基于虚拟化技术的印度东北地区电网运行控制中心融合基础设施设计与应用

V. Suresh, M. Ramesh, Sheikh Shadruddin, Tapobrata Paul, Anirban Bhattacharya, A. Ahmad
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引用次数: 0

摘要

现代电网运行需要多个相互关联的应用程序和控制中心的许多自动化过程来监控和运行电网。信息技术与作战技术的融合在电网运行中起着至关重要的作用。这些软件应用对计算资源的需求差异很大,包括高处理应用、高输入/输出(I/O)敏感应用和低资源需求应用。目前电网运行控制中心使用各种应用程序进行负荷调度调度管理,各种实时分析和优化应用程序,调度后分析和报告应用程序等。这些应用程序集成了操作技术(OT),如数据采集系统/能源管理系统(SCADA/EMS),广域测量系统(WAMS)等。本文通过多集群方式整合服务器和存储,讨论了通过虚拟化技术实现融合基础设施的各种设计考虑和实现,以满足应用程序的高可用性需求,实现印度东北地区电网控制中心的预期目标。这个过程包括权衡不同体系结构解决方案的好处、对应用程序主机进行分组、在考虑可靠性和安全性的情况下创建多个集群,以及设计合适的基础设施以满足所有最终目标。可靠性、提高资源利用率、经济因素、存储和物理节点的选择、与OT系统的集成问题以及成本优化是主要的设计考虑因素。本文还阐述了在从现有基础设施迁移和与东北地区负荷调度中心的OT系统集成过程中,减少电网运行关键系统停机时间的方法。
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Design and Application of Converged Infrastructure through Virtualization Technology in Grid Operation Control Center in North Eastern Region of India
Modern day grid operation requires multiple interlinked applications and many automated processes at control center for monitoring and operation of grid. Information technology integrated with operational technology plays a critical role in grid operation. Computing resource requirements of these software applications varies widely and includes high processing applications, high Input/Output (I/O) sensitive applications and applications with low resource requirements. Present day grid operation control center uses various applications for load despatch schedule management, various real-time analytics & optimization applications, post despatch analysis and reporting applications etc. These applications are integrated with Operational Technology (OT) like Data acquisition system / Energy management system (SCADA/EMS), Wide Area Measurement System (WAMS) etc. This paper discusses various design considerations and implementation of converged infrastructure through virtualization technology by consolidation of servers and storages using multi-cluster approach to meet high availability requirement of the applications and achieve desired objectives of grid control center of north eastern region in India. The process involves weighing benefits of different architecture solution, grouping of application hosts, making multiple clusters with reliability and security considerations, and designing suitable infrastructure to meet all end objectives. Reliability, enhanced resource utilization, economic factors, storage and physical node selection, integration issues with OT systems and optimization of cost are the prime design considerations. Modalities adopted to minimize downtime of critical systems for grid operation during migration from the existing infrastructure and integration with OT systems of North Eastern Regional Load Despatch Center are also elaborated in this paper.
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