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1

She Ziying. "Information Technology in Civil Engineering Management." INTERNATIONAL JOURNAL ON Advances in Information Sciences and Service Sciences 5, no. 2 (January 31, 2013): 632–41. http://dx.doi.org/10.4156/aiss.vol5.issue2.80.

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2

Zhang, Huwei. "Computer Information Technology Application in the Engineering Cost Information Management Research." Journal of Physics: Conference Series 1881, no. 2 (April 1, 2021): 022039. http://dx.doi.org/10.1088/1742-6596/1881/2/022039.

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3

Ma, Chongsen, Denglian Yang, and Kexin Ma. "Research on application of building information management technology to engineering project management." IOP Conference Series: Earth and Environmental Science 580 (November 7, 2020): 012018. http://dx.doi.org/10.1088/1755-1315/580/1/012018.

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4

Hoplin, Herman P. "Re‐engineering information technology." Industrial Management & Data Systems 95, no. 2 (March 1995): 24–27. http://dx.doi.org/10.1108/02635579510082520.

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5

Huang, Wen. "Study on the Engineering Management Information System." Applied Mechanics and Materials 373-375 (August 2013): 2247–50. http://dx.doi.org/10.4028/www.scientific.net/amm.373-375.2247.

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There is advanced construction technology and successful experience in engineering in the field of Chinese construction, but no project management information technology. Based on the full life-cycle theory, this paper has systematically expounded the core content of project management: management, service and innovation. Project management information system has been discussed, and related research trends summarized as follows: from study on the construction phase to study on the full life cycle project management information. It aims to provide a reference for China's construction industry project management information technology in order to improve the level of project management in China.
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Tan, Jian Ling, Xin Fa Dong, and Xiao Juan Li. "Application of Information Technology in Construction Project Management." Advanced Materials Research 219-220 (March 2011): 1012–16. http://dx.doi.org/10.4028/www.scientific.net/amr.219-220.1012.

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This paper introduces an integral part of engineering information management and information management system development and applications in engineering project. It points out that highly developed network of information technology can realize monitoring important parts and process of project in the video. Information management system copies with complex information to identify and summarize the different categories then issues for works to provide accurate and timely information to achieve objectives of project management. It will also have a profound impact on promoting the construction of process standardization and improving the quality of the project.
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7

Yin, Xue Mei. "Application of Information Engineering in Enterprise Management." Applied Mechanics and Materials 174-177 (May 2012): 2745–48. http://dx.doi.org/10.4028/www.scientific.net/amm.174-177.2745.

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Information engineering has been widely used in project management. Implementation of enterprise information technology can overcome various inconveniences caused by geographic or time gap and make up the gap with partners or competitors. The purpose of this paper is to use the mature and advanced technology to design and realization of high reliability, scalability, flexibility, economy, and be able to meet the management requirements of modern enterprises, to improve enterprise information-sharing capabilities, and to support enterprises in high-level enterprise information management platform.
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Dong, Bing. "Design of Information Management System of Municipal Engineering." Applied Mechanics and Materials 608-609 (October 2014): 449–53. http://dx.doi.org/10.4028/www.scientific.net/amm.608-609.449.

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This paper firstly introduces the research status and development of management information system at home and abroad, describes the management information system of municipal engineering need theory and the main technology used in the design and development process; using UML modeling method to describe the function module and the behavior features of the system in the design phase for the system, and we are designed the database, interface, error handling, and maintenance of the system; and uses the B/S framework and Microsoft SQL server database, developed a web page using JSP technology, realizes design of the municipal engineering management information system; at last the paper introduced in detail implementation and test of program design process and coding function module.
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Ristov, Pančo, Ante Mrvica, and Pavao Komadina. "Security of Data and Information in Vessel Traffic Management Information Systems." Naše more 63, no. 1 (March 2016): 1–8. http://dx.doi.org/10.17818/nm/2016/1.7.

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10

Tuman, John. "Information Technology, Organizational Culture, and Engineering Management for a Volatile World." Engineering Management Journal 1, no. 1 (March 1989): 24–33. http://dx.doi.org/10.1080/10429247.1989.11414516.

