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Development and prototype validation of a novel Bidirectional Intelligent Conversion and Connection Unit (BICC) for grid-connected photovoltaic-storage systems

机译:用于并网光伏存储系统的新型双向智能转换和连接单元(BICC)的开发和原型验证

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This paper presents studies and the implementation of a novel grid-connected PV system with storage. The goal of this project is to validate the operation and to determine the benefits and limitations of integrating storage with grid-connected PV systems. The objective is to evaluate the viability of using complementary electricity storage for meeting the local evening peak demands - “night-time peak shaving” in a typical load curve of CEMIG's feeder. A novel and versatile control unit-the Bidirectional Intelligent Conversion and Connection Unit (BICC)-has been developed to control the flow of energy from the electricity sources (i.e., PV generator, battery bank, and electric-power grid). In designing this electronic system, we adopted a topology in which the inverter and the maximum power tracking (MPPT) optimize the available power by incorporating two separate and independent converters. In the first phase of the project, a prototype of the system that includes PV with storage and the BICC unit has been installed at GREEN Solar-IPUC in PUC Minas and been under test to evaluate its performance. These trials have been used to optimize system parameters in order to improve the BICC and its interfacing parameters and ensure safe operation of PV-storage system with the grid. This paper reports on the design and advantages of the BICC, the procedures used in the parameter optimization of the prototype, the effectiveness of the BICC in improving the control and connection, conformity to standards, and the viability of scale up for the second phase testing connected to the electric grid (for the utility CEMIG) with storage at the football stadium, Arena do Jacare, located in Sete Lagoas, Minas Gerais.
机译:本文介绍了一种新型的带有存储的并网光伏系统的研究和实现。该项目的目的是验证操作并确定将存储与并网光伏系统集成的好处和局限性。目的是评估使用补充电力存储来满足当地夜间高峰需求的可行性,即在CEMIG馈线的典型负载曲线中实现“夜间夜间削峰”。已经开发出新颖且通用的控制单元-双向智能转换和连接单元(BICC),以控制来自电源(即PV发电机,电池组和电网)的能量流。在设计该电子系统时,我们采用了一种拓扑结构,其中逆变器和最大功率跟踪(MPPT)通过合并两个独立的转换器来优化可用功率。在该项目的第一阶段,已在PUC Minas的GREEN Solar-IPUC安装了一个系统原型,该系统包括带存储功能的PV和BICC单元,并且正在接受测试以评估其性能。这些试验已被用于优化系统参数,以改善BICC及其接口参数,并确保光伏储能系统与电网安全运行。本文报告了BICC的设计和优势,原型参数优化中使用的过程,BICC在改善控制和连接方面的有效性,符合标准以及在第二阶段测试中扩大规模的可行性。连接到电网(用于公用事业CEMIG),并在位于米纳斯吉拉斯州Sete Lagoas的Arena Arena Jacare足球场中进行存储。

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