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Journal articles on the topic 'Geomatics'

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1

Pierdicca, Roberto, and Marina Paolanti. "GeoAI: a review of artificial intelligence approaches for the interpretation of complex geomatics data." Geoscientific Instrumentation, Methods and Data Systems 11, no. 1 (2022): 195–218. http://dx.doi.org/10.5194/gi-11-195-2022.

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Abstract. Researchers have explored the benefits and applications of modern artificial intelligence (AI) algorithms in different scenarios. For the processing of geomatics data, AI offers overwhelming opportunities. Fundamental questions include how AI can be specifically applied to or must be specifically created for geomatics data. This change is also having a significant impact on geospatial data. The integration of AI approaches in geomatics has developed into the concept of geospatial artificial intelligence (GeoAI), which is a new paradigm for geographic knowledge discovery and beyond. H
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Ponte Lira, Cristina, and Rita González-Villanueva. "Editorial on Geomatic Applications to Coastal Research: Challenges and New Developments." ISPRS International Journal of Geo-Information 11, no. 4 (2022): 258. http://dx.doi.org/10.3390/ijgi11040258.

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This editorial introduces the Special Issue entitled “Geomatic Applications to Coastal Research: Challenges and New Developments” and succinctly evaluates future trends of the use of geomatics in the field of coastal research. This Special Issue was created to emphasize the importance of using different methodologies to study the very complex and dynamic environment of the coast. The field of geomatics offers various tools and methods that are capable of capturing and understanding coastal systems at different scales (i.e., time and space). This Special Issue therefore features nine articles i
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Trinder, John C., and Clive S. Fraser. "Geomatics." Australian Surveyor 39, no. 2 (1994): 87–91. http://dx.doi.org/10.1080/00050326.1994.10441599.

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4

Jia, Z., Y. Zhu, Y. Cao, M. Dong, L. Zhang, and X. Zhou. "GEOMATICS VOCATIONAL EDUCATION IN CHINA: CURRENT SITUATION AND RECENT DEVELOPMENTS." International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLIII-B5-2022 (June 2, 2022): 9–14. http://dx.doi.org/10.5194/isprs-archives-xliii-b5-2022-9-2022.

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Abstract. Geomatics vocational education (VE) is very important for the high-quality development of geomatics industry and high-level supply of skilled talents. Firstly, the paper briefly introduced the development history of geomatics VE in China, and summarized the current status of geomatics VE. Secondly, the paper analysed the issues and problems of geomatics VE, including insufficient input, ambiguous orientation, slowly technology updating, weak teaching staff and closed communication environment. Next, the paper reported the recent reforms of geomatics VE, including the revision of disc
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Krawczyk, Artur. "Mining Geomatics." ISPRS International Journal of Geo-Information 12, no. 7 (2023): 278. http://dx.doi.org/10.3390/ijgi12070278.

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This paper attempts to define a name for an area of science and technology that encompasses the acquisition, processing and application of spatial data in the mining industry. A comparative study of the evolution of spatial data exchange methods between Geographic Information Systems (GISs) and General Mining Planning (GMP) software is carried out to define the problem and name it. Subsequent modifications of the acronym GIS towards the specialisation of its application in mining are then reviewed. This is followed by the identification of three terminological postulates designed to formulate
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Syed Abdul Rahman, Syed Ahmad Fadhli, Khairul Nizam Abdul Maulud, Hazri Hassan, and Sharifah Nurul Ain Syed Mustorpha. "Geomatics Engineering Ecosystem, What More to Be Done." Jurnal Kejuruteraan 35, no. 4 (2023): 975–81. http://dx.doi.org/10.17576/jkukm-2023-35(4)-20.

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Shared Prosperity Vision 2030 (WKB2030) is one of the Malaysian government’s initiatives to achieve the goals of a developed country by the year 2030. It is one of the motivational pillars that ought to underpin state-level policymaking and development strategies with the participation of all relevant professional professions. The geomatics engineering profession is one of the country’s core prospects and has contributed to the geomatics field in Malaysia, also responding to the call of WKB2030. Unfortunately, the digitalization process is moving too fast and adaptation to current technologies
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7

Alshiha, Abeer. "A Review of the Integration Between Geospatial Artificial Intelligence and Remote Sensing." Iraqi Journal For Computer Science and Mathematics 5, no. 3 (2024): 252–62. http://dx.doi.org/10.52866/ijcsm.2024.05.03.013.