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Jäkälä, Mikko, and Samuli Pekkola. "From technology engineering to social engineering." ACM SIGMIS Database: the DATABASE for Advances in Information Systems 38, no. 4 (October 28, 2007): 11–16. http://dx.doi.org/10.1145/1314234.1314238.

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12

Zhang, Jie, Xin Guo, and Ying Xu. "Application of Wireless Communication Technology in Construction Project Information Management." Wireless Communications and Mobile Computing 2021 (August 28, 2021): 1–7. http://dx.doi.org/10.1155/2021/8174600.

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With the replacement of the times, the electronic information technology of all countries in the world has developed rapidly, and 4G mobile communication technology has also obtained the opportunity of development, which has improved the transmission speed of 5G mobile communication technology, which has been widely used in intelligent information management of construction engineering. Under this background, this paper selects the research methods of theory guiding practice and practice updating theory to guide the application of information technology. Based on the actual engineering cases, this paper discusses the scientific process of information management construction of construction projects from the perspective of BIM Technology by taking the specific construction details as the starting point. Firstly, this paper systematically introduces the key technologies of BIM and the related concepts and basic contents of construction project management informatization, expounds and analyzes the three construction modes that should be followed by construction project collaborative management informatization, and puts forward the key and main contents of standardization construction. Then, taking New York freedom building as an engineering case, this paper analyzes the application of building information modeling (BIM) in the architectural design of New York freedom building. Relevant research can provide theoretical and practical references for realizing and ensuring the combination of project management and information technology.
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Pan, Ping Ping, and Da Shan Niu. "Study on Modernization of Electronic Information Engineering Technology." Applied Mechanics and Materials 687-691 (November 2014): 1770–73. http://dx.doi.org/10.4028/www.scientific.net/amm.687-691.1770.

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Information engineering project has the characteristics of complex systems engineering activities. In system point of view to the problem of information engineering supervision system evaluation and system control problems, tracking problem, system optimization and system management. Study the goal of information engineering supervision control system and analyzes the information engineering supervision in the construction period, quality and cost. The relationship of the three objectives and method of control target, points out the information engineering supervision in stages of task, put forward to measure and estimate method for quantitative information engineering supervision.
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Zhang, Qiang, and Tao He. "Application of Information Technology in Vocational Engineering Training." Applied Mechanics and Materials 433-435 (October 2013): 1845–48. http://dx.doi.org/10.4028/www.scientific.net/amm.433-435.1845.

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There are so many problems in the traditional teaching practice, information technology teaching has fairly obvious advantages, information technology teaching with Internet as a carrier to spread, Web technology can achieve dynamic interaction, thus providing vivid, content-rich multimedia teaching as possible, in this paper, a system for the management of network teaching system are discussed and research.
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Badiru, Adedeji B. "Half-Life of Learning Curves for Information Technology Project Management." International Journal of Information Technology Project Management 1, no. 3 (July 2010): 28–45. http://dx.doi.org/10.4018/jitpm.2010070103.

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Learning curves are used extensively in business, science, technology, engineering, and industry to predict system performance over time. Although most of the early development and applications were in the area of production engineering, contemporary applications can be found in all areas of applications. Information technology project management, in particular, offers a fertile area for the application of learning curves. This paper applies the concept of half-life of learning curves to information technology project management. This is useful for predictive measures of information technology system performance. Half-life is the amount of time it takes for a quantity to diminish to half of its original size through natural processes. The approach of half-life computation provides an additional decision tool for researchers and practitioners in information technology management. Derivation of the half-life equations of learning curves can reveal more about the properties of the various curves with respect to the unique life-cycle property of information technology.
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Kim, Sangkyun. "IT compliance of industrial information systems: Technology management and industrial engineering perspective." Journal of Systems and Software 80, no. 10 (October 2007): 1590–93. http://dx.doi.org/10.1016/j.jss.2007.01.016.

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17

Tohidi, Hamid. "Review the benefits of using value engineering in information technology project management." Procedia Computer Science 3 (2011): 917–24. http://dx.doi.org/10.1016/j.procs.2010.12.150.

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18

Skibniewski, Miroslaw. "Research Trends in Information Technology Applications in Construction Safety Engineering and Management." Frontiers of Engineering Management 1, no. 3 (2014): 246. http://dx.doi.org/10.15302/j-fem-2014034.

