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Smart Energo Model control system

机译:智能Energo模型控制系统

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Abstract: This contribution deals with modelling of a smart grid with a significant ratio of renewable energy sources. The physical model of an integrated smart grid enables modelling of different control strategies. The grid was designed to test various methods of control, such as an energy efficiency or a utilization of demand response, along with a weather forecast. And it is designed in a way that different variations of the energy transfer occurs. Mainly, it consists of a main grid which is 24 V. Then, there is another part that simulates other backup storage. For example, this storage can be realized as batteries of an electric car. Each part has a different purpose in the grid and it is important to utilize it at the right time. A standard usage is to use only the grid battery and not the unnecessarily relocation of energy. This, however, we can afford only if storage has a sufficient reserve for a specific resource, or if we do not mind that a part of the energy generated by the plant is underutilized. However, we try to avoid it and the grid uses various control principles to prevent this situation. During these transfer may occur many states and one of them is described in this paper. A grid control should maintain approximately the same level of energy in batteries in the real-time.
机译:摘要:此贡献涉及具有相当大比例可再生能源的智能电网的建模。集成智能电网的物理模型可以对不同的控制策略进行建模。网格旨在测试各种控制方法,例如能效或对需求响应的利用以及天气预报。它的设计方式是使能量传递发生不同的变化。主要由24 V主电网组成。然后,还有另一部分模拟其他备份存储。例如,该存储装置可以实现为电动汽车的电池。每个部分在网格中都有不同的用途,因此在正确的时间使用它很重要。一种标准用法是仅使用电网电池,而不使用不必要的能源转移。但是,只有当存储具有足够的特定资源储备,或者我们不介意工厂产生的部分能源未被充分利用时,我们才能负担得起。但是,我们尝试避免这种情况,并且电网使用各种控制原理来防止这种情况。在这些转移过程中,可能会发生许多状态,本文将介绍其中一种状态。电网控制应实时保持电池中的能量大致相同。

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