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: Experts have extensively explored the advantages and applications of modern artificial intelligence(AI) algorithms across various domains. Geomatics data processing is no exception, as AI offers significantopportunities in this field. However, understanding how AI can be customized or developed to meet the uniquerequirements of geomatics data is crucial. Integrating AI techniques into geomatics has given rise to GeospatialArtificial Intelligence (GeoAI), a novel approach to uncovering geographic information. Nevertheless, thereremains a shortage of comprehensive research on the specific appl
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8

Alkan, S., R. M. Alkan, and D. Z. Seker. "THE ROLE OF GEOMATICS ENGINEERING IN CLIMATE CHANGE STUDIES." International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLVIII-4/W9-2024 (March 8, 2024): 21–27. http://dx.doi.org/10.5194/isprs-archives-xlviii-4-w9-2024-21-2024.

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Abstract. Geomatics Engineers acquire, manage, analyse, model and present the geo-spatially referenced data quickly, accurately and reliably. They can classify the derived data with geographic information systems and produce many models according to needs. This study focuses on the role of the geomatics discipline in combatting climate change, the capability of measuring climate change parameters and the determination of the causes of the parameters change. Basic information about the latest developments in the Geomatics discipline for climate change studies is given. Geomatics Engineer's stud
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9

Venne, Danick. "Highlights-Geomatics 2011." GEOMATICA 65, no. 4 (2011): 400–403. http://dx.doi.org/10.5623/cig2011-062.

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10

Gomarasca, Mario A. "Basics of geomatics." Applied Geomatics 2, no. 3 (2010): 137–46. http://dx.doi.org/10.1007/s12518-010-0029-6.

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11

ENSARİ ÖZAY, Müge, Aykan BÜYÜKAYDIN, and Rüştü UÇAN. "Comparison of Occupational Safety Perception of Geomatics Vocational High School, Undergraduate Geomatics Technician and Geomatics Engineering Students." International Journal of Environment and Geoinformatics 8, no. 4 (2021): 475–81. http://dx.doi.org/10.30897/ijegeo.868994.

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12

Okonofua, E. S., O. S. Oladosu, and R. Ehigiator –Irughe. "The Need for Inclusion of Geomatics Engineering as a Programme in Nigerian Universities and Registrable by Council for the Regulation of Engineering in Nigeria (COREN)." March 2019 3, no. 1 (2019): 200–209. http://dx.doi.org/10.36263/nijest.2019.01.0119.

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This paper presents the field of Geomatics as an evolving field, its relevance to other fields of engineering in general as well as other countries who have been practicing it. The rationale for teaching Geomatics Engineering courses in Nigerian Universities as well as making it COREN registrable is borne out of good intention to put it where it rightly belongs. In this work, previous researches on the relevance of Geomatics Engineering in other engineering practices and the advantages the profession has offered other fields of Engineering due to proper placement were reviewed. Geomatics Engin
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13

Claramunt, Christophe. "Advancing Geomatics: Innovation, Inclusivity, and Global Perspectives." Geomatics 4, no. 4 (2024): 382–83. http://dx.doi.org/10.3390/geomatics4040020.

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14

Yan, Zi Ping, Hai Jun Wang, and Qing Qing He. "A Statistical Analysis of Papers and Author Group in Geomatics and Information Science of Wuhan University." Advanced Materials Research 998-999 (July 2014): 1536–40. http://dx.doi.org/10.4028/www.scientific.net/amr.998-999.1536.

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A statistical analysis is made on papers published in Geomatics and Information Science of Wuhan University from 2001 to 2010 in terms of the number of published papers, the statistics of key words frequency, the number of published papers of authors, the regional distribution of authors, the number of co-authored papers, the added number of paper authors and active author group. The research direction of geomatics and the scale and trend in which geomatics researchers have cooperated in past ten years is represented. It is reflected that the Journal has played an important role in the informa
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15

Celli, S., and D. Del Curto. "BEST BEFORE? ADVANCED GEOMATICS FOR PRESERVATION AND PRESERVATION OF ADVANCED GEOMATICS." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-2/W11 (May 4, 2019): 411–17. http://dx.doi.org/10.5194/isprs-archives-xlii-2-w11-411-2019.

