AMI在线支持系统的新设计

Wu Shaocheng, Ma Yue, Liang Honghao, Chen Xiaowei, Huang Wenqian, Li Xiang
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引用次数: 0

摘要

随着数字电网的建设与发展和海量用电数据的产生,如何实现多业务应用统一计量数据的采集与管理,优化先进计量基础设施(Advanced metering infrastructure, AMI)的控制方式成为当前研究的热点。在此基础上,设计了一个跨安全区域的统一AMI系统,利用数字孪生辅助信息系统作为支撑系统,模拟多业务数据模型。通过对数字孪生辅助信息系统对模型运行结果的综合分析,采集系统能够实时掌握应用系统的需求,从而动态调整采集频率。并在深圳市供电局测量中心对该系统进行了现场运行测试,验证了该系统具有秒级数据采集能力。以负荷预测和现货交易业务为例,以预测精度和购电成本为指标,对模拟结果进行了分析,以调整收费期间隔。最后确定当采集频率为1分钟时,能满足负荷预测平均绝对百分比误差小于1%的指标。同时,电商的购买成本偏差远小于标准规定的2%误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Design about AMI's Online Supporting System
With the construction and development of digital grid and the generation of massive electricity consumption data, how to achieve the collection and management of unified metering data from multi-service applications and to optimize the control method of Advanced metering infrastructure (AMI) has been a hotspot of current research. Herein, a unified AMI system across security zones was designed, which used the digital twin auxiliary information system as a supporting system to simulate a multi-service data model. With the comprehensive analysis of the digital twin auxiliary information system to the running results from the model, the collection system could grasp the needs of the application system in real time, thereby dynamically adjusting collection frequency. Furthermore, field running test on this system was carried out in the Measurement Center of Shenzhen Power Supply Bureau, and it verified that the system had the ability to collect data in seconds. the simulation results were analyzed to adjust collection time interval taking load forecasting and spot trading business as examples, using forecast accuracy and power purchase cost as indicators. Finally, it is determined that when the collection frequency is one minute, it could meet the indicator that the average absolute percentage error of load forecast was less than 1%. And in the meantime, the purchase cost deviation of the electricity sellers was much smaller than the 2% error specified by the standard.
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