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Development and application of a model-based collaborative analysis and design framework for microgrid power systems

机译:微电网系统基于模型的协同分析与设计框架的开发与应用

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摘要

Microgrids have been recognised as essential components of the smart grid. However, recent advances on communication, control, and other intelligent techniques have also significantly increased the design complexity of the microgrids. This calls for attention for the microgrid community to be aware of the latest design challenges and develop visionary approaches to re-evaluate the legacy power system design concepts and analysis tools that are currently utilised for microgrid studies. This study proposes a novel model-based analysis and design framework tailored specifically for microgrids based on the concept of model-integrated computing. The proposed framework aims to provide a flexible and extensible integrated environment to facilitate rapid modelling and simulation of microgrids as well as the implementation of other control, analysis, and microgrid design applications. In this study, the authors focus on demonstrating and examining how the adoption of the proposed framework can effectively reduce the duration and costs of the design process, enhance the experience of the end-users, and improve the overall quality and efficiency of the microgrid study activities. Case studies under various microgrid operating scenarios are presented to validate the effectiveness of the proposed framework.
机译:微电网已被认为是智能电网的重要组成部分。但是,通信,控制和其他智能技术方面的最新进展也显着增加了微电网的设计复杂性。这要求微电网社区关注最新的设计挑战,并开发有远见的方法来重新评估当前用于微电网研究的传统电力系统设计概念和分析工具。这项研究提出了一个新颖的基于模型的分析和设计框架,该模型基于模型集成计算的概念专门为微电网量身定制。提议的框架旨在提供一个灵活且可扩展的集成环境,以促进对微电网的快速建模和仿真以及其他控制,分析和微电网设计应用程序的实施。在这项研究中,作者集中于演示和研究采用建议的框架如何有效地减少设计过程的持续时间和成本,增强最终用户的体验以及提高微电网研究的整体质量和效率。活动。提出了各种微电网运行方案下的案例研究,以验证所提出框架的有效性。

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