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<p><strong>Abstract.</strong> This discussion paper deals with the task of preserving past geometrical surveys and keeping them in use. The continuous advancement in technology caused a quick ageing of both survey techniques and their outcomes. This may result into a predetermined expiration date after which they risk losing their quality and usefulness (hence the title «Best Before»). Facing this risk, this paper focuses on the unceasing relevance of past surveys both as a legacy in the history of technique and as a fundamental source of information on heritage buildings, an
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Wu, S., R. C. Qu, C. L. Pan, Z. Y. Bao, and X. J. Feng. "SMART POVERTY ALLEVIATION ARCHITECTURE BASED ON GEOMATICS BIG DATA." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-3/W10 (February 7, 2020): 45–48. http://dx.doi.org/10.5194/isprs-archives-xlii-3-w10-45-2020.

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Abstract. With the rapid development of geomatics industry, it has accumulated a large amount of data such as digital city and national geoinformation survey, entered the geomatics big data era. At present, there are some researches on the collection and display of poverty alleviation based on geomatics. However, there are relatively few studies on smart poverty alleviation. Many problems need to be solved. It proposes a smart poverty alleviation architecture based on large geomatics data.It realizes the collection and monitor of smart poverty alleviation in administrative regions at all Level
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17

Bédard, Yvan, Pierre Gagnon, and Paul-André Gagnon. "Modernizing surveying and mapping education: the programs in geomatics at laval university." CISM journal 42, no. 2 (1988): 105–14. http://dx.doi.org/10.1139/geomat-1988-0009.

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Several studies and symposiums have stated that the surveying and mapping profession is evolving rapidly and that post-secondary education should be modernized. Laval University has recently revised its undergraduate curriculum and the result, implemented in the autumn of 1986, is a modern innovative program that leads to a B.A.Sc. in geomatics. In addition, a one-year Certificate in Geomatics presently being prepared is introduced. Finally, the word “geomatics”, widely used in French, is explained and the B.A.Sc. curriculum is given in the annex.
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18

Teo, T. A., H. M. Wu, T. Y. Shih, and F. Tsai. "The Analysis Of Smartphone Apps In Geomatics Education." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XL-6 (April 23, 2014): 93–97. http://dx.doi.org/10.5194/isprsarchives-xl-6-93-2014.

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Geomatics is a discipline of collecting, processing and analysing geospatial data. Data collection is a core process of geomatics which usually adopt precise equipment to measure geospatial data. With the development of technology, a smartphone in this present era is not simply for communication; several low cost measurement devices such as Global Positioning System (GPS), gyro and camera are assembled in a smartphone. Although the devices assembled in a smartphone could not meet the needs of accuracy requirement for many geomatics applications, millions of mobile applications (Apps) can be do
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19

Martins, Diego De Oliveira, Gabriel Jurado Martins de Oliveira, Francisco Roza de Moraes, Irineu Da Silva, and André Luiz Cunha. "Geomatics data management system." Revista Brasileira de Geomática 8, no. 1 (2020): 056. http://dx.doi.org/10.3895/rbgeo.v8n1.10141.

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20

Vyas, A. "Geomatics Education: Need Assessment." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XL-8 (November 28, 2014): 1265–67. http://dx.doi.org/10.5194/isprsarchives-xl-8-1265-2014.

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Education system is divided in to two classes: formal and informal. Formal education establishes the basis of theory and practical learning whereas informal education is largely self-learning, learning from real world projects. Generally science and technology streams require formal method of education. The social and related aspects can be taught through the other methods. Education is a media through which the foundation of the knowledge and skill is built. <br><br> The statistics reveals the increase in the trend of the literate population. This may be accounted due to the level
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21

de Rijcke, Izaak. "Geomatics and The Law." GEOMATICA 65, no. 1 (2011): 113–14. http://dx.doi.org/10.5623/cig2011-014.

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de Rijcke, Izaak. "Geomatics and the Law." GEOMATICA 65, no. 2 (2011): 211–12. http://dx.doi.org/10.5623/cig2011-030.

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23

Cole, J. Anne. "Geomatics and the Law." GEOMATICA 65, no. 4 (2011): 404–5. http://dx.doi.org/10.5623/cig2011-063.

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Rijcke, Izaak de. "Geomatics and the Law." GEOMATICA 66, no. 1 (2012): 56–60. http://dx.doi.org/10.5623/cig2012-010.

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Rijcke, Izaak de. "Geomatics and the Law." GEOMATICA 66, no. 2 (2012): 147–48. http://dx.doi.org/10.5623/cig2012-028.

