학술논문

A Novel, Stable, and Economic Power Sharing Scheme for an Autonomous Microgrid in the Energy Internet
Document Type
article
Source
Energies, Vol 8, Iss 11, Pp 12741-12764 (2015)
Subject
microgrid
energy internet
plug-and-play
multi-objective optimization
integral of time-weighted absolute error
Technology
Language
English
ISSN
1996-1073
Abstract
With a higher penetration of distributed generation in the power system, the application of microgrids is expected to increase dramatically in the future. This paper proposes a novel method to design optimal droop coefficients of dispatchable distributed energy resources for a microgrid in the Energy Internet considering the volatility of renewable energy generation, such as wind and photovoltaics. The uncertainties of renewable energy generation are modeled by a limited number of scenarios with high probabilities. In order to achieve stable and economical operation of a microgrid that is also suitable for plug-and-play distributed renewable energy and distributed energy storage devices, a multi-objective optimization model of droop coefficients compromising between operational cost and the integral of time-weighted absolute error criterion is developed. The optimization is solved by using a differential evolution algorithm. Case studies demonstrate that the economy and transient behavior of microgrids in the Energy Internet can both be improved significantly using the proposed method.