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19

Zhao, Fang. "Management of information technology and business process re‐engineering: a case study." Industrial Management & Data Systems 104, no. 8 (October 2004): 674–80. http://dx.doi.org/10.1108/02635570410561663.

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20

Niu, Xiang Jie, and Jian Xu. "The Construction of Agricultural Information Service Support and Information Management System." Applied Mechanics and Materials 380-384 (August 2013): 4686–89. http://dx.doi.org/10.4028/www.scientific.net/amm.380-384.4686.

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The agriculture information service support and information management system is the provider of agriculture information, which can provide large amount of effective agriculture products information. Through the effective management of information, it is able to regulate the process of production and sales of agricultural products. The rural grassroots information service management system is based on B/S (Browser/Server) distribution network technology, application system engineering thoughts and software technology. The system can provide some information security protection mechanisms to ensure the safety during operation. The establishment and application of the system can greatly improve the rural information service level to promote the rural information development.
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21

Zhang, Ling Juan. "Research of Engineering Spot Attendance and Employee Information Management Integration System." Advanced Materials Research 977 (June 2014): 472–75. http://dx.doi.org/10.4028/www.scientific.net/amr.977.472.

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To improve the efficiency of engineering spot attendance and employee management, a novel integrated management system is designed. The system uses a three-tier logical architecture design, which can be divided into user interface layer, business logic layer and data store layer. The realization of information management is based on VB6.0 and ACCESS database programming technology. The development of attendance information gathering functions of engineering spots is based on radio frequency identification technology and non-contact IC card. The separation of business logic and user interface makes the system more security and extensible. Experimental results show that the system has high efficiency, and it has user-friendly, secure and practical advantages.
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22

Li, Shun, Dong-wei Zhang, and Cheng Tian. "Research on the Application of BIM Technology Based on Information Technology in Construction Engineering Safety Management." Journal of Physics: Conference Series 1915, no. 2 (May 1, 2021): 022094. http://dx.doi.org/10.1088/1742-6596/1915/2/022094.

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23

Yang, Zhongxuan. "Research on Deep Integration of Construction Management and Computer BIM Technology." Journal of Advanced Computational Intelligence and Intelligent Informatics 23, no. 3 (May 20, 2019): 379–84. http://dx.doi.org/10.20965/jaciii.2019.p0379.

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As information development has progressed in the field of architecture in China, owing to the lack of unified information exchange standards and information integration mechanisms, it is difficult to exchange and share information between different stages and application systems during the construction lifecycle. The formation of information islands and faults hinders the application of information technology in the field of construction, thus affecting the production efficiency of the industry. In this study, construction engineering management and computer building information modeling (BIM) are deeply integrated, and an international standard for the construction industry is introduced. Moreover, a BIM information integrated building management platform is developed that combines BIM technology with the construction engineering management to realize the exchange of engineering information and shared and integrated management, in addition to providing theories, methods, technologies, and platforms.
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24

Daim, Tugrul U., Dirk Meissner, and Elias Carayannis. "Roadmapping for Engineering and Technology Management." Journal of Engineering and Technology Management 51 (January 2019): A1—A2. http://dx.doi.org/10.1016/j.jengtecman.2019.01.001.

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25

Daim, Tugrul U., Dirk Meissner, and Elias Carayannis. "Roadmapping for engineering and technology management." Journal of Engineering and Technology Management 52 (April 2019): 1–2. http://dx.doi.org/10.1016/j.jengtecman.2019.02.003.

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26

Liu, Lei. "Control Technology Based on Information Feedback for Construction Project Management in Civil Engineering." Advanced Materials Research 1056 (October 2014): 142–45. http://dx.doi.org/10.4028/www.scientific.net/amr.1056.142.

