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储能系统技术 储能系统 电池管理系统BMS 多电平 ★ 5.0

面向云电池管理系统的通用数据规范与实时数据流架构

Universal Data Specification and Real-Time Data Streaming Architecture for Cloud-Based Battery Management Systems

语言:

中文摘要

基于云的电动汽车电池管理系统(BMS)及其关联模块化多电平逆变器(MMI)的有效运行依赖于实时数据流。现有数据规范仅适用于固定布线电池配置及长期历史数据存储,难以满足实时需求。本文提出一种标准化数据规范及基于云的架构,支持云BMS的运行数据存储与分析,简化电池数字孪生的实现,并促进电池平台的研发。该规范兼容基于MMI的可重构电池组配置与控制参数,适用于实时数据流。实验数据与分析验证了该规范在云端实时数据传输、状态估计及容错测量方面的有效性。

English Abstract

Effective operation of a cloud-based electric vehicle (EV) battery management system (BMS) and control of associated modular multilevel inverters (MMIs) require real-time streaming of operational data. However, the existing data specifications are only suitable for hard-wired battery configuration and battery testers to store long-term historical data. This article fills this gap by introducing a standard data specification and cloud-based architecture to store and analyze operational data for implementing cloud-based BMS. The approach can simplify the implementation of cloud-based digital twinning of batteries and BMS. The proposed data specification will ease research and development in the battery platform. In addition, the specification can accommodate the configuration and control parameters of MMI-based reconfigurable battery packs and is also suitable for real-time data streaming. The effectiveness of the proposed data specification in cloud-based real-time data streaming as well as state estimation, and the provision of accommodating measurement error is demonstrated through the experimental data and analysis.
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SunView 深度解读

该云BMS数据规范与实时流架构对阳光电源储能产品线具有重要应用价值。针对PowerTitan等大型储能系统,可借鉴其通用数据规范实现电池簇级实时监控与状态估计,提升iSolarCloud平台的数据处理能力。MMI可重构电池组配置思想可应用于ST系列储能变流器的电池接入灵活性优化,支持异构电池组并联运行。实时数据流架构可增强智能诊断模块的故障预警响应速度,结合数字孪生技术实现电池全生命周期管理。该规范对构建阳光电源储能系统云端协同控制架构、提升BMS与PCS数据交互效率具有直接借鉴意义,可推动储能系统向智能化、平台化方向发展。