Solutions of Electrical Control and Management System for thermal power plant based on IEC61850

Author(s):  
Wei Hou ◽  
Yan Yang ◽  
Wei Yan ◽  
Chunhe Zhang
2020 ◽  
Vol 305 ◽  
pp. 00045
Author(s):  
Andreea Cristina Tataru ◽  
Aurora Stanci ◽  
Dorin Tataru ◽  
Mihai Sorin Radu ◽  
Ioan Rus

As a result of the combustion of coal in the Paroseni Thermal Power Plant, large amounts of slag and ash waste are produced. Slag and ashes are deposited in the Caprisoara Valley slag and ash deposits. Upon completion of the deposit process, these landfills must be cleaned and reintroduced in natural circuit. An important step in the process of reintroduction in natural circuit of the deposits of slag and ashes is the implementation of some methods of revegetation. The chosen method must respect the main objectives of an environmental management system. In this paper we will present a method for managing the process of revegetation of the slag and ash deposits in order to reintroduce affected areas into the natural circuit.


2014 ◽  
Vol 986-987 ◽  
pp. 2171-2175
Author(s):  
Li Fang Zhang ◽  
Hai Rong Sun ◽  
Hao Jia ◽  
Ze Dong

The thermal power has a large proportion in China’s energy structure, thus, the thermal power plants can be said to be the foundation of our national economy. However, the industry characteristics of thermal power plant themselves make it to be accident-prone. In this paper, we aim at the suddenness and rapidity of emergency, combine the principle of “both prevention and response, combined with the normal and abnormal”, relay on the B/S architecture, run through the four stages of emergency management which are prevention, preparedness, response and recovery, in order to propose the overall design scheme of emergency management system for thermal power plant.


2014 ◽  
Vol 8 (1) ◽  
pp. 700-704
Author(s):  
Kepei Li ◽  
Gia Vani

Distributed Control System (DCS) has been widely recognized in the field of modern thermal power thermal control, and has significant effects in the application process. Today, the monitoring of electrical quantities is included into the DCS system, thus replacing the traditional "one to one" manual mode of operation in electrical control. It is to further improve the main works of the station automation and control systems. Combined with the actual project needs, this study focuses on the components of electrical control included in DCS system, the implementation of software and hardware features, and the measures to improve reliability. In addition, useful discussions have been made for some technical problems. In the DCS system, the electrical control inclusion is not just a perfection thermal power plant electrical control system, but a big improvement as well. In addition, it is a new attempt. At present, most of the electrical control parts of control system included into the DCS system with the manual operation are basically cancelled, but there are some problems, for example many of the designs do not match with the original operating habits, etc., which will have a certain impact on the tradition. In the transformation process of system, some of the designs are good but cannot be achieved currently. They still need further research and improvement, for example how can the electrical control of system enter into the DCS in a better manner, how can the display of light texts upon failure or abnormal time weaken electric signals in a more comprehensive and rapid manner, what are the new requirements for anti-interference, and other sequential control functions to be improved and perfected.


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