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The civil engineering construction is a very complicated production activities. In the whole construction process need to consume a large amount of manpower, consume a large amount of materials, use a lot of equipment, also need to deal with complex technical problems a lot. So this is for the civil engineering construction project management have strict requirements. This paper from the quality control, schedule control, cost control three aspects of the civil engineering construction project management analysis. Quality control Construction quality is the foundation of project management work, is the basic requirement of the construction of the project. Have important influence on the quality of the whole construction quality of engineering quality control. Because the civil engineering construction comprises a plurality of procedures, quality control is usually divided in time for the preparation of construction quality control, the quality control of construction process and quality control of completion and acceptance of three stages. Preparation of construction quality control of the main content is: each enterprise carefully check to participate in the project entity construction qualification, including professional subcontracting subcontracting, materialsand material suppliers; according to the basic principles of quality management, review project quality plan, quality requirements, implementationplan, including examination, treatment and other sectors to establish quality control preliminary scheme;, once appear quality problem, can quickly take thepreliminary scheme, guarantee the quality of the whole project. Figure 1 Quality process control before, during and after the event.
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27

Zhang, Lei. "Design of Project Management Information System for Electricity Infrastructure." Applied Mechanics and Materials 686 (October 2014): 742–46. http://dx.doi.org/10.4028/www.scientific.net/amm.686.742.

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In order to solve the existing problems of power system infrastructure project management, through the summary of power engineering project management experience and lessons learned, and make use of modern computer technology, network technology, various kinds of information integration and processing, the paper constructs the infrastructure information management platform that can provides a wealth of necessary information for construction project decision makers. This paper designs a kind of electric power construction project management information system, design and presented the function module structure and its subsystems in this paper, and finally completes the system development. The function of this system meets the design requirements, to improve and standardize the project management of electric power engineering.
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Wang, Na, and Qun Li. "Study on Hospital Medical Information Engineering." ITM Web of Conferences 26 (2019): 02006. http://dx.doi.org/10.1051/itmconf/20192602006.

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On the base of the current status of hospital medical information engineering, this paper analyzes some major problems existing in computer hardware, and puts forward some plans and reform measures in connection with the characteristics of medical information engineering. Because the application of electronic information engineering in hospitals is perfect and comprehensive, and there is no corresponding management training, so that the management personnel do not have the information technology and skills required by the application of electronic information engineering, the training of relevant personnel should be strengthened.
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29

Wang, Yun Qiao, Zhong Yi Mei, and Yu Qing Fan. "Challenge of Model Based Definition Technology to Engineering Graphics Education." Applied Mechanics and Materials 163 (April 2012): 264–68. http://dx.doi.org/10.4028/www.scientific.net/amm.163.264.

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MBD (Model Based Definition) technology is a digital method of product definition which combines all information required for manufacturing into the 3D design model including annotation, processing description, attributes and management information. This advancement is a not only a change in media used in the design, manufacturing, inspection and management cycles of the product but also a disruptive reform in engineering-thinking. MBD technology defines a product completely without traditional engineering drawing which is challenging the engineering graphics education. Though MBD technology has not been fully tested or fully developed in all field, change and revolution in relative engineering education must be taken into consideration simultaneously. By comparing the traditional 2D and 3D representation methods with the MBD technology including geometric and non-geometric information of product, some suggestions are presented in contemporary engineering graphics education.
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Li, Li. "Application of BIM Technology in practical teaching of Engineering Management Specialty." E3S Web of Conferences 253 (2021): 01031. http://dx.doi.org/10.1051/e3sconf/202125301031.

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At present, building information modeling is widely used in many stages of project life cycle. On the basis of combing the practical teaching of engineering management specialty, this paper analyzes the practice teaching conditions based on BIM Technology in application-oriented universities, and puts forward the construction measures of teaching system of BIM Technology in engineering management practice teaching.
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Zhang, Jun, Zhao Hong Yan, and Zhang Jian Qiang. "IETM Technology is the Development Direction of Engineering Machinery Maintenance." Advanced Materials Research 823 (October 2013): 572–76. http://dx.doi.org/10.4028/www.scientific.net/amr.823.572.

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Based on the interactive electronic technical manual (IETM) characteristics of the analysis, combined with the current situation of China's engineering machinery repair, comparative analysis of technical advantages of using IETM technology in engineering machinery repair in data acquisition technology, from the speed, fault isolation efficiency and personnel's work efficiency and other aspects, discusses the necessity of its application; combined with IETM production standards, from the main creative part of IETM, such as information generation, information management, production of interactive interface, several aspects of publishing, explains IETM make the development process and the main production platform. By using the structure block diagram, showing the method of information production and information management mode, and the main modules in the block diagram and function are described; and discusses future development proposals.
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Wang, Shao Lin. "Improving Learning Quality of Advanced Manufacturing Engineering." Applied Mechanics and Materials 484-485 (January 2014): 239–41. http://dx.doi.org/10.4028/www.scientific.net/amm.484-485.239.

