首页> 外文会议>Seventeenth European Photovoltaic Solar Energy Conference >REVERSE OSMOSIS PLANT POWERED BY PV HYBRID SYSTEMS IN HOTEL SECTOR BY USING EUROPEAN INSTALLATION (EIB)
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REVERSE OSMOSIS PLANT POWERED BY PV HYBRID SYSTEMS IN HOTEL SECTOR BY USING EUROPEAN INSTALLATION (EIB)

机译:通过欧洲安装(EIB)在酒店行业中由PV混合系统提供动力的反向渗透植物

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The aim of this paper is to present the study of a reverse osmosis plant powered by a hybrid system that consists of PVs, fuel cells and battery inverter. The work was partially supported by the European Commission, under the Research Directorate General, Non-Nuclear Energy Programme, CRAFT-JOULE JOE3-CT98-7018 "Development of an Energy Management System for Hotels using standard sensor/actuator components and the European Installation Bus". The study is concerned with the creation of a model, which can be used in the hotel sector. The flexibility and modularity of EIB technology and the availability of compatible component by a growing number of large manufacturers are some of its major assets. In a hybrid modular system, electricity generators, such as PV, wind turbines, small hydro, and storage units are coupled on the established single or three-phase AC grid. Compatibility of components is achieved by using EIB standard interfaces. The advantages of this solution are high reliability, simple expandability as well as simple installation, use and maintenance. The application of such energy management systems seems viable for stand-alone and grid connected energy supply systems for one house/user or small communities. The energy supplying units and loads are simply connected to the AC energy grid, as well as to communication bus (twisted pair or power line couplers) via standard EIB interface components. The EIB technology provides the convenience to control and assign tasks to the various components, defining the energy management strategy and the supervision and safety functions. A case study for the installation of a reverse osmosis plant powered by hybrid systems in hotel sector by using European Installation Bus (EIB) is examined in an island hotel in Greece.
机译:本文的目的是介绍由混合动力系统驱动的反渗透设备的研究,该混合系统由光伏电池,燃料电池和电池逆变器组成。这项工作得到了欧洲委员会非核能计划研究总局的部分支持,CRAFT-JOULE JOE3-CT98-7018“使用标准传感器/执行器组件和欧洲安装总线为酒店开发能源管理系统”。该研究与模型的创建有关,该模型可用于酒店部门。 EIB技术的灵活性和模块化以及越来越多的大型制造商对兼容组件的可用性是其一些主要资产。在混合模块化系统中,发电机(例如PV),风力涡轮机,小型水力发电站和存储单元耦合在已建立的单相或三相AC电网上。通过使用EIB标准接口可以实现组件的兼容性。该解决方案的优点是高可靠性,简单的可扩展性以及简单的安装,使用和维护。这种能源管理系统的应用对于一个家庭/用户或小型社区的独立和并网能源供应系统似乎是可行的。能量供应单元和负载可通过标准EIB接口组件简单地连接到AC电网,以及通信总线(双绞线或电力线耦合器)。 EIB技术为控制和分配任务到各个组件提供了便利,定义了能源管理策略以及监督和安全功能。在希腊的一家海岛酒店中,研究了使用欧洲安装总线(EIB)在酒店部门安装由混合系统提供动力的反渗透设备的案例研究。

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