微电网能源管理系统设计的数字孪生:基于TalTech校园项目的实现实例

T. Korõtko, Younes Zahraoui, A. Rosin, H. Agabus
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引用次数: 0

摘要

需要创新的解决方案来维持能源生产和需求之间的平衡,以实现电力系统和微电网的预期效率。随着信息和通信技术的最新进展,提供基于大数据分析、机器学习(ML)和物联网技术的能源解决方案服务,数字双胞胎(DT)的概念已经被引入,作为一种可构建的主动模型,以提高微电网的安全性和弹性。DT微电网具有虚拟实时仿真、物理控制和持续监测等优点,是一种可靠、经济的微电网技术。此外,dt可以预测未来的性能、能源消费者的行为和复杂系统的维护。本文介绍了一个综合框架,用于将DT应用于与控制系统交互的微电网,以确保其信息安全和正常运行。与文献中的其他DT框架不同,该框架是为当地能源社区提出的。在分布式网络系统上对该框架进行了测试。实施测试表明,TalTech DT系统适用于开发和验证电力系统应用。
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Digital Twins for Designing Energy Management Systems for Microgrids: Implementation Example Based on TalTech Campulse Project
Innovative solutions are required to sustain the balance between energy generation and demand to achieve the desired efficiency in the power system and microgrid. With the recent advances in information and communication technologies that provide energy solution services based on big data analytics, machine learning (ML), and IoT technologies, the concept of digital twins (DT) has been introduced as a constructible active model to improve the security and resiliency of the microgrid. The DT is a reliable and economic microgrid technology considering its advantages of virtual real-time simulation, physical-based control, and constant monitoring. Moreover, DTs can predict future performance, energy consumers' behaviour, and a complex system's maintenance. This paper introduces a comprehensive framework for adapting the DT into applying a microgrid that interacts with the control system to ensure its information security and proper operation. Unlike other DT frameworks in the literature, the proposed for the local energy community. The framework was tested on a distributed network system. The implementation test concluded that the TalTech DT system is applicable for developing and validating power system applications.
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