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Higher education and traditional forms of teaching and management system are difficult to adapt to the individualized requirements and the cultivation of personalized talents. higher education information technology is a new trend in the world, and it plays an important role in promoting universities personalized education and innovation, training personnel, improving the integrated use of the excellent teaching resources, deepening teaching management reform and improving the teaching management level, enhancing teaching quality of advanced manufacturing engineering. Colleges and universities should attach great importance to the building and information on the quality of the teaching environment of information technology and promote information technology in education for major of manufacturing engineering.
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33

Wang, Guang Bin, Xiao Fei Zheng, and Jin Bao He. "A Distributed BIM-Based Engineering Project Management Information System Design and Analysis of Advantage." Applied Mechanics and Materials 174-177 (May 2012): 2759–62. http://dx.doi.org/10.4028/www.scientific.net/amm.174-177.2759.

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In modern times, information technology developes very quickly. Architecture engineering construction industry has gradually been revolutionized from traditional ways to technology-based methods. As the engineering construction project is very complex ,advanced tools are required to assist finishing a project. Building information modeling is disseminated to construction industry ,as an instrument to help collaboration and co-working. The practical effectiveness of BIM is mainly in architecture design, while BIM can be used as a tool in other parts of construction industry such as virtual construction ,time-dependent control and maintainance management and even the lifecycle management.This paper mainly presents five main parts and functions designed of information system based on BIM, and analyses the strengths of the system .It aims to demonstrate how engineering project overcome traditional barriers and physical distribution with the development of information technology across the whole construction lifecycle.
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Yasmin, Shazia, Nosheen Fatima Warraich, and Irfan Ali. "Personal Digital Information Management Practices of Engineering Faculty: Finding, Organizing, and Re-finding Information." Pakistan Journal of Information Management and Libraries 21 (2019): 88–103. http://dx.doi.org/10.47657/2019211541.

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This study aims to investigate the personal digital information practices of engineering faculty members in terms of finding, organizing, keeping, and re-finding information. Quantitative research design based on survey method was used to collect data through structured questionnaire. Simple random sampling technique was applied to get response from engineering faculty members. They perceived that their information gathering and finding skills were good and they coped well with gathered information of their interest. Findings revealed that faculty members classified and sorted gathered information to re-find it latter. They also kept information that had potential to be useful in future. Respondents used different ways to re-find their saved information including keywords search, browse through folder structure, access through bookmark, and use of memory. It is noted that browsing information through folder names, and bookmarks were also a common practice among engineering faculty. Findings also revealed that there was statistically significant difference between male and female faculty members’ PIM practices. Faculty members perceived that they were skillful in finding information while they were less-proficient in organizing and re-finding information. Thus, they also have to face different types of challenges such as technology obsolescence, assessing future value of information, information fragmentation and memory load in remembering the location of information. The findings of engineering faculty members’ PIM practices have significant implications for faculty themselves, educational technologist, digital library developers, and educational policy makers.
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Shuai, Qing Yan, and Ya Bo He. "Study on the Design of Project Controlling Information Management System for Large-Scale Hydraulic Engineering." Advanced Materials Research 671-674 (March 2013): 3130–33. http://dx.doi.org/10.4028/www.scientific.net/amr.671-674.3130.

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Project controlling information management system (PCIMS) is an important management facility and means for the construction of large-scale hydraulic engineering. Based on the analysis of construction management features for large-scale hydraulic engineering, the general design goal of PCIMS is put forward. The structure of PCIMS for large-scale hydraulic engineering is concretely designed and analyzed, which is consisted of five parts, including the account management module, database, input module, data processing module and output module. The key technologies in the process of developing PCIMS are also discussed,such as the technology of data warehouse, the real-time technology of the system and the comprehensive integration technology of various components. Due to the establishment of PCIMS for large-scale hydraulic engineering, a convenient information interaction platform is provided for all the project participants. As a result, the accuracy and timeliness of the information exchange is improved, that is benefit for the owners to make correct decision.
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Ding, Bo Yang, Xiao Dong Pan, Hai Bing Tao, and Shi Jun Liang. "The Real-Time Integrated Information Management System for Building Construction." Applied Mechanics and Materials 368-370 (August 2013): 1941–45. http://dx.doi.org/10.4028/www.scientific.net/amm.368-370.1941.

