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Deployment of advanced Smart Grid solutions - Global examples lessons learned

机译:部署高级智能电网解决方案-全球示例和经验教训

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Effective deployment of Smart Grid technologies requires well-defined and quantified benefits (full-value definition). Depending on the region, country or specific stakeholder, these benefits can be quantified in the areas of technical and business performance, environmental goals, security of electricity supply, and macro-economic growth and business sustainability development. One of the key components to effectively enable full-value realization is technology-the wide range of technical functionalities and capabilities deployed and integrated as one cohesive end-to-end solution supported by a scalability, interoperability and adaptability approach. Many smart grid projects deploy a wide range of smart grid technologies which are driven by regional, country, or utility specific objectives and requirements. These technologies can be broadly captured under the following areas: (1) Low Carbon: e.g. large-scale renewable generation, distributed energy resources (DER), electric vehicles (EV), carbon capture and sequestration (CCS). (2) Grid Performance: e.g. advanced distribution and substation automation (self-healing); wide-area adaptive protection schemes (special protection schemes); wide-area monitoring and control systems (PMU-based situational awareness); asset performance optimization and conditioning (CBM); dynamic rating; advanced power electronics (e.g. FACTS, intelligent inverters, etc.) and many others. (3) Grid Enhanced Applications: e.g. distribution management systems (DMS); energy management systems (EMS); outage management systems (OMS); demand response (DR); advanced applications to enable active voltage and reactive power management (IWC, CWC); advanced analytics to support operational, non-operational and BI decision making; distributed energy resource management; microgrid and Virtual Power Plant (VPP); work force management; geospatial asset management (GIS); KPI dashboards and advanced visualization; and many others. (4) Customer: e.g. Advanced- Metering Infrastructure (AMI); home/building automation (HAN); energy management systems and display portals; EV charging stations; smart appliances and many others. (5) Cyber Security and Data Privacy (6) Communication and Integration Infrastructure Many smart grid technology areas span across the entire electric grid from generation, through transmission and distribution infrastructure all the way down to a wide array of electricity consumers. The objective of this presentation is to discuss deployment of wide-range of advanced technologies and solutions across many smart grid projects globally. In addition, practical lessons- learned from the deployment and operations will be presented.
机译:有效部署智能电网技术需要明确定义和量化的收益(全值定义)。根据地区,国家或特定利益相关者的不同,可以在技术和业务绩效,环境目标,电力供应安全以及宏观经济增长和业务可持续性发展等方面量化这些收益。有效实现全价值实现的关键要素之一是技术-作为可伸缩性,互操作性和适应性方法支持的一种统一的端到端解决方案,已部署和集成了广泛的技术功能和能力。许多智能电网项目部署了各种智能电网技术,这些技术受区域,国家或公用事业特定目标和要求的驱动。这些技术可以概括为以下领域:(1)低碳:例如大规模可再生能源发电,分布式能源(DER),电动汽车(EV),碳捕集与封存(CCS)。 (2)电网性能:例如先进的配电和变电站自动化(自修复);广域自适应保护方案(特殊保护方案);广域监控系统(基于PMU的态势感知);资产绩效优化和调节(CBM);动态评级先进的电力电子设备(例如FACTS,智能逆变器等)等。 (3)网格增强应用程序:例如分销管理系统(DMS);能源管理系统(EMS);中断管理系统(OMS);需求响应(DR);用于实现有功电压和无功功率管理的高级应用程序(IWC,CWC);先进的分析功能可支持运营,非运营和BI决策;分布式能源资源管理;微电网和虚拟电厂(VPP);劳动力管理;地理空间资产管理(GIS); KPI仪表板和高级可视化;还有很多其他(4)客户:例如先进的计量基础架构(AMI);家庭/楼宇自动化(HAN);能源管理系统和展示门户;电动汽车充电站;智能家电等。 (5)网络安全和数据隐私(6)通信和集成基础架构许多智能电网技术领域从发电到整个输电网,一直贯穿到输电和配电基础设施,一直到各种各样的用电者。本演讲的目的是讨论在全球范围内的许多智能电网项目中部署广泛的先进技术和解决方案。此外,还将介绍从部署和运营中汲取的实践经验。

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