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Journal Control and Systems Engineering

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Huang Weiwei
Control and Systems Engineering, Volume 1; doi:10.18063/cse.v1i1.484

Abstract:Modern enterprises are in a time of change and under high degree of uncertainty. There are risks in human resources management of each enterprise, such as recruitment failure and sudden leave or casualties of the key technical staff. These will affect the normal operation of enterprises, these can even cause fatal blow to the enterprise if the problem is serious. Therefore, it is important to establish a sense of risk in the human resources management to prevent human resources risk as an important part of enterprise human resource management, and also important to explore actively about the risk identification and prevention in human resources management, all these are the new direction of theoretical and business research. This paper will elaborate on the above issues, first elaborated on the concept of internal human resources risk and characteristics, followed by risk identification analysis, and then put forward the enterprise human resources risk prevention strategies and response measures.
Cao Jiye
Control and Systems Engineering, Volume 1; doi:10.18063/cse.v1i1.486

Abstract:Liquefied natural gas (LNG) has the characteristics of low temperature, volatile, flammable and explosive, and its safety issues are being highlighted. The probability and consequences of accident were quantitatively analyzed in combination with the possibility of LNG filling station pump or pipeline spillage. The DEGADIS and LNGFire3 models were used to determine the consequences of the accident. Based on the injury criterion data provided by relevant literature, the article concludes that the personal risk value derived from personal injury level and mortality rate, when compared with personal risk standards of United Kingdom, Netherlands and other countries and institutions, the personal risk value is much lower than the standard limit value, and shows the rationality of establishing 5kW/m2 as the safety distance from critical thermal radiation intensity.
Peng Huiguo
Control and Systems Engineering, Volume 1; doi:10.18063/cse.v1i1.483

Abstract:The demand for equipment has been unable to meet the current and future high performance application anddevelopment needs with the rapid development of electronic technology and upgrading of traditional industries inChina. At the same time, intense market competition and technical competition require that the development cycle ofthe product to be as short as possible. Obviously, the software and hardware of embedded system are becoming moreimportant foundation of technological innovation in various fi elds. The embedded system is a combination of advancedcomputer technology, semiconductor technology, electronic technology and the specific application of variousindustries. This determines that it must be a technology-intensive, capital-intensive, highly fragmented and innovativeknowledge integration system. The embedded type is based on the application of computer technology-based hardwareand software can be tailored to adapt to the application system on the function, reliability, cost, size, power and otherstrict requirements of the special computer system. The emergence of consumer appliances and cheap microprocessorsembedded systems will form larger application areas in daily life to as the embedded system usually has low powerconsumption, small size and high integration. Embedded employment is widely embedded in the social needs of largetalent. The content of the paper is clear in the embedded control system overview - development - application writingideas in three chapters gradually. Chapter 1 introduces the defi nition, frame, characteristic, development history, currentsituation and prospect of the embedded control system in detail. The development of the embedded control systemmainly discusses the development steps and methods. The third chapter embedded control system. This paper discussesthe practical application of embedded control system in public life. As the application of these research results in thefi nal summary of the various aspects of the system capacity and analysis of the existing problems for further research toprovide a direction and valuable experience.
Song Wanqing
Control and Systems Engineering, Volume 1; doi:10.18063/cse.v1i1.485

Abstract:Construction project management is a complicated process. The essential factors for the survival and development of construction enterprises includes focus on construction project management, improve project quality, ensure project progress, reduce project cost and improve economic efficiency. The construction market is fully open and the market competition is more intense, so the construction enterprises should establish the cost, progress, quality of the system management concept, then systemized the enterprise cost, progress and quality management work as a project and emphasize the overall. The cost, progress, quality management of the object, content, methods of analysis and research in order to achieve management innovation under an environment with safety, quality and duration of the case. Strictly control the cost of the project to minimize the project cost and create an invincible position in the market competition.
Liu Hongwei
Control and Systems Engineering, Volume 1; doi:10.18063/cse.v1i1.487

Abstract:Construction is a multi-type, multi-disciplinary and complex engineering system. In order to smoothly conduct construction process and to achieve the intended goal, it is necessary to carry out construction management in a scientific way. However, in the implementation of the system, there is often mismanagement which caused major safety accidents and the quality of construction has become a general concern. This paper analyzes some problems in the construction site, and proposed solutions to promote standardized law and safety measures for the construction management system.
Evgeni Nikolaevich Terentiev
Control and Systems Engineering, Volume 2; doi:10.18063/cse.v2i1.358

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Murat Mayda
Control and Systems Engineering, Volume 2; doi:10.18063/cse.v2i1.434

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Zhaoyang Ai, Ying Zhang, Yingjie Zhang, Yun Feng, Jing Zhang, Yi Lu Murphey
Control and Systems Engineering, Volume 1; doi:10.18063/cse.v1i1.398

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Zhaoyang Ai, Ying Zhang, Yingjie Zhang, Yun Feng, Jing Zhang, Yi Lu Murphey
Control and Systems Engineering, Volume 2; doi:10.18063/cse.v2i1.398

The publisher has not yet granted permission to display this abstract.
Evgeni Nikolaevich Terentiev
Control and Systems Engineering, Volume 1; doi:10.18063/gse.v1i1.358

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