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Energy flow optimization method for multi-energy system oriented to combined cooling, heating and power

机译:用于组合冷却,加热和功率的多能量系统的能量流优化方法

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摘要

A modeling framework of a multi-energy system with coordinated supply of combined cooling, heating and power (CCHP) using wind and solar energy is established in this paper. An index of loss of power supply probability and loss of heat supply probability is constructed defining a reliability index for the supply of the specific form of energy. Considering and weighing investment cost, primary energy consumption, carbon dioxide emission and the newly defined energy supply reliability index, an optimization model for capacity allocation of multiple energy sources in a multi-energy system using wind, solar, gas and storage is constructed using Particle Swarm Optimization (PSO) algorithm to solve the optimization problem. The proposed method increases renewable energy generation rate, reduces energy storage capacity and improves energy supply reliability.
机译:在本文中建立了使用风能和太阳能的组合冷却,加热和功率(CCHP)协调供应的多能量系统的建模框架。构造了电源概率损失和供热概率损失的指标,用于提供特定的能量形式的可靠性指标。考虑和称重投资成本,初次能耗,二氧化碳排放和新定义的能源供应可靠性指数,使用风,太阳能和储存在多能源系统中的多能源容量分配的优化模型,是使用颗粒构建的群优化(PSO)算法解决优化问题。所提出的方法增加可再生能源产生速率,降低了能量存储容量并提高了能量供应可靠性。

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