Title :
The Study of Enterprise Working Time Optimization Simulation System Considering the Peak-Valley Power Price
Author :
Yan, Aimei ; Wang, Jinsong ; Wu, Liang ; Xie, Yingxin
Author_Institution :
Energy Efficiency Bus. Dept., Beijing GuoDianTong Network Technol. Co., Ltd., Beijing, China
Abstract :
The peak-valley time of use (TOU) power price is an effective demand side management measure which affects the power consumption way of the end-users via price mechanism. With the help of the peak-valley power price policy, an enterprise working time optimization and benefit analysis simulation system is designed and realized, which can guide the industrial users to optimize and adjust the work time reasonably in the condition of ensuring the total power consumption invariant. Firstly, the two most important constraint factors that influence the system design are analyzed. Then, the realization process of the simulation system is described detailedly. Finally, the system functions are verified by a case analysis. The results show that the system can assist the enterprise to reduce the electricity cost and support the power grid companies to realize the demand side management and peak load shaving through simulating the adjustment of the enterprise work time or the power consumption of a certain period for the simulation analysis the power consumption condition of the enterprise.
Keywords :
cost-benefit analysis; demand side management; optimisation; power consumption; power grids; power markets; power system management; power system measurement; power system simulation; pricing; TOU; benefit analysis simulation system; case analysis; demand side management; electricity cost reduction; enterprise working time optimization simulation system; peak load shaving; peak-valley power price policy mechanism; power consumption; power grid company; simulation analysis; time of use; Analytical models; Electricity; Optimization; Power demand; Power grids; Production; Peak-valley TOU power price; benefit analysis; enterprise working time; simulation system;
Conference_Titel :
Computer Science & Service System (CSSS), 2012 International Conference on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4673-0721-5
DOI :
10.1109/CSSS.2012.406