004. Т. 23. P. 77-83.
77. Bilich A., Larson K. M. Mapping the GPS multipath environment using the
signal-to-noise ratio (SNR) // Radio Science. 2007. Т. 42. №. 6.
78. Bingley R. Monitoring the vertical land movement component of changes in
mean sea level using GPS: results from tide gauges in the UK // Bingley R.,
Dodson A., Penna N. et al. Journal of Geospatial Engineering. 2001. № 1. P. 9-
20.
79.
Bock Y., Prawirodirdjo L., Melbourne T. I. Detection of arbitrarily large dynamic
ground motions with a dense high
‐rate GPS network // Geophysical Research
Letters. 2004. Т. 31. №. 6.
80.
Breuer P. Application of GPS technology to measurements of displacements of
high-rise structures due to weak winds // Breuer P., Chmielewski T., Gorski P. et
al. Journal of Wind Engineering and Industrial Aerodynamics. 2002. Т. 90. №. 3.
P. 223-230.
81. Breuer P. The Stuttgart TV Tower - displacement of the top caused by the effects
of sun and wind // Breuer P., Chmielewski T., Gorski et al. Engineering
Structures 30 (2008). P. 2771–2781.
144
82.
Brown C. J. Monitoring of structures using the global positioning system //
Brown C. J., Karuna R., Ashkenazi V. et al. Proceedings of the ICE-Structures
and Buildings. 1999. Т. 134. №. 1. P. 97-105.
83. Brunner F. K., Hartinger H., Richter B. Continuous monitoring of landslides
using GPS: a progress report / Geophysical Aspects of Mass Movements. Vienna:
2000. P. 51-60.
84.
Byun S. H., Hajj G. A., Young L. E. Development and application of GPS signal
multipath simulator // Radio Science. 2002. Т. 37. №. 6. P. 10-1 - 10-23.
85.
Cazzaniga N. E. Monitoring oscillations of slender structures with GPS and
accelerometers / Cazzaniga N. E., Pinto L., Forlani G. et al. Proceeding of FIG
Working Week. 2005.
86. Chan W. S. Assessment of dynamic measurement accuracy of GPS in three
directions // Chan W. S., Xu Y. L., Ding X. L. et. al.. ASCE Journal of Surveying
Engineering. 2006. 132(3). P. 108–117.
87.
Сое J. A. Seasonal movement of the Slumgullion landslide determined from
Global Positioning System surveys and field instrumentation, July 1998 - March
2002 // Сое J. A., Ellis W. L., Godt J. W. et al. Engineering Geology 68 (2003).
P. 67 - 101.
88. Comp C. J., Axelrad P. Adaptive SNR-based carrier phase multipath mitigation
technique //Aerospace and Electronic Systems. 1998. Т. 34. №. 1. P. 264-276.
89.
Dawidowicz K., Krzan G., Świątek K. Urban area GPS positioning accuracy
using ASG-EUPOS POZGEO service as a function of session duration //
Artificial Satellites. 2014. V. 49. №. 1. P. 33-42.
90. Dierendonck A. J., Fenton P., Ford T. Theory and performance of narrow
correlator spacing in a GPS receiver // Navigation. 1992. V. 39, №. 3. P. 265-283.
91.
Eckl M. C. Accuracy of GPS-derived relative positions as a function of
interstation distance and observing-session duration // Eckl M. C., Snay R. A.,
Soler T. et al. Journal of Geodesy. 2001. V. 75. №. 12. P. 633-640.
145
92.
Elosegui P. Detection of transient motions with the Global Positioning System //
Elosegui P., Davis J. L., Johansson J. M. et al. Journal of Geophysical Research:
Solid Earth (1978–2012). 1996. Т. 101. №. B5. P. 11249-11261.
93.
Elosegui P. Accuracy of high
‐rate GPS for seismology // Elosegui P., Davis J. L.,
Oberlander D. et al. Geophysical research letters. 2006. Т. 33. №. 11.
doi:10.1029/2006GL026065
94.
