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Multi-criteria operation strategies of power-to-heat-Systems in virtual power plants with a high penetration of renewable energies

机译:虚拟发电厂中电力系统的多标准运行策略,可再生能量高渗透

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The integration of renewable energy into the existing energy supply system is a core challenge regarding the successful realization of the German "Energiewende". One concept to integrate decentralized regenerative power generators is a virtual power plant that operates many small facilities as one power plant. Essential parts of the concept are controllable loads and generators to reduce the impact of volatile energy resource-like wind power stations-on operational planning. Power-to-Heat-Systems (P2H) are one possible technology that can be used to a limited extent as a controllable load. The P2H-system as a component of virtual power plants is capable of supplying flexibility due to various possible operation strategies. This flexibility can either be used for ancillary services (primary, secondary and tertiary ancillary services), to provide schedule energy or for balancing group management. This paper presents a modeling approach for P2H systems as a component of virtual power plants with a high share of renewable energies. The operation strategies are evaluated with respect to economic and technical aspects and uncertainties in generation and load. The operation strategies of P2H systems are shown with regard to market integration of renewable energies within a virtual power plant and the provision of ancillary services.
机译:可再生能源将可再生能源集成到现有的能源系统中是关于成功实现德国“Energiewende”的核心挑战。一个整合分散的再生发电机的一个概念是一个虚拟电厂,操作许多小设施作为一个发电厂。该概念的基本部分是可控负载和发电机,以减少挥发性能量资源样风电站的影响 - 运营规划。电力 - 热系统(P2H)是一种可能的技术,可用于有限的程度作为可控负载。 P2H系统作为虚拟发电厂的组件能够由于各种可能的操作策略而提供灵活性。这种灵活性可用于辅助服务(主要,次级和三级辅助服务),为计划能源提供或用于平衡组管理。本文介绍了P2H系统的建模方法,作为具有高可再生能量份额的虚拟发电厂的组件。在发电和负荷的经济和技术方面和不确定性方面评估了操作策略。在虚拟电厂内的可再生能源的市场集成以及提供辅助服务的市场集成,显示了P2H系统的运行策略。

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