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A real-time information management system for building construction (RIMBC), which is supported by the network technology, geographical information technology and office automation technology, is designed. This management system integrated the design data, survey data and test data can be used for the real-time search, management and update of design, survey documents by technical sections of functional departments in the field of construction engineering. This study gives a comprehensive and detailed depiction for the logical structure, entity structure, system process planning, database structure, subsystem structure and personnel training of RIMBC.
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Na, Na, Yong Lin Liu, and Hong Ma. "Development and Application of the Health Law Enforcement Information System Based on Information Technology." Advanced Materials Research 709 (June 2013): 458–61. http://dx.doi.org/10.4028/www.scientific.net/amr.709.458.

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Objective: This study aims to explore and establish a set of information system for health law enforcement and management using information engineering technology, and apply the system into both administration and law enforcement managements in health inspection agencies in Qingdao. Methods: Using information engineering technology to establish a set of information platforms for health law enforcement and administration management, then combine the data resources from all the national, provincial and municipal information platforms and develop a set of data analysis and Early warning mechanisms. Results: The municipal information platform was established and put into use successfully in Qingdao health inspection bureau. Conclusion: The application of the information system improved work efficiency greatly, reduce administrative cost, and helps the authorities to comprehensive grasp of the health law enforcement situation, scientifically assess, early warn, timely and effectively intervene and correct the health law enforcement works in the health inspection agencies.
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Liang, Jun Qing, Shu Chao Guo, Ce Gao, Zhong Guo Du, Ling Li, and Shuang Shuang Yang. "The Study on Engineering Construction Material Information Management System Based on .NET." Applied Mechanics and Materials 109 (October 2011): 37–41. http://dx.doi.org/10.4028/www.scientific.net/amm.109.37.

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Based on background, taking the engineering construction material information management system to replace the traditional artificial management mode in recent years has caused extensive concerns in the construction enterprises. Then, this paper used .NET technology to implement the construction material information management system.
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Wang, Long, Pei Ling Yang, Shu Mei Ren, Chuang Sheng Cheng, and Da Wei Gao. "The Brief Introduction of Database Technology Application in Irrigation Information Management System." Applied Mechanics and Materials 411-414 (September 2013): 377–81. http://dx.doi.org/10.4028/www.scientific.net/amm.411-414.377.

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Irrigation experimental data is the basement of irrigation engineering design, area water resources optimization, agricultural water management and the future water right allocation and management. According to the backward situation that the management, coordinating, pigeonholing, inquiring of the irrigation experimental data was still accomplished manually at preset. This paper provides an overview of database technology. And it describes the design of irrigation information management system database. With current technology development, the paper analyzes the prospects for technology analysis, showing the importance of the technology.
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Yang, Chun Yan. "Information Technology Improve the Administrative Efficiency Research." Advanced Materials Research 971-973 (June 2014): 2342–45. http://dx.doi.org/10.4028/www.scientific.net/amr.971-973.2342.

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the university administrative management informationization refers to the university in order to meet the arrival of information age, the use of information technology, communication technology, network technology and other modern means of information, the traditional management and public service reform in colleges and universities, so as to improve the effectiveness of the management of colleges and universities, meet the social and public expectations of the public management and public service in colleges and universities of the dynamic process. It is a complicated system engineering, not only involves the planning, design and improvement on the level of technology, but also affects the internal functions to integrate different departments, the right pattern of change and the role of colleges and universities.
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Pate-Cornell, M. Elisabeth. "Managing technology in the information age: Stanford's new department of management science and engineering." International Journal of Technology, Policy and Management 1, no. 2 (2001): 160. http://dx.doi.org/10.1504/ijtpm.2001.001752.

