首页> 外文会议>2017 IEEE 7th Annual International Conference on CYBER Technology in Automation, Control, and Intelligent Systems >Architecture and Application of Real-time Co-simulation Platform for Cyber-physical Power System
【24h】

Architecture and Application of Real-time Co-simulation Platform for Cyber-physical Power System

机译:网络物理电力系统实时协同仿真平台的架构与应用

获取原文
获取原文并翻译 | 示例

摘要

With the development of smart grid technology, the observability and controllability of power system are extremely enhanced, promoting traditional power system transformed into a emerging system: cyber-physical power system (CPPS). The procedures of information collection, transmission and process have more effects on power system business. The real-time co-simulation platform of CPPS can provide technical support for the researches of the related theories and applications. In this paper, the existing co-simulation schemes and corresponding structures are analyzed. The essential difference between mathematical models of power flow and information flow makes it necessary to build a real-time co-simulation platform. Based on power system simulation tool RT-LAB and communication system simulation tool OPNET, a real-time co-simulation platform for CPPS was proposed with originally developed data transmission interface and conversion module. Furthermore, to extend the functions and accuracy of the platform, dynamic simulated devices are accessed to form a mixed-signal cosimulation platform, which is capable of simulating the dynamic characteristics of system precisely with high speed. Finally, a case study of voltage control in photovoltaic stations demonstrates the reasonability and validity of the platform.
机译:随着智能电网技术的发展,电力系统的可观察性和可控性得到极大提高,从而推动了传统电力系统向新兴系统的转变:网络物理电力系统(CPPS)。信息收集,传输和处理过程对电力系统业务的影响更大。 CPPS实时协同仿真平台可以为相关理论和应用的研究提供技术支持。本文分析了现有的协同仿真方案和相应的结构。潮流和信息流的数学模型之间的本质区别使得有必要构建一个实时的协同仿真平台。基于电力系统仿真工具RT-LAB和通信系统仿真工具OPNET,提出了一种CPPS实时协同仿真平台,该平台具有原始开发的数据传输接口和转换模块。此外,为扩展平台的功能和准确性,访问动态仿真设备以形成混合信号协同仿真平台,该平台能够高速精确地仿真系统的动态特性。最后,以光伏电站电压控制为例,证明了该平台的合理性和有效性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号