System Overview

The synergistic breakthrough of new energy storage technologies and the hydrogen energy industry chain provides critical support for the transformation of energy systems. The rise of the new ecosystem integrating source, grid, load, storage, hydrogen, ammonia, and methanol signifies that the energy system has entered a new development stage characterized by intelligent regulation and multi-energy complementarity, offering a practical paradigm for building a clean, low-carbon, safe, and efficient modern energy system.

The Source-Grid-Load-Storage-Hydrogen-Ammonia-Methanol Integrated Simulation and Testing System provided by KeLiang Tech features functions including modeling and simulation analysis, chronological production simulation, coordinated control optimization, grid flexibility support, smart energy management, and full-scenario simulation, testing, and verification. It provides technical and platform support for research areas such as simulation modeling, hardware testing, and engineering implementation of integrated source-grid-load-storage-hydrogen-ammonia-methanol systems with high-penetration renewable energy integration.


System Architecture

User Layer: Anchored by intelligent collaborative management, it builds a model foundation through energy digital twins, integrates energy resources such as wind, solar, storage, hydrogen, ammonia, and methanol, and establishes unit-level/multi-unit/system-level hierarchical solutions. This drives energy closed-loop and flexible response in zero-carbon parks, achieving intelligent collaboration and low-carbon operation across the entire "Source-Grid-Load-Storage-Hydrogen-Ammonia-Methanol" chain.

Application Layer: Supporting full-lifecycle management of the Source-Grid-Load-Storage-Hydrogen-Ammonia-Methanol integrated system, encompassing three functional modules: planning and optimization, simulation and testing, and intelligent operation and maintenance. Through multi-dimensional collaborative analysis and closed-loop verification, it ensures safe, stable, and economical operation of the system.

Platform Layer: Integrates core components including chronological production simulation software, planning and design optimization software, modeling and simulation software, real-time simulation management software, and a real-time simulator, combined with controllers under test, power interface equipment, and dynamic simulation equipment, delivering a robust software and hardware platform for simulation, analysis, and testing of Source-Grid-Load-Storage-Hydrogen-Ammonia-Methanol integrated projects.


System Functions

The Source-Grid-Load-Storage-Hydrogen-Ammonia-Methanol Integrated Solution provides customers with functions including chronological production simulation, transient simulation calculation, planning and design optimization, economic analysis and assessment, controller-in-the-loop testing, and system intelligent operation and maintenance. It assists users in enhancing digital and intelligent management capabilities such as collaborative planning and operational optimization, low-carbon and economical dispatch, and real-time control and protection of source-grid-load-storage-hydrogen-ammonia-methanol systems, thereby improving the overall utilization efficiency of the energy system and strengthening the adaptability and flexibility of the power system.

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