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42

Baker, Clifford, David R. Eike, Thomas B. Malone, and Larry Peterson. "Update of Dod-Hdbk-761: ‘Human Engineering Guidelines for Management Information Systems’." Proceedings of the Human Factors Society Annual Meeting 32, no. 5 (October 1988): 335–39. http://dx.doi.org/10.1177/154193128803200521.

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DoD-HDBK-761 “Human Engineering Guidelines for Management Information Systems” was extensively updated and revised to reflect 1) significant changes in computing technology, including user interface techniques and display technology, and 2) recent user computer interface (UCI) design literature. The document was updated based on literature reviews, mail-out surveys of UCI designers and users, and interactive computer interviews (using question and answer dialog). The updated document contains two main sections. The first presents a general process for conducting UCI analysis, design, development, and evaluation activities. These activities include; conduct of system functions analysis, function allocation, user task analysis, user surveys, use of UCI prototypes, and product testing. The second section contains over 1000 human engineering guideline statements which can be applied to the detailed design of UCIs. The guideline section addresses dialog design, computer control, data entry and display, job performance aiding, expert systems interface design, and data communication and protection. This paper discusses the content and organization of the document.
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43

Du, Xingliang. "Research on Engineering Project Management Method Based on BIM Technology." Scientific Programming 2021 (July 9, 2021): 1–10. http://dx.doi.org/10.1155/2021/7230585.

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Construction projects require a significant amount of money and other resources in order to carry them out in an effective way. Cost control is a critical step in ensuring the success of the project and increasing its value. Nowadays, the large-scale application of BIM technology has ushered a technical change in the development of construction projects, which has greatly increased the level and efficiency of project management. Due to BIM technology, the construction engineering quality is significantly improved which really helped in obtaining the social and economic benefits. However, the BIM technology in our country is started relatively late and the technical force is not strong enough; then correspondingly, we must deal with many problems in the process of developing and using BIM technology based projects. In view of the fact and to address this issue, this paper establishes a three-dimensional architectural model based on the relevant information and data of the construction project using the BIM technology. The proposed model optimizes the clustering of construction project information data and adaptively configures the whole life cycle process of the construction projects. In addition, the performance of the proposed system has been compared and tested with the other systems as well which shows how good the proposed system is, as compared to the other systems. Further, the proposed model makes the artificial intelligence efficiency of the project management better. The simulation results show that the model not only has good access and query capabilities but also greatly improves the intelligence level of the project management.
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44

ZIMA, Krzysztof. "INFORMATION MANAGEMENT IN INTEGRATED PROJECT DELIVERY." Scientific Journal of the Military University of Land Forces 166, no. 4 (October 1, 2012): 146–58. http://dx.doi.org/10.5604/01.3001.0002.3540.

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The article discusses the problems of today's construction project management. Despite the implementation of modern technologies and building materials, and the use of software to support engineering analysis and decision-making in construction, efficiency gradually decreases. The article describes a new concept of integrated construction project management (Integrated Project Delivery) and compares it with the previously used management methods, such as Design-Bid-Build and Design & Build. The article also shows the problems associated with the flow of information during the completion of a construction project and the benefits of integrated construction project management in conjunction with the BIM (Building Information Modelling) technology. The article also describes the world's most popular format for data exchange between different software: IFC (Industry Foundation Classes), which allows exchanging information on many aspects of a construction project.
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45

Mandičák, Tomáš, Peter Mesároš, and Matúš Tkáč. "Construction project management through BIM and knowledge technology." Pollack Periodica 15, no. 1 (April 2020): 177–86. http://dx.doi.org/10.1556/606.2020.15.1.17.

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Abstract Construction project management is difficult process and important part of efficiency and productivity in construction industry. Currently, construction industry is increasing demands on technology, environmental and social construction parameters in the context of maintaining the balance of economic efficiency and sustainability of the construction and realization of buildings. Progressive technology as knowledge systems and building information modeling are the supporting tool for achieving this. Building information modeling is a progressive intelligent 3D model-based process that gives architecture, engineering, and construction professionals the insight and tools to more efficiently in planning, designing and buildings and infrastructure managing. Knowledge and building information modeling technology include a lot of functions and opportunities for better and easier way to achieve project goal and affect to construction project management process. Research discusses the issue of construction project management trough building information modeling and knowledge technology. The main aim of the paper is to analyze impact of these technologies on efficiency in construction project management.
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46

Wang, Mei Tian. "The Design for Petroleum Engineering Cost Management System Based on B/S Architecture." Applied Mechanics and Materials 651-653 (September 2014): 1655–58. http://dx.doi.org/10.4028/www.scientific.net/amm.651-653.1655.

