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直流微电网通信与控制系统性能评估的全局信息物理方法
Holistic Cyber-Physical Approach for the Performance Evaluation of Communication and Control Systems in DC Microgrids
| 作者 | Antonio Véliz · René Contreras · Sebastián Riffo · Carlos Restrepo · Alejandro Garcés-Ruiz · Andrii Chub |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年4月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | SiC器件 微电网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 直流微电网 二次控制策略 通信协议 控制效率 协议选择 |
语言:
中文摘要
针对直流微电网(MG)分布式发电单元、储能系统和负载的分层控制稳定性和效率需求,研究不同通信协议下二级控制策略的实施和分析。采用信息物理平台评估I2C、CAN总线、蓝牙和ESP-NOW等协议下集中式和分布式控制方案的性能。结果显示通信延迟和控制效率存在显著差异,I2C和ESP-NOW在分布式控制中性能优越,蓝牙更适合集中式策略。研究为未来直流微电网部署提供协议选择的实验验证和对比分析指导。
English Abstract
Advancements in power electronics and renewable energy systems drive the increasing interest in DC microgrids (MGs). These microgrids integrate distributed generation units (DGUs) with storage systems and loads, requiring robust hierarchical control systems to ensure operational stability and efficiency. This study focuses on implementing and analyzing secondary control strategies in DC microgrids that operate under different communication protocols. The considered control strategies have been demonstrated to be adequate solutions for the hierarchical control of microgrids. However, most studies overlook how the communication system influences efficiency. Therefore, a cyber-physical setup is utilized to evaluate the performance of centralized and distributed control schemes using protocols such as I2C, CAN Bus, Bluetooth, and ESP-NOW. The results reveal significant differences in communication delays and control efficiency, with I2C and ESP-NOW demonstrating superior performance in distributed controls, while Bluetooth was more suitable for centralized strategies. The findings underscore the importance of selecting appropriate communication technologies to optimize microgrid stability and response under real-world conditions. This research provides experimental validation and comparative analysis to guide protocol selection for future DC microgrid deployments.
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SunView 深度解读
该信息物理融合评估技术对阳光电源微电网和储能系统的通信架构设计有重要参考价值。不同协议的性能对比可指导ST储能系统和PowerTitan大型储能电站的通信方案选型,优化控制效率和稳定性。I2C和ESP-NOW在分布式控制中的优势对阳光电源智能微电网解决方案的边缘计算和本地控制策略有启发。该研究对iSolarCloud云平台与现场设备的协议优化和时延管理有实践指导意义。