电网规范合规与管理系统

降低风险并保护投资

利用 ETAP 发电厂控制解决方案最大限度地提高产量并满足输电系统运营商 (TSO) 在连接点 (PoC) 的稳定性和电能质量要求

ETAP 发电厂控制解决方案包括 先进的电气数字孪生模型 ,并结合 智能自动化 (通过 ePPC 发电厂控制器)、 系统监控 (通过模型驱动的 eSCADA™ 平台)和 电网合规性审计 (通过 eTESLA™ 动态系统监控记录器)。



Solutions

端到端解决方案

power plant controller, power plant control, photovoltaic power plant control, photovoltaic power plant controller, power grid stability, photovoltaic power plant, power grid management, power grid, power grid voltage, power factor您的发电厂是一项巨大的投资,需要控制、日常维护和持续洞察,以保持其高效、安全且有利可图的运行。ETAP 发电厂控制解决方案通过精确的自动调节和控制确保优化产量。

ETAP 发电厂控制解决方案利用实际发电厂控制器的数字控制孪生,确保其在各种电网和电厂运行条件下的性能。将设计知识镜像到运营中,确保发电厂平稳运行并减少停机时间。

 

 

 

验证、控制和可视化

综合发电厂控制器和系统监控

智能安全的控制器硬件确保符合当地电网规范和标准

ePPC Controller
ePPC 发电厂控制器和 eSCADA 网络管理

管理与合规

电网合规性监控和报告

对实际操作与预期响应的评估和持续审计

etap_tesla
eTESLA 动态系统监测记录仪

设计与自动化

动态系统建模、验证和自动化

构建、模拟、调整和自动化控制系统的服务

analytic
工程服务


Challenge

设计与运营挑战

可再生能源发电厂是一项巨大的投资,需要控制、日常维护和持续洞察,以保持其高效、安全且有利可图的运行。每种发电资源都具有单独的控制功能,但必须作为一个统一的团体进行协调,以便在互连点 (POI) 上显示为单一来源。

可再生能源的波动性引发了电能质量问题,包括频率和电压控制,这可能会对电力系统的可靠性能产生负面影响。在当今动态的能源发电环境中,发电厂业主需要先进的集成控制解决方案,以满足各种运营合规性和互连标准。



money

解决方案优势

ETAP ePPC 解决方案可保证发电系统运营商的最大收益并有助于公共事业电网的稳定。它能够快速、精确地调节电网馈入点的电压、无功功率、有功功率和功率因数,满足全球电网运营商的要求。ETAP ePPC 允许公用事业规模的发电厂(包括传统发电厂、风能发电厂和太阳能发电厂)满足其现代竞争需求。

  • 确保电力供应的弹性和可靠性
  • 符合电网要求
  • 降低整个规划和运营过程中的风险
  • 完全动态控制,增强稳定性
  • 电力调节和改善电能质量 
  • 利用动态模型提高可靠性
  • 满足投资者对能源收益的期望
  • 准确预测产量和转移能力
  • 运营、维护和合规性审计
  • 更高的透明度和投资安全性

用户/集成商可以调整和定制发电厂控制器逻辑,以满足工厂特定的要求。发电厂控制器逻辑的远程热更新和持续的性能监控可降低维护成本和调试延迟。

 

综合发电厂控制器和 SCADA

智能安全的控制器硬件确保符合当地电网规范和标准。ETAP 发电厂控制器利用模型驱动的电气数字孪生实现可再生能源发电厂的可视化、预测计算、优化和管理。

通过将 PPC 和 SCADA 与专用 HMI 和预测分析应用程序相结合,监控并深入了解资产健康状况,并根据当前和预期情况执行预防性维护。

电网合规性监控和报告

持续监测稳态和动态工厂响应,以调整电气模型、识别发电机/AVR/调速器和控制参数并确认发电厂控制器在实际运行条件下的响应。

eTESLA 硬件和软件解决方案对实际操作与预期响应进行评估和持续审核。将系统运行状况与既定的电网规范进行比较,以进行合规性报告和评估。



ETAP GridCode


ETAP 电网代码

ETAP GridCode 采用先进的电气数字孪生技术,具有自动分析、预测计算、网络优化、验证流程和智能发电厂控制硬件,以确保符合当地电网规范。


精选网络研讨会

查看所有网络研讨会

Red Sea Project - How to Optimize Renewable Plant Control & Power Systems with ETAP for Vision 2030

21:51 Webinars  

This Red Sea Project is a groundbreaking endeavor in Saudi Arabia under the Saudi Vision 2030 economic development program. The project is powered by a fully renewable energy system, including large-scale solar photovoltaic (PV) system and a substantial 1.3 GWh energy storage system, effectively providing 100% clean energy to the development. As the Engineering, Procurement and Construction firm for this project, SEPCOIII has been involved with the design and construction of a wide range of permanent utility assets, including support facilities such as desalination plants, power generation facilities and distribution networks for water, electricity and natural gas. In this presentation, learn how SEPCOIII relied on ETAP's Advanced Distribution Management System (ADMS) to assist with the technology challenges for the project’s distributed energy power system, and how the solution is being used to manage and supervise the power distribution system to achieve better optimizations and improve system stability.

Utilizing ETAP Power Plant Controllers & integrated SCADA for Multi-Area Renewable Energy Systems

16:31 Webinars  
Large power plants are designed and operated to maximize reliability. This is typically done by having multiple points of interconnection and networked configuration. In case of a failure or loss of one point of interconnection, the plant can be reconfigured by closing a coupling breaker and transferring power to another point of interconnection. However, to ensure optimal operation of the power plant, it is important to have a reliable control system that can handle such real-time changes in system configurations. Traditional PLC-based and non model-driven control systems struggle with such real-time changes of the configuration. ETAP Power Plant Controller (ePPC) is a model-driven solution that simplifies the control and management of multi-area power systems. ePPC can handle real-time changes in system configurations, enabling the controller to adjust quickly to any changes in the power network, ensuring optimal operation of the power plant. Additionally, ePPC uses a digital twin concept that allows for easy configuration and simulation of different system setups. The use of the digital twin concept means that any errors can be identified and resolved before implementation, ensuring efficient and effective setup of the power plant. Overall, ePPC offers a valuable solution for controlling multi-area renewable energy systems, providing real-time control with simple setup and reliable operation. 
 
 
 

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