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Water-Energy Nexus: A dynamic study of multi-pumps water station powered by grid-connected PV generator

机译:水能Nexus:电网连接PV发电机多泵电站的动态研究

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This paper aims to investigate a full value energy chain using a grid-connected PV (GCPV) generator and a full value water chain meaning by three pumping units, the basic substructures of water-energy nexus. A dynamic study is exploited to elucidate the different operating modes that can be encountered and more enlighten the interdependence in water and energy by exploiting the sustainability in energy-providing to save water. In the side of the GCPV generator, Voltage Oriented Control (VOC) strategy is used to maintain the stability of the voltage DC bus and control the reactive power between the grid and the PV array. The water system is composed of three identical pumping units which make them useful whatever the irradiance. Here, Power-Field Oriented Control (P-FOC) is used in each pumping unit in order to control the absorbed power and the magnetic state of the induction motor coupled to the used centrifugal pump. On that account, by amending the intermittence of the solar irradiance and the needed water volume, the water-energy nexus concept is being more substantial and makes more practically the used system in rural areas and agriculture zones, which in turn represents the most belief ideology in the developed policies.
机译:本文旨在使用网格连接的PV(GCPV)发电机和全价值水链的含义,三种泵送单元,水能Nexus的基本结构。利用动态研究来阐明可以通过利用能源提供的可持续性来阐明水和能量在水和能量中的不同操作模式来阐明。在GCPV发生器的侧面,使用电压导向控制(VOC)策略来维持电压DC总线的稳定性并控制网格和PV阵列之间的无功功率。水系统由三个相同的泵送单元组成,使它们能够有用任何辐照度。这里,在每个泵送单元中使用电源场取向控制(P-FOC),以控制吸收的功率和耦合到使用的离心泵的感应电动机的磁力状态。在该账户中,通过修改太阳辐照度的间歇性和所需的水量,水能Nexus概念更为实质性,并且更实际地制造了农村地区和农业区的二手系统,这反过来代表着最具信念意识形态在发达的政策中。

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