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Online condition monitoring and power management system for standalone micro-grid using FPGAs

机译:使用FPGA的独立微电网在线状态监测和电源管理系统

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摘要

The integration of multiple renewable energy resources to meet the energy needs of the consumers in remote locations with better reliability is a major challenge due to inherent characteristics of available renewable sources namely unpredictability and variability. This requires development of effective micro-grid controllers to manage power balance between load and generation. In this study, a micro-grid controller integrating the output from multiple types of renewable energy conversion systems, namely, wind and solar along with diesel generator as well as battery storage has been developed with source and load control features using field programmable gate arrays (FPGAs). The load controller facilitates load management (switching ON/OFF non-critical loads) based on the generation availability and energy storage capacity. The source controller facilitates source management based on the load requirement and battery status. The various parameters of these different power generation sources and loads are displayed on visual screen using FPGA for online condition monitoring of the micro-grid. It also includes the communication between source and load controllers using Ethernet for exchange of monitored data for a suitable control action. This innovative work has been developed in such a manner that it will be replicable in the field to bring it on the large scale.
机译:由于可用可再生资源的固有特性(即不可预测性和可变性),集成多种可再生能源以更好地满足偏远地区消费者的能源需求是一项重大挑战。这就需要开发有效的微电网控制器来管理负载与发电之间的功率平衡。在这项研究中,已经开发了一种微电网控制器,该控制器将风能,太阳能,柴油发电机以及电池存储等多种可再生能源转换系统的输出集成在一起,并具有使用现场可编程门阵列的电源和负载控制功能( FPGA)。负载控制器基于发电可用性和储能能力,简化了负载管理(打开/关闭非关键负载)。源控制器根据负载需求和电池状态促进源管理。这些不同的发电源和负载的各种参数使用FPGA在线显示在微电网上,并显示在可视屏幕上。它还包括使用以太网的源控制器和负载控制器之间的通信,以交换监视的数据以采取适当的控制措施。这项创新作品的开发方式使其可以在现场复制,以使其规模化。

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