The ongoing evolution of the Colorado Springs Utilities EMS minimizing the impact on system operation

M. McAvoy, M. Hořeňovský, P. Vogelsang
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引用次数: 1

Abstract

When Colorado Springs Utilities (CSU) purchased their energy management system (EMS), they envisioned a system that would provide for their needs and continue to evolve to meet future requirements. CSU also wanted to be able to keep current with the latest technology and operate their system with minimal staff. The initially purchased EMS provided a distributed architecture which allowed for the planned future expansion to 2500 (generation, transmission, and mostly distribution) RTUs and the addition of processors as required. The desire to keep the system current as new technologies became available is the basis for an ongoing collaboration between CSU and the EMS supplier, which has allowed CSU to incrementally evolve the system to meet all the functional requirements within budget constraints. The first update to the initially designed system was the replacement of the applications processor with high performance workstations, dramatically reducing the cost of maintenance and greatly improving the response time of the advanced power system Applications. At the same time proprietary interfaces were removed, moving the system to a more open architecture. The second update was the replacement of the remaining proprietary communications links and the existing proprietary full graphics display generators with RISC workstations. Major emphasis in the evolution process stressed timely development and testing of the upgrade with collaborative installation planning, which minimized the impact to ongoing operations.
科罗拉多斯普林斯公用事业公司EMS的持续发展将对系统运行的影响降至最低
当科罗拉多斯普林斯公用事业公司(CSU)购买他们的能源管理系统(EMS)时,他们设想了一个能够满足他们需求并不断发展以满足未来需求的系统。CSU还希望能够跟上最新的技术,并以最少的员工操作他们的系统。最初购买的EMS提供了一个分布式体系结构,允许计划中的未来扩展到2500个rtu(发电、传输和主要分布),并根据需要添加处理器。随着新技术的出现,保持系统最新的愿望是CSU和EMS供应商之间持续合作的基础,这使得CSU能够在预算限制下逐步发展系统以满足所有功能需求。最初设计的系统的第一个更新是用高性能工作站替换应用处理器,大大降低了维护成本,并大大提高了先进电力系统应用的响应时间。与此同时,专有接口被移除,将系统转移到更开放的体系结构。第二个更新是用RISC工作站替换剩余的专有通信链路和现有的专有全图形显示生成器。升级过程的主要重点是通过协作安装计划及时开发和测试升级,从而最大限度地减少对正在进行的操作的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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