Research on Portfolio Strategies for Low-Carbon Transition Pathways in Electricity-Heat Nexus Systems Incorporating Multi-Device Integrated Systems
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Key Points
The study identifies a configuration that integrates combined heat and power with electric boilers, improving energy efficiency and reducing carbon emissions.
With the introduction of an optimization framework, the evaluation across multiple dimensions points to the enhanced operational flexibility of integrated systems.
Using the Tanimoto coefficient improves similarity measurement for optimal solution selection over conventional methods, leading to better outcomes.
This approach may significantly lower transition costs while increasing renewable energy capacity, highlighting its importance for sustainable energy systems.
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Implication
An integrated optimization framework enhances economic viability and low-carbon performance in energy systems, indicating effective transition pathways.