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PROCESS BUS TECHNOLOGY - THE FINAL LEAP TOWARDS FULLY DIGITIZED SUBSTATIONS

机译:过程总线技术-向完全数字化的替代品迈进的最后一步

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From the last few years, POWERGRID has been actively adopting Substation Automation Systems (SAS) at Station Level (between control & protection IEDs and HMI), but, the point to point connections between the equipment in the switchyard and control & protection IEDs (Process Level)are still being provided using copper wiring. Although such systems are comparatively better than earlier conventional systems, they still have huge number of point to point copper wire connections between substation equipment and lEDs. Due to which protection engineers are still facing difficulties while trouble shooting and maintaining such systems. To overcome these deficiencies, adoption of Process Bus Technology is a suitable option, which would help in complete digitization. In Process Bus technology, data gathered from equipment (like instrument transformers, circuit breakers, isolators and earth switches) is immediately sampled, digitalized, formatted and transmitted through the process bus LAN to Bay/Unit Level based on an internationally accepted standard (IEC 61850). Following an international standard ensures interoperability between substation equipment of various manufacturers and helps utilities in avoiding systems and solutions which are 'closed' and 'vendor lock-in'in nature. This technology is best utilized when used in conjunction with Non Conventional Instrument Transformers, though, conventional instrument transformers can also be integrated easily. In the first step towards achieving fully digitized substations, POWERGRID has successfully commissioned a demo project on Process Bus Technology along with Optical Current Transformerat POWRGRID's 400 kV Bhiwadi Substation. This paper talks about the evolution of Substation Automation Systems in the context of achieving the aim of fully digitized substations. This paper would also throw some light on the implementation of POWERGRID's Process Bus pilot project.
机译:在过去的几年中,POWERGRID一直在站点级别(控制和保护装置和HMI之间)积极采用变电站自动化系统(SAS),但是,开关站中的设备与控制和保护装置之间的点对点连接(过程仍使用铜线提供水平)。尽管这样的系统比早期的常规系统要好一些,但是它们仍然在变电站设备和LED之间具有大量的点对点铜线连接。由于这种保护,工程师在故障排除和维护此类系统时仍然面临困难。为了克服这些缺陷,采用过程总线技术是一种合适的选择,这将有助于完成数字化。在过程总线技术中,将从设备(如互感器,断路器,隔离器和接地开关等设备)收集的数据立即采样,数字化,格式化并通过过程总线LAN根据国际公认的标准(IEC 61850)传输到托架/单元级别)。遵循国际标准可确保各个制造商的变电站设备之间的互操作性,并有助于公用事业避免本质上“封闭”和“供应商锁定”的系统和解决方案。与非常规仪表变压器一起使用时,该技术是最佳利用方式,但是常规仪表变压器也可以轻松集成。在实现完全数字化变电站的第一步中,POWGRGRID成功地委托了POWRGRID的400 kV Bhiwadi变电站与过程电流技术以及光电流互感器一起进行演示项目。本文在实现完全数字化变电站的目标的背景下讨论变电站自动化系统的发展。本文还将阐明POWERGRID的Process Bus试点项目的实施。

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