Research on Electricity Balance and Measurement Optimization of New Energy Power System Considering Renewable Energy Consumption Mechanism

Zhihao Guo, Yongzhi Cai, Sheng Huang, Zeming Jiang, KeFei Guan
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Abstract

With the rapid development of renewable energy, the new energy power system is facing the challenge of large-scale grid connection and consumption of renewable energy. In order to achieve efficient utilization and stable power supply of renewable energy, this study proposes a renewable energy consumption mechanism based on optimization methods. By establishing a power and electricity balance model, consider the relationship between different types of renewable energy generation and electricity demand. Various optimization strategies have been proposed for energy consumption issues in different scenarios, including power generation scheduling, energy storage optimization, and flexible load management. Validate the effectiveness of the proposed mechanism in terms of electricity balance and metering optimization through a model. The experimental results indicate that this mechanism can effectively enhance the renewable energy consumption capacity of the new energy power system, reduce energy waste, promote energy cleanliness and sustainable development, and has certain theoretical and practical significance for promoting the sustainable development of the new energy power system and responding to energy transformation.
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考虑可再生能源消纳机制的新能源电力系统电力平衡与计量优化研究
随着可再生能源的快速发展,新能源电力系统面临着可再生能源大规模并网和消纳的挑战。为实现可再生能源的高效利用和稳定供电,本研究提出了基于优化方法的可再生能源消纳机制。通过建立功率和电力平衡模型,考虑不同类型可再生能源发电和电力需求之间的关系。针对不同场景下的能源消耗问题,提出了多种优化策略,包括发电调度、储能优化和灵活的负荷管理。通过模型验证所提机制在电力平衡和计量优化方面的有效性。实验结果表明,该机制能有效提升新能源电力系统的可再生能源消纳能力,减少能源浪费,促进能源清洁化和可持续发展,对促进新能源电力系统可持续发展、应对能源转型具有一定的理论和实践意义。
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