Erdogan H. Monitoring the dynamic behaviors of the Bosporus Bridge by GPS
during Eurasia Marathon // Erdogan H., Akpmar B. Gulal E. et al. Nonlinear
Processes in Geophysics. 2007. Т. 14. №. 4. P. 513-523.
95.
Esquivel R., Hernández A., Zermeño M. E. GPS for subsidence detection, the
case study of Aguascalientes. Geodetic Deformation Monitoring: From
Geophysical to Engineering Roles. Springer Berlin Heidelberg, 2006. P. 254-258.
96. Farrell J., Givargis T. Differential GPS reference station algorithm - design and
analysis // Control Systems Technology. 2000. V. 8, №. 3. P. 519-531.
97. Forward T. Steep wall monitoring using switched antenna arrays and permanent
GPS networks / Forward T., Stewart M., Penna, N. et. al. Proc. 10th FIG
International symposium on deformation measurements. 2001. P. 33-41.
98.
Fujino Y. Monitoring system of the Akashi Kaikyo Bridge and displacement
measurement using GPS / Fujino Y., Murata M., Okano S. et al. SPIE's 5th
Annual International Symposium on Nondestructive Evaluation and Health
Monitoring of Aging Infrastructure. International Society for Optics and
Photonics, 2000. P. 229-236.
99. Ge L. Adaptive filtering of continuous GPS results // Ge L., Chen H.-Y., Han S.
et al. Journal of Geodesy. 2000. V. 74, I. 7-8. P. 572-580.
100.
Genrich J. F., Bock Y. Rapid resolution of crustal motion at short ranges with
the Global Positioning System // Journal of Geophysical Research: Solid Earth.
1992. Т. 97. №. B3. P. 3261-3269.
101.
Gili J. A., Corominas J., Rius J. Using Global Positioning System techniques in
landslide monitoring // Engineering Geology. 2000. Т. 55. №. 3. P. 167-192.
146
102.
Guo J., Ge S. Research of displacement and frequency of tall building under
wind load using GPS / Proceedings of the 10th International Technical Meeting
of the Satellite Division of The Institute of Navigation. 1997. P. 1385-1388.
103.
Hayes D.
Constructing the Burj Dubai. (Перевод Ященко А. И. и Евстафьева
О. В. "Геодезическое обеспечение возведения небоскрёба Burj Dubai") //
Геопрофи. 2009. № 6. С. 8-13.
104. Herring T. A., King R. W., McClusky S. C. Introduction to GAMIT/GLOBK.
Release 10.4. Department of Earth, Atmospheric, and Planetary Sciences
Massachusetts Institute of Technology. 2010. 48 p.
105.
Hofmann-Wellenhof B., Lichtenegger H., Wasle E. GNSS – Global Navigation
Satellite Systems: GPS, GLONASS, Galileo, and more. Wien: Springer Science
& Business Media, 2008. 518 p.
106. Hudnut K.W., Behr J.A. 1998. Continuous GPS monitoring of structural
deformation at Pacoima dam, California // Seismological Research Letters. 1998.
V. 69, № 4. P. 299 – 308.
107. Irsigler M., Eissfeller B. Comparison of multipath mitigation techniques with
consideration of future signal structures / Proceedings of the 16th International
Technical Meeting of the Satellite Division of The Institute of Navigation. 2001.
P. 2584-2592.
108.
Jiao T., Zhou Z. Summary of GPS technology in structural health monitoring //
Pacific Science Review. 2013. V. 15, № 1. P. 56-65.
109. Kaftan V. I., Ustinov A. V. Use of Global Navigation Satellite System for
monitoring deformations of water-development works // Power Technology and
Engineering. 2013. V. 47. P. 30 - 37. DOI: 10.1007/s10749-013-0392-7
110. Kaplan E. D., Hegarty C. J. Understanding GPS: Principles and applications.
2nd ed. Artech House, Inc., 2006. 724 p.
111.
Kijewski-Correa T., Kareem A., Kochly M. Experimental verification and full-
scale deployment of Global Positioning Systems to monitor the dynamic response
147
of tall buildings // Journal of Structural Engineering. 2006. Т. 132. №. 8. P. 1242-
1253.
doi: 10.1061/(ASCE)0733-9445(2006)132:8(1242)
112.
