Design of the control sequence for monitoring and control system of Pushihe Pumped Storage Power Station

Author(s):  
Wang Huimin ◽  
Jiang Haijun
2013 ◽  
Vol 791-793 ◽  
pp. 857-860
Author(s):  
Hong Chun Yao ◽  
Liang Yin ◽  
Ming Yu Huang

According to the development status of large-scale PV power station, this paper expatiates the topology and functions of the monitoring and control system of large-scale PV power station, The system consists of monitoring center, fiber optic ring network and control subnet, and the main functions are SCADA (supervisory control and data acquisition), AGC (automatic generation control), AVC (automatic voltage control), system state assessment, equipment maintenance, and power generation benefit analysis. The system is flexible and reliable, and will promote the efficiency of operation and maintenance of large-scale PV power station.


2014 ◽  
Vol 644-650 ◽  
pp. 1011-1014
Author(s):  
Hong Chun Yao ◽  
Rong Bo Ye

According to the development status of large-scale PV power station, this paper expatiates the requirements of the monitoring and control system for the large-scale solar power station, and presents the method of wireless mesh network technology applied to the system. This paper analyses the architecture of the monitoring and control system, the technical characteristics of wireless mesh network and the communication band selection to present the system program design. The whole system is flexible and reliable, and will promote the efficiency of operation and maintenance of large-scale solar power station.


2019 ◽  
pp. 41-48
Author(s):  
Yan Guojun ◽  
Oleksiy Kozlov ◽  
Oleksandr Gerasin ◽  
Galyna Kondratenko

The article renders the special features of the design of a tracked mobile robot (MR) for moving over inclined ferromagnetic surfaces while performing specified technological operations. There is conducted a synthesis of the functional structure and selective technological parameters (such as control coordinates) of the computerized monitoring and control system (CMCS) intended for use with this MR. Application of the CMCS with the proposed functional structure allows substantially increasing the accuracy of the MR monitoring and control, which in turn provides for a considerable enhancement in the quality and economic efficiency of the operations on processing of large ferromagnetic surfaces.


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