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Generalized Inverse Optimal Power Flow Calculation of Electrothermal Coupled Multi-energy Flow System Contained Ground Source Heat Pump

机译:含地源热泵的电热耦合多能量流系统的广义逆最优潮流计算

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Regional energy Internet is the main trend of energy development in the future. Ground source heat pump (GSHP) is a new hot technology for building energy conservation and environmental protection, and is also an important form of energy supply in regional energy Internet system. In this paper, the electrothermal coupled regional integrated energy system with GSHP is taken as the research object. The detailed modeling and analysis of the GSHP operating in the thermal system are carried out from the operational mechanism. The steady-state model of the electrothermal coupled energy network is established. Based on the generalized inverse matrix theory, the multi-target optimal power flow model and algorithm for regional energy Internet including energy cost minimization and distribution system loss minimization are studied and verified in the coupling case of IEEE 14-node power system and 5-node thermal system simulating. The model and algorithm presented in this paper accurately reflect the operation status of regional integrated energy system, which can take into account multiple operational optimization objectives. The algorithm has good numerical stability and convergence, and the optimization process is a process of optimization of feasible solutions, and each step obtains a more optimal feasible solution of objective function value, which is suitable for real-time system optimization scheduling applications.
机译:区域能源互联网是未来能源发展的主要趋势。地源热泵(GSHP)是建筑节能和环境保护的新热点技术,也是区域能源互联网系统中能源供应的重要形式。本文以具有GSHP的电热耦合区域综合能源系统为研究对象。从运行机理对热力系统中GSHP的运行进行了详细的建模和分析。建立了电热耦合能量网络的稳态模型。基于广义逆矩阵理论,在IEEE 14节点电力系统和5节点电力系统耦合的情况下,研究并验证了包括能源成本最小化和配电系统损耗最小化在内的区域能源互联网多目标最优潮流模型和算法。热系统模拟。本文提出的模型和算法可以准确地反映区域综合能源系统的运行状态,并可以考虑多个运行优化目标。该算法具有良好的数值稳定性和收敛性,其优化过程是对可行解进行优化的过程,每一步都获得了目标函数值的最优可行解,适用于实时系统优化调度应用。

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