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ETAP ??? ?? ???? ???? ???? ????? ?? ??(PoC)?? ?? ??? ???(TSO)? ??? ? ?? ?? ?? ??? ??? ? ????.

ETAP ??? ?? ????? ePPC ??? ????? ?? ??? ???? ??? ?? ?? ??? ?? ??, ?? ?? eSCADA ???? ?? ??? ????, eTESLA ?? ??? ???? ???? ?? ??? ?? ??? ?????.



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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???? ????? ???? ??? ?? ???? ?? ??, ???? ???? ? ???? ???? ??? ??? ?????. ETAP ??? ?? ???? ??? ?? ?? ? ??? ?? ???? ??? ?????.

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ePPC Controller
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ETAP ePPC ???? ?? ??? ????? ?? ??? ???? ?? ???? ???? ???? ?????. ? ??? ??, ????, ????, ??? ??? ?? ??? ??? ??? ???? ??? ? ?? ???? ? ?? ??? ???? ?? ??? ?????. ETAP ePPC? ???? ?? ???, ?? ???, ??? ???? ??? ??? ???? ??? ??? ?? ??? ??? ? ????.

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PPC? SCADA? ?? HMI ? ?? ?? ??????? ???? ?? ??? ?????? ???? ?? ?? ? ?? ??? ?? ??? ?? ??? ?????.

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ETAP GridCode


ETAP ?????

ETAP GridCode? ???? ??, ?? ??, ???? ???, ?? ????, ??? ??? ?? ????? ?? ???? ?? ??? ??? ???? ?? ??? ?? ??? ?????.

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.

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. 

14:24 Webinars  
The ETAP/ePHASORSIM hybrid power system solution is ideally suited for installing and certifying any new device on the grid for protection, monitoring and control, thus reducing risk and costly commissioning time—as well as validation of reliability and security of any transmission, distribution and generation grid before implementation. Users can simulate SIL and HIL scenarios in real time, greatly reducing time-to-market. We will demonstrate the time-savings and value of this solution by exporting an ETAP model to ePHASORsim and controlling it in closed-loop with ETAP’s controller hardware.  To fine-tune the response, we will change the ETAP model, export again, the re-start the simulation—a cycle commonly observed in testing environments. 

1:10:36 Webinars  
The webinar shows how ePPC leverages an electrical digital twin from design to validation and automation of renewable power plants for maximum yields and stability of the grid.
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