Koivula H. GPS Metrology: Bringing Traceable Scale to a Local Crustal
Deformation GPS Network / Koivula H., Hakli P., Jokela J. et al. Geodesy for
Planet Earth. Springer Berlin Heidelberg, 2012. P. 105-112.
113.
Kouba J. Measuring seismic waves induced by large earthquakes with GPS //
Studia Geophysica et Geodaetica. 2003. Т. 47. №. 4. P. 741-755.
114.
Langbein J. Noise in two
‐color electronic distance meter measurements revisited
// Journal of Geophysical Research: Solid Earth (1978–2012). 2004. Т. 109. №.
B4.
doi:10.1029/2003JB002819
115.
Larson K. M., Agnew D. C. Application of the Global Positioning System to
crustal deformation measurement: 1. Precision and accuracy // Journal of
Geophysical Research: Solid Earth (1978–2012). 1991. Т. 96. №. B10. P. 16547-
16565.
116.
Lehner W. M. Evaluation of environmental stresses on GNSS-monuments.
Vienna. 2011. 76 p.
117. Li X. J. Full-scale structural monitoring using an integrated GPS and
accelerometer system // Li X. J., Ge L. L., Ambikairajah E. et. al. GPS Solutions.
2006. V. 10, № 4. P. 233–247.
118.
Lovse J. W. Dynamic deformation monitoring of tall structure using GPS
technology // Lovse J. W., Teskey W. F., Lachapelle G. et al. Journal of
surveying engineering. 1995. Т. 121. №. 1. P. 35-40.
119.
Malet J. P., Maquaire O., Calais E. The use of Global Positioning System
techniques for the continuous monitoring of landslides: application to the Super-
Sauze earthflow (Alpes-de-Haute-Provence, France) // Geomorphology. 2002. Т.
43. №. 1. P. 33-54.
120. Manetti L., Frapolli M., Kneht A. Permanent, autonomous monitoring of
landslide movements with GPS / Report of the 1st European Conference on
Landslides. 2002.
148
121.
Mao A., Harrison C. G. A., Dixon T. H. Noise in GPS coordinate time series //
Journal of Geophysical Research: Solid Earth (1978–2012). 1999. Т. 104. №. B2.
P. 2797-2816.
122.
Mattia M. The shallow plumbing system of Stromboli Island as imaged from 1
Hz instantaneous GPS positions / Mattia M., Rossi M., Gudlielmino F.
Geophysical Research Letters. 2004. Т. 31. №. 24.
123. Mayer L. Monitoring of the Manhattan Bridge for vertical and torsional
performance with GPS and interferometric radar systems / Mayer L., Yanev B.,
Olson L. D. et al. Transportation research board annual meeting. 2010. Paper 10-
3183.
124. McGraw G. A., Braasch M. S. GNSS multipath mitigation using gated and high
resolution correlator concepts / Proceedings of the 1999 National Technical
Meeting of The Institute of Navigation. 1999. P. 333-342.
125.
Meng
X.
Real-time
deformation
monitoring
of
bridges
using
GPS/accelerometers. The University of Nottingham. 2002. 258 p.
126.
Meng X., Dodson A.H., Roberts G.W. Detecting bridge dynamics with GPS and
triaxial accelerometers // Engineering Structures. 2007. V. 29, I. 11, P. 3178–
3184.
127.
Meng X., Wang J., Han H. Optimal GPS/accelerometer integration algorithm for
monitoring the vertical structural dynamics // Journal of Applied Geodesy. 2014.
Т. 8. №. 4. P. 265-272.
doi: 10.1515/jag-2014-0024
128.
Munekane H. Sub-daily noise in horizontal GPS kinematic time series due to
thermal tilt of GPS monuments // Journal of Geodesy. 2013. Т. 87. №. 4. P. 393-
401.
doi 10.1007/s00190-013-0613-8
129.
