It appears you don't have support to open PDFs in this web browser. To view this file, Open with your PDF reader
Abstract
Rapid socio-economic development has also brought about problems such as resource depletion and ecological and environmental pollution. Electricity is the most important form of energy supply for human beings, and its production and use are undergoing fundamental changes. This thesis conducts an in-depth study on the source-load interaction scheduling method in new energy power grids., which realizes a safe, economical, low-carbon and environmentally friendly intelligent scheduling mode through two-way interaction between the demand side and the grid. Firstly, the virtual power plant management mode of demand-side resources is studied to achieve new energy consumption through price-based demand response. Second, a safety-constrained unit model for source-load interaction is established. Then, the fuzzy opportunity scheduling model and solution method of the new energy power system under the source-load interaction scheduling mode are studied. Finally, the wide-area source-load interaction scheduling problem under the conservation of energy and reduction of emissions environment is studied, the conservation of energy and reduction scheduling model is proposed and a demand-side standby bidding and scheduling model under the future carbon emission trading is designed.
You have requested "on-the-fly" machine translation of selected content from our databases. This functionality is provided solely for your convenience and is in no way intended to replace human translation. Show full disclaimer
Neither ProQuest nor its licensors make any representations or warranties with respect to the translations. The translations are automatically generated "AS IS" and "AS AVAILABLE" and are not retained in our systems. PROQUEST AND ITS LICENSORS SPECIFICALLY DISCLAIM ANY AND ALL EXPRESS OR IMPLIED WARRANTIES, INCLUDING WITHOUT LIMITATION, ANY WARRANTIES FOR AVAILABILITY, ACCURACY, TIMELINESS, COMPLETENESS, NON-INFRINGMENT, MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE. Your use of the translations is subject to all use restrictions contained in your Electronic Products License Agreement and by using the translation functionality you agree to forgo any and all claims against ProQuest or its licensors for your use of the translation functionality and any output derived there from. Hide full disclaimer
Details
1 State Grid Jilin Electric Power Research Institute , Jilin, China
2 Changchun Institute of Technology , Changchun, China