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Joint Expansion Planning of Distributed Generation and Distribution Networks

机译:分布式发电和配电网络的联合扩展规划

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摘要

This paper addresses the multistage expansion planning problem of a distribution system where investments in the distribution network and in distributed generation are jointly considered. Network expansion comprises several alternatives for feeders and transformers. Analogously, the installation of distributed generation takes into account several alternatives for conventional and wind generators. Unlike what is customarily done, a set of candidate nodes for generator installation is considered. Thus, the optimal expansion plan identifies the best alternative, location, and installation time for the candidate assets. The model is driven by the minimization of the net present value of the total cost including the costs related to investment, maintenance, production, losses, and unserved energy. The costs of energy losses are modeled by a piecewise linear approximation. As another distinctive feature, radiality conditions are specifically tailored to accommodate the presence of distributed generation in order to avoid the isolation of distributed generators and the issues associated with transfer nodes. The resulting optimization problem is a mixed-integer linear program for which finite convergence to optimality is guaranteed and efficient off-the-shelf software is available. Numerical results illustrate the effective performance of the proposed approach.
机译:本文解决了配电系统的多阶段扩展计划问题,在该系统中,联合考虑了对配电网络和分布式发电的投资。网络扩展包括馈线和变压器的几种替代方案。类似地,分布式发电的安装考虑了常规发电机和风力发电机的几种替代方案。与通常执行的操作不同,将考虑一组用于发电机安装的候选节点。因此,最佳扩展计划确定了候选资产的最佳替代方案,位置和安装时间。该模型是通过将总成本的净现值(包括与投资,维护,生产,损失和未使用的能源有关的成本)的最小化来驱动的。能量损失的成本通过分段线性逼近建模。作为另一个显着特征,径向条件经过专门调整以适应分布式发电的存在,从而避免了分布式发电机的隔离以及与传输节点相关的问题。由此产生的优化问题是一个混合整数线性程序,该程序可以保证达到最优的有限收敛,并且可以使用有效的现成软件。数值结果说明了该方法的有效性能。

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