Murray J., Langbein J. Slip on the San Andreas Fault at Parkfield, California,
over two earthquake cycles, and the implications for seismic hazard / Bulletin of
the Seismological Society of America. 2006. Т. 96. №. 4B. P. S283-S303.
doi:
10.1785/0120050820
130.
Murray-Moraleda J. GPS: applications in crustal deformation monitoring //
Extreme Environmental Events. Springer New York, 2011. P. 589-622.
149
131.
Nickitopoulou A., Protopsalti K., Stiros S. Monitoring dynamic and quasi-static
deformations of large flexible engineering structures with GPS: accuracy,
limitations and promises // Engineering Structures. 2006. Т. 28. №. 10. P. 1471-
1482.
doi:10.1016/j.engstruct.2006.02.001
132.
Nikolaidis R. Observation of geodetic and seismic deformation with the Global
Positioning System. 2002. 249 p.
133.
Niu X. Using Allan variance to analyze the error characteristics of GNSS
positioning // Niu X., Chen Q., Zhang Q. et al. GPS solutions. 2014. Т. 18. №.
2. P. 231-242.
134.
Ogaja C., Li X., Rizos C. Advances in structural monitoring with Global
Positioning System technology: 1997–2006 // Journal of Applied Geodesy. 2007.
Т. 1. №. 3. P. 171-179.
doi 10.1515/JAG.2007.019
135.
Ogaja C., Wang J., Rizos C. Detection of wind-induced response by wavelet
transformed GPS solutions // Journal of Surveying Engineering. 2003. Т. 129. №.
3. P. 99-104.
doi: 10.1061/(ASCE)0733-9453(2003)129:3(99)
136. Park H. S., Sohn H. G., Kim I. S., Park J. H. Application of GPS to monitoring
of wind-induced responses of high-rise buildings // The Structural Design of Tall
and Special Buildings. V. 17, I. 1, March 2008. P. 117–132.
137.
Park K. D. et al. Development of an antenna and multipath calibration system
for Global Positioning System sites // Radio Science. 2004. Т. 39. №. 5.
138.
Polikar R. The engineer’s ultimate guide to wavelet analysis. The Wavelet
Tutorial [Электронный ресурс]. URL:
http://users.rowan.edu
(дата обращения
16.07.2015).
139. Pytharouli S. I., Kontogianni V. A., Stiros S. C. Kinematics of two deep-seated
landslides in Greece / Proceedings of the ICE-Geotechnical Engineering. 2007. Т.
160. №. 3. P. 179-183.
doi: 10.1680/geng.2007.160.3.179
140.
Ray J. K., Cannon M. E., Fenton P. C. Mitigation of Static Carrier-Phase
Multipath Effects Using Multiple Closely Spaced Antennas // Navigation. 1999.
Т. 46. №. 3. P. 193-201.
150
141. Reichert A. K., Axelrad P. Carrier-phase multipath corrections for GPS-based
satellite attitude determination // Navigation. 2001. Т. 48. №. 2. P. 76-88.
142. Rizos C. Low-cost densification of permanent GPS networks for natural hazard
mitigation: first tests on GSI's GEONET network // Rizos C., Han S., Ge L. et. al.
Earth Planets Space. 2000. № 52. P. 867-871.
143. Rizos C. Continuously operating GPS-based volcano deformation monitoring in
Indonesia: challenges and preliminary results / Rizos C., Han S., Roberts C. et. al.
Springer-Verlag: 2000. P. 361-366.
144. Roberts G. W., Meng X., Dodson. A. H. Structural dynamic and deflection
monitoring using integrated GPS and triaxial accelerometers / Proceedings of the
13th International Technical Meeting of the Satellite Division of The Institute of
Navigation. 2000. P. 59-68.
145. Roberts G. W., Meng X., Dodson. A. H. The use of kinematic GPS and triaxial
accelerometers to monitor the deflections of large bridges / Proceedings of the
10th International Symposium on Deformation Measurements. 2001. P. 268-275.
146.
Seco A. Assessing building displacement with GPS // Seco A., Tirapu F.,
Ramirez F. et al. Building and environment. 2007. Т. 42. №. 1. P. 393-399.
