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Expansion planning model of multi-energy system with the integration of active distribution network

机译:集成主动配电网的多能源系统扩展规划模型

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As an effective pattern to promote efficient use of energy, multi-energy system has become the main focus of development. On the other hand, active distribution network is now also the promoting concept for developing power distribution system, since the active network management technologies can make the network more flexible and controllable. To facilitate and utilize the advantages of both systems, this paper proposes an expansion planning model for multi-energy system integrating active distribution network, natural gas network and energy hub; and the positive impact of active network managements on expanding multi-energy system is originally investigated. With the aim of minimizing the total cost over the planning horizon, this model centers on the optimal determination of the type, location and size of all the infrastructures, where the active network managements are modeled and incorporated. In addition, in order to improve the robustness of the planning results, a probabilistic scenario generation approach is proposed to test the model. In order to solve the proposed mixed-integer nonlinear model, the second order cone programming as well as a modified piecewise linearization approach is applied to convert the original model to a mixed integer second order cone programming model. A multi-energy system (including a modified IEEE 33-node distribution system, a new 23-node gas system and 8 energy hubs) are employed to verify the effectiveness of the prosed model and methods. The simulation results exhibit the superiority of the joint expansion planning model for multi-energy system and the beneficial impact of considering active network management.
机译:作为促进能源高效利用的有效模式,多能源系统已成为发展的主要重点。另一方面,由于有源网络管理技术可以使网络更加灵活和可控,因此有源配电网络现在也成为发展配电系统的推广概念。为了促进和利用两个系统的优势,本文提出了一种将主动配电网,天然气网和能源枢纽相结合的多能源系统扩展规划模型。最初研究了主动网络管理对扩展多能源系统的积极影响。为了最大程度地减少计划范围内的总成本,该模型集中在对所有基础架构的类型,位置和大小进行最佳确定的基础上,对活动网络管理进行建模和合并。此外,为了提高规划结果的鲁棒性,提出了一种概率情景生成方法来测试模型。为了解决所提出的混合整数非线性模型,采用了二阶锥规划以及改进的分段线性化方法,将原始模型转换为混合整数二阶锥规划模型。采用多能源系统(包括改进的IEEE 33节点配电系统,新的23节点燃气系统和8个能源枢纽)来验证所提出模型和方法的有效性。仿真结果显示了多能源系统联合扩展计划模型的优越性以及考虑主动网络管理的有益影响。

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