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Multi-energy Coordinated Optimization for both Supply and Demand Sides of Energy Internet System

机译:能源互联网系统供需双方的多能源协同优化

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The energy Internet based industrial revolution will become the key technical means to promote the transformation and development of China's energy industry. To solve the problem of the randomness of supply and demand in current power system, the theory of synergetic controllability of both supply and demand sides was put forward in this paper. The synergetic optimization model has been established based on the complementary supply network of the electricity and the thermal energy by taking the environmental cost of investment and operation as the optimal objective. The teaching-learning based optimization algorithm (TLBO) was used to solve this multi-objective nonlinear programming model. The test system proves that the proposed model can realize the bilateral collaborative optimization of supply and demand. It shows strong performance and proposes a new idea to solve these energy Internet problems.
机译:基于能源互联网的产业革命将成为推动中国能源产业转型发展的关键技术手段。为解决当前电力系统供需随机性问题,提出了供需双方协同可控性理论。基于电力和热能的互补供应网络,以投资和运营的环境成本为最优目标,建立了协同优化模型。使用基于教学的优化算法(TLBO)来解决此多目标非线性规划模型。测试系统证明,该模型可以实现供需双方的协同优化。它显示出强大的性能,并提出了解决这些能源互联网问题的新思路。

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