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Rijcke, Izaak de. "Geomatics and the Law." GEOMATICA 66, no. 3 (2012): 227–28. http://dx.doi.org/10.5623/cig2012-044.

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de Rijcke, Izaak. "Geomatics and the Law." GEOMATICA 66, no. 4 (2012): 333–35. http://dx.doi.org/10.5623/cig2012-058.

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28

Plunkett, Gordon, and Zul Jiwani. "Federal government geomatics databases." CISM journal 43, no. 3 (1989): 265–70. http://dx.doi.org/10.1139/geomat-1989-0027.

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Coombes, Peter. "Geomatics? Low Quality Students?" Australian Surveyor 40, no. 2 (1995): 149–52. http://dx.doi.org/10.1080/00050332.1995.10558518.

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Alexander, Gregory L., Edward L. Kinman, Louise C. Miller, and Timothy B. Patrick. "Marginalization and health geomatics." Journal of Biomedical Informatics 36, no. 4-5 (2003): 400–407. http://dx.doi.org/10.1016/j.jbi.2003.09.021.

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31

Misra, Sandhya. "Geomatics: Technology and applications." Journal of the Geological Society of India 81, no. 2 (2013): 291. http://dx.doi.org/10.1007/s12594-013-0036-4.

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32

Ajvazi, Besim, Fisnik Loshi, and Béla Márkus. "From Surveying to Geomatics." Landscape & Environment 10, no. 3-4 (2016): 153–60. http://dx.doi.org/10.21120/le/10/3-4/8.

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In the land surveying profession fast changes have been taking place in the last fifty years. Technological changes are generated by the Information and Communication Technologies; the analogue – digital trends; the automatic data acquisition methods replace manual ones; instead of two-dimensional base maps we use dynamic spatial databases more and more integrated into a global data infrastructure. However, these changes cause impacts also on scientific level. The traditional top-down approach substituted by bottom-up methodologies; in many cases the point-by-point measurement is changed by 3D
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Abhilasha, ar. "GEOMATICS ALLIED WITH BUILDINGS." International Journal of Engineering Applied Sciences and Technology 8, no. 4 (2023): 62–68. http://dx.doi.org/10.33564/ijeast.2023.v08i04.008.

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We are all aware of the various Building Life Cycle stages. Before one can even start talking about the sustainability or smartness of a building, we should understand the different stages of a building, which are as follows: 1. Raw material extraction 2. Manufacturing 3. Construction 4. In use - Operation and Maintenance 5. Demolition 6. Disposal, Re-use, Recycle Each of the mentioned stages is intricately linked to the use of natural resources for energy consumption, forming the foundation for examining sustainable buildings. This paper will mainly focus briefly on how a 'GIS' can be linked
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Ravi, Radhika, and Ayman Habib. "Least Squares Adjustment with a Rank-Deficient Weight Matrix and Its Applicability to Image/Lidar Data Processing." Photogrammetric Engineering & Remote Sensing 87, no. 10 (2021): 717–33. http://dx.doi.org/10.14358/pers.20-00081r3.

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This article proposes a solution to special least squares adjustment (LSA) models with a rank-deficient weight matrix, which are commonly encountered in geomatics. The two sources of rank deficiency in weight matrices are discussed: naturally occurring due to the inherent characteristics of LSA mathematical models and artificially induced to eliminate nuisance parameters from LSA estimation. The physical interpretation of the sources of rank deficiency is demonstrated using a case study to solve the problem of 3D line fitting, which is often encountered in geomatics but has not been addressed
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Groot, Richard. "Education and training in geomatics in canada." CISM journal 45, no. 3 (1991): 365–82. http://dx.doi.org/10.1139/geomat-1991-0027.

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Education and training in Geomatics must be demand-driven activities. This paper examines the impact of computer and communications technology on government institutions and private-sector organizations involved in Geomatics as the background for changing and new jobs requiring specific education and training. This new demand needs to be matched to an effective response from education institutions. To assist in making this match the paper proposes a model describing the functions and jobs with their linkages in these organizations, and it proposes an education/training model for Geomatics. The
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Marva, Felia. "Pengembangan Lab Sheet Praktikum Geomatika II untuk Program Studi S1 PTSP FT UNY." Jurnal Pendidikan Teknik Sipil 4, no. 2 (2022): 140–52. http://dx.doi.org/10.21831/jpts.v4i2.53964.

