Study on Economic Operation and Optimal Dispatching of VPP

Author:

Song Xinxin,Gui Shunsheng,Shan Chunhong,Wang Shitao,Wang Lulu

Abstract

Abstract Large scale grid-connected wind power will have a great impact on the power grid. In order to ensure the safetyof power grid operation, it is necessary to quickly adjust the load of thermal power plants to stabilize the fluctuation ofwind power output. The economy of thermal power unit is poor in low load operation, and the safety and service life of theunit will be reduced when the load is adjusted frequently. In order to solve the problems, wind and thermal powercomplementarity is proposed, and the wind farm and thermal power plant constitute a virtual power plant (VPP) toparticipate in the grid dispatching. A multi-objective optimal dispatching model of VPP considering economy and rapidity isestablished, which is solved by improving genetic algorithm. The results show that the multi-objective optimal dispatchingmodel can make the economy of VPP the best on the premise of meeting the requirements of grid dispatching time throughthe simulation of differentscenarios. Furthermore, the strategy of selecting the weight coefficient of multi-objectiveoptimization model is given, and the wind power consumption capacity of VPP is analysed.

Publisher

IOP Publishing

Subject

General Engineering

Reference6 articles.

1. Evaluation of the Influence of the Power Fluctuation of the Connected Wind Power on the Power System Frequency;Cui;Acta Energiae Solaris Sinica,2014

2. Influence of Large-scale Wind Power Grid Connection on Power Grid and Solutions;Li;Journal of South-Central University for Nationalities(Natural Science Edition),2017

3. A survey of Virtual Power Plant Research;Hong;Proceedings of the CSEE,2014

4. Virtual Considering the Aggregation characteristics of Air Fire SystemStudy on Economic Dispatch of Power Plant;Liu;Journal of Engineering for Thermal Energy and Power,2017

5. Virtual Environment Considering Demand Response and Multi Energy ComplementationPower Plant Coordination and Optimization Strategy;Wang;Electric Power Construction,2017

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