首页> 外文会议>2011 IEEE 33rd International Telecommunications Energy Conference >Grid-connected PV-wind-fuel cell hybrid system employing a supercapacitor bank as storage device to supply a critical DC load
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Grid-connected PV-wind-fuel cell hybrid system employing a supercapacitor bank as storage device to supply a critical DC load

机译:并网光伏-风-燃料电池混合系统,采用超级电容器组作为存储设备,以提供关键的直流负载

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In this work a grid-connected renewable energy system composed by a 1kW photovoltaic (PV) array and a 1 kW wind turbine (WT) is presented. The generated power from each renewable source is processed by independent dc-dc converters and provided to a common dc bus. Once batteries employment is not desired, a 1.2 kW fuel cell (FC) and a supercapacitor bank (SCB) are used as backup, in order to keep a dc critical load continuously supplied. The SCB operates as a short term storage device and its use also ensure the 120 Hz voltage ripple attenuation. From proper process, the dc bus power is delivered to the main grid with high power factor. This paper presents all theoretical analysis referring the proposed system, including the MPPT strategies for PV and WT generators and the control strategies for the system operation on grid-connected and stand alone modes. A complete power flow study is also presented, considering several combinations of power generation and load demand. Simulation results, obtained by the use of PSIM software, are accomplished in order to validate the system operation.
机译:在这项工作中,提出了一个由1kW光伏(PV)阵列和1 kW风力涡轮机(WT)组成的并网可再生能源系统。每个可再生电源产生的功率均由独立的DC-DC转换器处理,并提供给公共DC总线。一旦不需要使用电池,则将1.2 kW燃料电池(FC)和超级电容器组(SCB)用作备用电池,以保持直流关键负载的持续供应。 SCB用作短期存储设备,其使用还可以确保120 Hz的电压纹波衰减。通过适当的过程,直流母线电源将以高功率因数传输到主电网。本文介绍了所有与所建议系统相关的理论分析,包括用于PV和WT发电机的MPPT策略以及在并网和独立模式下系统运行的控制策略。还提出了完整的潮流研究,其中考虑了发电和负载需求的几种组合。通过使用PSIM软件获得的仿真结果已完成,以验证系统操作。

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