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The aims of this study were to: (1) develop a lab sheet as a material to support the learning process in the Geomatics II Practicum subject in the Civil Engineering and Planning Department, Yogyakarta State University and (2) determine the feasibility of the lab sheet in the Geomatics II Practicum subject in the Civil Engineering department. and Planning of Yogyakarta State University.The method used in this research is Research and Development Research and Development (RD). The model used is 4D Thiagarajan, namely: (1) Define, (2) Design, (3) Develop, (4) and Disseminate. The lab sheet feasib
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Prasanna, H. M. I. "FACULTY OF GEOMATICS AS THE FOCAL POINT IN GEOMATICS EDUCATION IN SRI LANKA." ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences X-5/W1-2023 (May 23, 2023): 51–57. http://dx.doi.org/10.5194/isprs-annals-x-5-w1-2023-51-2023.

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Abstract. The Faculty of Geomatics is one of the nine faculties of the Sabaragamuwa University of Sri Lanka. It offers high quality geomatics related degree programmes, and consists of a well-qualified staff and latest technological resources. It delivers highly job oriented programmes and the curriculums of these programmes have been developed to meet various national and international standards and the requirements of professional bodies. As the first time in the history of the Sri Lankan university system, the BSc in Surveying Sciences Degree Programme was introduced by the Faculty of Geoma
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Tucci, G., E. I. Parisi, A. Conti, M. Corongiu, L. Fiorini, and F. Panighini. "EDUCATIONAL AND TRAINING EXPERIENCES IN GEOMATICS: TAILORED APPROACHES FOR DIFFERENT AUDIENCE." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-2/W11 (May 5, 2019): 1097–104. http://dx.doi.org/10.5194/isprs-archives-xlii-2-w11-1097-2019.

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<p><strong>Abstract.</strong> The recent outbreak of geospatial information to a wider audience, represents an inexorable flow made possible by the technological and scientific advances that cannot be opposed. The democratization of Geomatics technologies requires training opportunities with different level of complexity specifically tailored on the target audience and on the final purpose of the digitization process. In this frame, education plays a role of paramount importance, to create in the final users the awareness of the potentials of Geomatics-based technologies and
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Fairbairn, D. "Experiences in manpower planning for geomatics." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XL-6 (April 23, 2014): 25–29. http://dx.doi.org/10.5194/isprsarchives-xl-6-25-2014.

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This paper addresses the issue of manpower planning in meeting the needs of national and international economies for trained geomatics professionals. Estimated statistics for the numbers of such personnel, and experience in assessing recruitment into the profession reveal considerable skills gaps, particularly in the mature economies of the developed world.<br><br> In general, centralised manpower planning has little official role in western economies. However, informal surveys of shortfalls in supply of qualified graduates in many fields, including geomatics, are undertaken by pro
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Zhu, L., J. Zhao, L. Zhou, and S. Wei. "DESIGN AND IMPLEMENTATION OF THE INTEGRATED PRACTICUM OF GEOMATICS ACCORDING TO ENGINEERING EDUCATION ACCREDITATION." International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLVIII-5/W1-2023 (May 24, 2023): 65–71. http://dx.doi.org/10.5194/isprs-archives-xlviii-5-w1-2023-65-2023.

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Abstract. Engineering education accreditation is a new engineering education model promoted by the Ministry of Education in China, which aims to cultivate the ability of students to solve complex engineering problems. A course named “integrated practicum of Geomatics” (IPG) was innovatively designed for the undergraduate specialty of Geomatics. This course involves in the current advanced technologies to lay a solid foundation for students to engage in Geomatics through aerial photography technology design, unmanned aerial vehicle photography, control point selection, GNSS-RTK control point su
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Al-Tahir, R. "INTEGRATING UAV INTO GEOMATICS CURRICULUM." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XL-1/W4 (August 27, 2015): 387–90. http://dx.doi.org/10.5194/isprsarchives-xl-1-w4-387-2015.

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Unmanned aerial vehicles (UAV) have gained tremendous interest as a platform for surveying and mapping over the last few years, and have opened up a new realm of opportunities for surveying, orthophoto production, 3D modelling and feature extraction. UAVs provide a viable and affordable alternative for the airborne and space borne sensors for the medium/large scale mapping. This paper argues that universities should expand their education and training programs to include UAV-based geomatics operations and application development. Based on the author’s own experience as well other cases, detail
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El-Sheimy, Naser. "Geomatics—An Open Access Journal." Geomatics 1, no. 1 (2020): 1–2. http://dx.doi.org/10.3390/geomatics1010001.

