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Holistic Day-Ahead Scheduling Approach for inhomogeneous Pools considering common German Compensation and Cost Structures

机译:考虑通用德国薪酬和成本结构的非均质池的整体提前日调度方法

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In this paper a mixed-integer linear programming optimization approach is introduced, which allows a detailed modelling of various Virtual Power Plants (VPP) consisting of different generation, storage and demand assets with specific operating costs, incentive tariffs, sales channels and usual operation restrictions such as minimum and maximum demand and generation power, load gradients, etc. The assets can thereby be considered as independent units with an own grid access, but can also be assigned to complex grid connection points (GCP) where the units are then utilized to meet local heat and electricity demand, maximize profit and comply to local restrictions. In addition to that it is possible to define soft and hard feed-in and acquisition constraints for the overall VPP energy schedule. To enable the VPP optimization and take into account these three different optimization levels, an accounting method which considers all internal and external usages of energy for each asset is introduced. The simulation results show that the optimization model can effectively find the economically best schedule by varying trading volumes, energy self-sufficiency of single users or exchange of energy within the VPP.
机译:本文介绍了一种混合整数线性规划优化方法,该方法可以对由不同发电,存储和需求资产组成的各种虚拟电厂(VPP)进行详细建模,并具有特定的运营成本,激励电价,销售渠道和通常的运营限制例如,最小和最大需求以及发电功率,负载梯度等。资产可以被视为具有自己的电网访问权限的独立单元,但也可以分配给复杂的电网连接点(GCP),然后再利用这些单元来满足当地的热力和电力需求,最大化利润并遵守当地的限制。除此之外,还可以为整个VPP能源计划定义软,硬馈入和采集约束。为了启用VPP优化并考虑这三个不同的优化级别,引入了一种考虑每种资产的所有内部和外部能源使用情况的会计方法。仿真结果表明,通过改变交易量,单个用户的能源自给自足或VPP内的能源交换,优化模型可以有效地找到经济上最佳的时间表。

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