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Qualitative Analysis of Strategies for the Integration of Renewable Energies in the Electricity Grid

机译:电网中可再生能源集成策略的定性分析

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Solar and wind electricity production with their volatile production patterns, have a high proportion in the renewable electricity production in the target frame of the German "Energiewende". The ratio of secure to non-secure generation capacity will increase to almost 1:1 in the year 2020 and thus further worsen the already existing problems in the integration of renewables into the grid. The consequence will be higher overall electricity supply costs. Solution options for this are grid expansion, more flexible generation in conventional power plants and demand-side control such as smart grids or smart markets. The latter offer rewarding capacities, especially in the heat demand. Although combined heat and power units (CHP) can be used as a flexible, decentralized generation capacity, they have to be linked up and integrated accordingly. The need for flexible generation and balancing power requires additional energy storage. Next to pump storage facilities wind-hydrogen systems or stationary battery storage systems offer solutions to medium and large amounts electricity absorption and reinstate feeding into the grid. Due to the developments status of all these options, an appropriate regulatory framework for the market introduction is needed.
机译:太阳能和风电生产与其挥发性生产模式,在德国“Energiewende”的目标框架中的可再生电力生产中具有高比例。在2020年,对非安全发电容量的安全比率将增加到近1:1,从而进一步恶化了可再生能源进入网格中的已经存在的问题。结果将较高的总电力供应成本。解决方案选项是网格扩展,传统发电厂和需求侧控制中的更灵活的发电,如智能电网或智能市场。后者提供了奖励能力,特别是在热需求中。虽然组合的热量和动力单元(CHP)可用作柔性,分散的发电能力,但它们必须相应地连接和整合。灵活发电和平衡功率的需求需要额外的能量存储。旁边的泵蓄能设施旁边的风 - 氢气系统或固定电池存储系统为中型和大量电力吸收提供解决方案,恢复进入栅格。由于所有这些选项的发展状况,需要一个适当的市场介绍的监管框架。

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