Process Interface Units (PIU) and its advantages for Full Digital Substations

A. O. Pires, Hector Leon, Leandro de Marchi Pintos, Patrick Montaner, C. Teoh, Rajesh Ananth
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Abstract

In the context of full digital substations, which includes the capability to exchange voltage and current data in between IEDs in real time over network through Sampled Values protocol, the substations started to be segmented into process and station level, in which interface IEDs, usually responsible to digitize binary and analog data or to Interact directly with primary equipment are now positioned on the yard, cumulating advantages related to cable reduction, civil infrastructure, cost, simpler installation and safer when using fibre optic.A study based on comparison of hypothetical devices with market standard characteristics is presented to analyze quantitative and qualitative advantages for full digital substation architectures based on multiple IEDs against a single PIU as interface for primary equipment. It is also presented how PIUs can be logically modelled using the base concepts of the IEC61850 standard to segregate functions into logical devices and allowing to decouple logical and physical devices, simplifying architectural decisions for both cases.It is concluded that PIU as single interface IED has advantages as smaller footprint and cost and higher system reliability. All mentioned advantages are maximized when the substation architecture considers redundancy of devices, common for critical parts of the electrical system, pointing the use of PIUs as a tendency for modern full digital substations..
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全数字化变电站的过程接口单元(PIU)及其优点
在全数字化变电站的背景下,变电站包括通过采样值协议在网络上实时交换ied之间的电压和电流数据的能力,变电站开始分为过程级和站级,其中接口ied通常负责数字化二进制和模拟数据或直接与初级设备交互,现在位于院子里,积累了与电缆减少,民用基础设施,成本,安装更简单,使用光纤更安全。通过对具有市场标准特性的假设设备的比较研究,分析了基于多个ied的全数字化变电站体系结构与单一PIU作为一次设备接口相比的定量和定性优势。还介绍了如何使用IEC61850标准的基本概念对piu进行逻辑建模,以将功能分离到逻辑设备中,并允许将逻辑和物理设备解耦,从而简化了两种情况下的体系结构决策。结果表明,PIU作为单接口IED具有占地面积小、成本低、系统可靠性高等优点。当变电站架构考虑设备冗余时,所有提到的优势都最大化,这对于电气系统的关键部分很常见,指出使用piu是现代全数字化变电站的趋势。
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