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Martinsanz, Gonzalo. "Unmanned Aerial Vehicles in Geomatics." ISPRS International Journal of Geo-Information 5, no. 8 (2016): 147. http://dx.doi.org/10.3390/ijgi5080147.

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Mills, Jon, and David Barber. "Geomatics Techniques for Structural Surveying." Journal of Surveying Engineering 130, no. 2 (2004): 56–64. http://dx.doi.org/10.1061/(asce)0733-9453(2004)130:2(56).

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45

Yeates, Maurice. "Business/commercial geomatics and planning." Progress in Planning 60, no. 1 (2003): 1–11. http://dx.doi.org/10.1016/s0305-9006(02)00088-0.

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de Rijcke, Izaak. "Geomatics and the Law: The Geomatics Professional in Court: A Crisis in Non-Confidence?" GEOMATICA 67, no. 4 (2013): 276–79. http://dx.doi.org/10.5623/cig2013-055.

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Apriyeni, Baiq Ahda Razula, Herman Supriadi, Muh Adrian Juniarta Hidayat, M. Adnan Hidayat, and Liana. "Pelatihan Sistem Informasi Berbasis Geopasial Bagi Siswa Jurusan Geomatika SMKN 3 Selong." Synergy and Society Service 5, no. 1 (2025): 9–18. https://doi.org/10.51713/save.v5i1.97.

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The use of information technology, especially geospatial-based information systems, has become very important in various sectors of life. This is especially relevant in the context of education, where understanding and mastery of technology is key to preparing the younger generation to face the complex challenges of the job market. This geospatial-based information system training, we aim to be able to create a young generation who are not only skilled and competent, but also innovative in facing future challenges. The implementation of geospatial-based information system training activities a
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48

Li, M. N., X. S. Liu, and J. F. Ao. "BROUGHT ABOUT BY THE SUSTAINABLE DEVELOPMENT GEOMATICS IN THE ERA OF BIG DATA OPPORTUNITIES AND CHALLENGES." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-3/W10 (February 8, 2020): 731–37. http://dx.doi.org/10.5194/isprs-archives-xlii-3-w10-731-2020.

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Abstract. Under the background in the era of big data, in order to promote sustainable development of the geomatics for a long time, this paper studies the opportunities and challenges faced by current geographic information science through quantitative analysis, literature research and case analysis, such as favorable growth environment, the growing demand for services, the transformation of traditional management concepts; the ability to manage and control virtualized data, the security protection and proper use of massive data, and the improvement of relevant laws and regulations. Finally,
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Rhazi, Abelaziz, Narjisse Essahlaoui, Abdellah Oumou, et al. "Geomatics applied to the evaluation of urban growth in the city of Meknes, Morocco." E3S Web of Conferences 607 (2025): 04023. https://doi.org/10.1051/e3sconf/202560704023.

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Like other countries, urbanization in Morocco continues to increase in an accelerated way and in all its regulatory forms via urban planning documents and irregular on sensitive and vulnerable sites lacking basic infrastructure and sometimes exposed to various risks. This is where geomatics comes in, as a valuable tool to observe urban expansion and analyze urban spaces. Geomatics, which combines mapping, remote sensing, geographic information systems (GIS) and geospatial information technologies, offers an integrated approach for the collection, analysis and visualization of spatial data. Thu
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Luo, F. J., P. C. Zhang, X. Ma, and J. Bai. "RESEARCH ON NORMATIVE EXPRESSIONS OF GEOMATICS ELEMENTS FROM THE PERSPECTIVE OF QUALITY INSPECTION." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-3/W10 (February 8, 2020): 1271–75. http://dx.doi.org/10.5194/isprs-archives-xlii-3-w10-1271-2020.

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Abstract. At present, social and economic development has entered a new era. The establishment of the Ministry of Natural Resources has strengthened the functions of the natural resources department to provide the government and the public with standard, accurate, authoritative and reliable geomatics data recognized by various sectors, and has also put forward higher requirements for the quality of geomatics data.The definition of some elements in the geomatics standards is ambiguous or even contradictory, which interferes with the work level of production personnel, affects the ability of qua
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