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Effectiveness and Comparison of Digital Substations Over Conventional Substations

机译:数字变电站与常规变电站的有效性和比较

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The entire electrical system is changing at an abrupt speed since its beginning. With the rapid advance of renewable energies (which are constantly subject to fluctuations), the electricity generation is distributed to countless locations. The traditional model of the unidirectional flow of electricity is leaning towards multidirectional flows. This situation needs significant changes in the transport infrastructure of the electrical power system and mode of operation. Technological advancements are making a smarter and more organized management system of electricity supply and demand. This development needs to incorporate modern communication, monitoring, and control capabilities, along with the intelligent transport, generation, and storage value chain. Digital substations integrate thousands of sensors by providing greater comfort, self-reliance, availability, and safety while at the same time reducing costs, risks, and environmental damage. Conventional power system lacks digital communication, remote monitoring & control, and consumer participation. Fiber-optic cabling in digital substations will attain not only real-time data transmission but also remote maintenance. The comparison between conventional and digital substations has also been presented in this work along with latest trends in smart protection. Electronic protection and control devices based on a microprocessor, communicating with cloud servers, will enhance the flexibility to control and monitor the digital substations. A significant amount of data generated by components in the electrical substations will allow greater sophistication of the monitoring, diagnostic, protection and optimization capabilities of the facilities. The goal for the review of said advancements is to have a smart electrical system with greater efficiency and better user experience.
机译:自开始以来,整个电气系统都在以惊人的速度变化。随着可再生能源的迅速发展(不断受到波动的影响),发电被分配到了无数个地方。电力单向流动的传统模型倾向于多向流动。这种情况需要对电力系统的运输基础设施和操作模式进行重大更改。技术的进步使电力供应和需求管理变得更加智能和更加组织化。这种发展需要整合现代化的通信,监视和控制功能,以及智能的运输,生成和存储价值链。数字变电站通过提供更大的舒适性,自力更生,可用性和安全性而集成了数千个传感器,同时降低了成本,风险和环境破坏。常规电源系统缺乏数字通信,远程监控和控制以及用户参与。数字变电站中的光纤布线不仅可以实现实时数据传输,还可以实现远程维护。这项工作还介绍了常规变电站和数字变电站之间的比较以及智能保护的最新趋势。与云服务器通信的基于微处理器的电子保护和控制设备将增强控制和监视数字变电站的灵活性。由变电站中的组件生成的大量数据将使设施的监视,诊断,保护和优化功能更加先进。审查上述进展的目的是要拥有一个效率更高,用户体验更好的智能电气系统。

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