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A simulation based feasibility study to satisfy the energy demand of SME production sites by their own multi-source renewable power plants

机译:基于模拟的可行性研究,以满足中小企业生产基地自己的多源可再生能源工厂的能源需求

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The current Energy system faces major changes being transformed from a centralised electricity grid to a distributed, bi-directional oriented smart grid to cope with the desired and on-going integration of renewable energies. This change leads to several technical and socio-economic challenges not only for the energy- and network providers but as well for their customers. To better meet these challenges induced by the changing energy system multifaceted research activities take place - rooted and fed by different disciplines, demonstrating the complex, interdisciplinary multi-level environment [1], [2]. The transition of the energy system goes along with uncertainties for energy consumers and a general unsettledness in the system. Focussing on the federal state of Lower Saxony, which already has a renewable energy generation of 39% [3], this paper addresses the question if the energy demand of small and medium sized production sites (SMEP) can be satisfied completely by renewable energies with regard to their specific characteristics. For this a simulation based self-sufficient energy system is developed consisting of a virtual power plant (VPP) and a consumer (SMEP). This model is used to evaluate the feasibility of self-sufficient energy supply for SMEP in every point in time. It is based on realistic and actual data aiming to have an energy balanced system. Exemplary simulation results for this real case scenario are given. The developed simulation model can also be easily adapted and used for other case studies.
机译:当前的能源系统面临着重大变化,正从集中式电网转变为面向分布式,双向的智能电网,以应对期望的和正在进行的可再生能源整合。这种变化不仅给能源和网络提供商,而且也给他们的客户带来了一些技术和社会经济挑战。为了更好地应对不断变化的能源系统带来的这些挑战,进行了多方面的研究活动-由不同学科植根和养育,展示了复杂的,跨学科的多层次环境[1],[2]。能源系统的过渡伴随着能源消耗者的不确定性以及系统中普遍存在的不确定性。着眼于下萨克森州,该州已经拥有39%的可再生能源[3],本文提出了一个问题,即中小型生产基地(SMEP)的能源需求能否通过可再生能源完全满足考虑到它们的特定特征。为此,开发了基于仿真的自给自足的能源系统,该系统由虚拟电厂(VPP)和用电方(SMEP)组成。该模型用于评估SMEP在每个时间点自给自足的能源供应的可行性。它基于现实和实际数据,旨在建立一个能量平衡的系统。给出了这种实际情况的示例性仿真结果。开发的仿真模型也可以轻松进行调整,并用于其他案例研究。

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