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Status on the First IEC61850 Based Protection and Control, Multi-Vendor Project in the United States

机译:美国首个基于IEC61850的保护和控制多供应商项目的现状

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The new IEC 61850 substation communication standard is almost two years old. Worldwide, there are already over one hundred substations that have been commissioned and running with this new standard. Several projects in North America have been implemented with IEC 61850 by using products from a single manufacturer. This paper will report on the status of a 500 kV project, which is the first multi-vendor project in the United States to use this new standard. The goal of the project is to utilize the new IEC 61850 standard to its fullest (as practically possible) therefore confirming that the standard is much more than just a communication protocol. Interoperability, one of the major advantages of IEC 61850, will be demonstrated. The focus of the paper is not to describe or explain the theoretical background of the standard itself but rather to show and demonstrate the practical use of an actual multi-vendor project and how the standard applies to protection engineers. In addition, the paper will describe to the relay engineers that an IEC 61850 based system must be considered an integral part of the protection and control system and not just another protocol integration for substation data/automation. The paper will describe the process that was developed and used during this project to configure the IEDs, clients, and the communication infrastructure as defined by the customer. The exchange of IED configuration data between different vendors was achieved by using the IEC 61850 defined substation configuration language (SCL). We will demonstrate how each vendors private tools can export data into a standard format and be integrated into a common product using standard tools as well. The meaning and the purpose of the standard ICD files (IED capability description) and SCD files (substation configuration description) will be explained. One goal of this project is to eliminate or significantly reduce wiring between the relays and between the control house and the breake-rs. The wire reductions are replaced with the communication infrastructure fulfilling the protection and control applications by exchanging IEC 61850 GOOSE messages over Ethernet (e.g. breaker position and protective trips). The paper will also cover test tools and procedures that were used to find and eliminate problems during the integration of the protection & control system and the new IEC 61850 standard. Lessons learned throughout the project will be discussed
机译:新的IEC 61850变电站通信标准已经使用了将近两年。在全球范围内,已经有超过一百个变电站已使用此新标准进行调试和运行。使用单个制造商的产品,已通过IEC 61850在北美实施了多个项目。本文将报告500 kV项目的状态,这是美国第一个使用此新标准的多供应商项目。该项目的目标是最大程度地利用新的IEC 61850标准(在实际可行的情况下),因此确认该标准不仅仅是通信协议。将演示互操作性,这是IEC 61850的主要优点之一。本文的重点不是描述或解释标准本身的理论背景,而是展示和演示实际的多供应商项目的实际使用以及该标准如何应用于保护工程师。此外,本文还将向继电器工程师描述,必须将基于IEC 61850的系统视为保护和控制系统的组成部分,而不仅仅是变电站数据/自动化的另一协议集成。本文将描述在此项目中开发和使用的过程,用于配置IED,客户和客户定义的通信基础结构。通过使用IEC 61850定义的变电站配置语言(SCL),可以实现不同供应商之间IED配置数据的交换。我们将演示每个供应商的专用工具如何将数据导出为标准格式,以及如何使用标准工具将其集成到通用产品中。将解释标准ICD文件(IED功能描述)和SCD文件(变电站配置描述)的含义和目的。该项目的目标是消除或显着减少继电器之间以及控制室和断路器之间的接线。通过在以太网上交换IEC 61850 GOOSE消息(例如断路器位置和保护跳闸)来实现保护和控制应用的通信基础架构取代了电线的减少。本文还将介绍用于在保护与控制系统和新的IEC 61850标准集成过程中发现并消除问题的测试工具和程序。将讨论在整个项目中吸取的经验教训

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