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Information highway with computer network technology as the core, its rise and development, make the function of information system and the connotation constantly development and improvement, for the future information society provides an efficient, fast, and even intelligent work environment. In view of the defects of petroleum in engineering cost management, it put forward the " design of petroleum engineering cost management system based on B/S architecture ", by this scheme can improve the efficiency of existing petroleum engineering cost management, cost management for oil development has great benefits.
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47

Sayer, Kylie. "Denying the Technology: Middle Management Resistance in Business Process Re-Engineering." Journal of Information Technology 13, no. 4 (December 1998): 247–57. http://dx.doi.org/10.1177/026839629801300404.

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Business Process Re-engineering (BPR) as a methodology for organizational transformation has been around since the early 1990s. There are however, some serious issues of concern surrounding the success of BPR as a methodology for organizational change. This paper attempts to highlight the issues surrounding the BPR approach to change management that remain implicit within the re-engineering literature. The research presented in this paper specifically investigates BPR in practice and concentrates on the issues of power and control that underlie many of the re-engineering methodologies and how these conflict with the prerequisites of the flattened, empowered workforce that BPR envisions. The research presented here was conducted using the interpretive approach of ethnography to investigate how middle management were able to deny the technology of BPR and disable a change project. In order to maintain their hold on power in the organization they needed to revolt against the technology of re-engineering imposed on them by senior management. In using the clinical metaphor, middle management were able to create a reality around technology that portrayed it almost as a function of biological warfare, denying it being seen as a positive social tool. This paper highlights how they were able to manipulate the technology and turn its power around to reinforce their position and power in the process.
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Ivanova, Valentina V. "Management of Digital Information Technologies in Digital Economy." Mechanism of an Economic Regulation, no. 3 (2019): 83–96. http://dx.doi.org/10.21272/mer.2019.85.08.

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The problem of managing digital information technologies in the context of intensified transformation of the economy into a digital one is considered in the article. The tasks of “digitization” of the economy, business environment, socio-cultural relations in modern society are extremely urgent and complex. By and large, Ukraine is just starting to move in that direction. Given the importance and complexity of the tasks, both tactical and strategic, unfolding before economic agents in the study the definitions of “digital economy” and “digital information technology” are offered. The definition of “management of digital information technologies” and the main components of this process are offered. The state of integration of digital technologies in the business processes of enterprises in the European Union countries with the most advanced digital economy is analysed within the study. It was found that digital technologies are sufficiently used in every country, while most people have basic or higher than basic digital skills when conducting research. It has been determined that the main driver for business digitization and integration of digital information technologies into business processes is management staff with relevant competencies, experience, knowledge, skills. Staff (staff, contractors, stakeholders) must have competitive digital skills and skills to manage digital information technology, integrate them into business processes, practical, scientific and engineering consultancy, in particular to develop companies' digital strategies, recruitment and information and communication technology staffing he has tasks to digitize his business. A sufficiently high level of digitalization and integration of digital information technology into the business processes of enterprises is more likely provided by the priority role of managers in these processes, which have sufficiently high digital skills than information and communication technology employees (without denying their role in management decisions). Key words: digital economy, management of digital information technologies, digital skills, digital information technology, management, staff, competence, skills, business environment.
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Doll, William, and Xiaodong Deng. "A technology empowerment model for engineering work." ACM SIGMIS Database: the DATABASE for Advances in Information Systems 41, no. 4 (November 23, 2010): 52–74. http://dx.doi.org/10.1145/1899639.1899643.

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Sayer, Kylie. "Denying the technology: middle management resistance in business process re-engineering." Journal of Information Technology 13, no. 4 (December 1998): 247–57. http://dx.doi.org/10.1057/jit.1998.4.

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