147. Shin E. H., El-Sheimy N. Accuracy improvement of low cost INS/GPS for land
applications. University of Calgary, Department of Geomatics Engineering, 2001.
137 p.
148.
Snay R. A., Soler T. Continuously operating reference station (CORS): history,
applications, and future enhancements // Journal of Surveying Engineering. 2008.
Т. 134. №. 4. P. 95-104.
DOI: 10.1061/(ASCE)0733-9453(2008)134:4(95)
149. Snay, R. A., Soler, T., Eckl, M. GPS precision with carrier phase observations:
Does distance and/or time matter? // Profess. Surv. 2002. 22(10). P. 20–24.
150.
Soler T. CORS and OPUS for Engineers. – American Society of Civil
Engineers, Reston, Va, 2011. 187 p.
151.
Stutzman W. L., Thiele G. A. Antenna theory and design. John Wiley & Sons,
2012. 856 p.
151
152.
Squarzoni C., Delacourt C., Allemand P. Differential single-frequency GPS
monitoring of the La Valette landslide (French Alps) // Engineering Geology.
2005. Т. 79. №. 3. P. 215-229.
doi:10.1016/j.enggeo.2005.01.015
153.
Tamura Y. Measurement of wind-induced response of buildings using RTK-
GPS and integrity monitoring / Tamura Y., Yoshida A., Ishibashi R. et al. Proc.
2nd Int. Symposium on Advances in Wind & Structures. 2002. P. 599-606.
154. Teferle F. N. Using GPS to Separate Crustal Movements and Sea Level Changes
at Tide Gauges in the UK / Teferle F. N., Bingley R. M., Dodson A. H. et. al.
Vertical Reference Systems. International Association of Geodesy Symposium.
Springer-Verlag: 2002. V. 124. P. 264-269. Doi: 10.1007/978-3-662-04683-8_50.
155. Townsend B., Fenton P. A practical approach to the reduction of pseudorange
multipath errors in a L1 GPS receiver / Proceedings of the 7th International
Technical Meeting of the Satellite Division of the Institute of Navigation. 1994.
156. Tranquilla J. M., Carr J. P., Al-Rizzo H. M. Analysis of a choke-ring
groundplane for multipath control in global positioning system (GPS)
applications // Antennas and Propagation. 1994. V. 42, № 7. P. 905-911.
157.
Wang G. A Demonstration of GPS Landslide Monitoring Using Online
Positioning User Service (OPUS) / AGU Fall Meeting Abstracts. 2011. Т. 1. P.
1425.
158. Williams S. D. P. et al. Error analysis of continuous GPS position time series /
Williams S. D. P., Bock Y., Fang P. et al // Journal of Geophysical Research:
Solid Earth (1978–2012). 2004. Т. 109. №. B3. doi:10.1029/2003JB002741
159. Wong K.Y., Chan K.W.Y., Man K.L. Monitoring of wind load and response for
cable-supported bridges in Hong Kong / Paper presented and published in the
Proceedings of the Seventh International Symposium on Smart Structures and
Materials, SPIE, Newport. 2001.
160. Wong K. Y., Man K. L., and Chan W. Y. Application of global positioning
system to structural health monitoring of cable-supported bridge / Proceeding
152
Health Monitoring and Management of Civil Infrastructure Systems, SPIE,
Bellingham. 2001. P. 390–401.
161. Wubbena G. Permanent Object Monitoring with GPS with 1 Millimeter
Accuracy / Wubbena G., Bagge A., Boettcher G. et. al. Paper presented at the
International Technical Meeting, ION GPS-01. 2001. 9 pp.
162. Yi T. H., Li H. N., Gu M. Recent research and applications of GPS-based
monitoring technology for high-rise structures // Structural control and health
monitoring. V. 20, I. 5, May 2013, P.: 649–670.
163.
Yoshida A. Measurement of wind-induced response of buildings using RTK-
GPS and integrity monitoring // Yoshida A., Tamura Y., Matsui M. et al. J Struct.
Constr. Eng. 2003. Т. 571. P. 39-44.
Достарыңызбен бөлісу: |