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Hybrid renewable energy systems for household ancillary services

机译:用于家庭辅助服务的混合可再生能源系统

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The development of Hybrid Renewable Energy Systems (HRES) under the Distributed Generation (DG) paradigm is the support for substantial reduction of CO2 emissions and for greater penetration of renewable energy sources. The performance and reliability of HRES depend on the interaction between demand, generation, storage and the energy management strategy. In this study a comparison between two different control strategies is presented. In particular, a Rule Based Control (RBC) strategy has been compared with a more sophisticated Model Predictive Control (MPC) for the management of an HRES for residential applications.Results show that a HRES operating in a connected mode has potential to support grid balancing actions giving economic benefits for both end-users and providers. Moreover, the MPC strategy gives a potential reduction of the unbalanced energy exchange with the grid and a more efficient use of the HRES components. The MPC strategy allows thus for a more effective use of renewable sources if compared with a conventional RBC for a Microgrid of same size, thus allowing for a greater penetration of renewable sources into the energy mix, or equivalently, toward downsizing of storage and programmable source subsystems with economic benefits.
机译:分布式发电(DG)范式下混合可再生能源系统(HRES)的发展为大力减少CO2排放和扩大可再生能源的利用提供了支持。 HRES的性能和可靠性取决于需求,发电,存储和能源管理策略之间的相互作用。在这项研究中,提出了两种不同控制策略之间的比较。特别是,已将基于规则的控制(RBC)策略与用于住宅应用的HRES的更复杂的模型预测控制(MPC)进行了比较。结果表明,以连接模式运行的HRES具有支持网格平衡的潜力为最终用户和提供商带来经济利益的行动。此外,MPC策略可潜在减少与电网的不平衡能量交换,并更有效地使用HRES组件。如果与相同大小的微电网的常规RBC相比,MPC策略因此可以更有效地利用可再生能源,从而允许可再生能源更大程度地渗透到能源结构中,或等效地朝着缩小存储和可编程能源的方向发展子系统具有经济利益。

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