周欢, 黄婷, 卢世祥, 何光宇, 周意诚, 严正. 面向减排贡献的电碳解耦分摊离散分析理论及计算方法[J]. 中国电机工程学报, 2023, 43(23): 9033-9045. DOI: 10.13334/j.0258-8013.pcsee.221709
引用本文: 周欢, 黄婷, 卢世祥, 何光宇, 周意诚, 严正. 面向减排贡献的电碳解耦分摊离散分析理论及计算方法[J]. 中国电机工程学报, 2023, 43(23): 9033-9045. DOI: 10.13334/j.0258-8013.pcsee.221709
ZHOU Huan, HUANG Ting, LU Shixiang, HE Guangyu, ZHOU Yicheng, YAN Zheng. Discrete Analysis Theory and Calculation Method of Electricity-carbon Decoupling Sharing by Contribution to Carbon Emission Reduction[J]. Proceedings of the CSEE, 2023, 43(23): 9033-9045. DOI: 10.13334/j.0258-8013.pcsee.221709
Citation: ZHOU Huan, HUANG Ting, LU Shixiang, HE Guangyu, ZHOU Yicheng, YAN Zheng. Discrete Analysis Theory and Calculation Method of Electricity-carbon Decoupling Sharing by Contribution to Carbon Emission Reduction[J]. Proceedings of the CSEE, 2023, 43(23): 9033-9045. DOI: 10.13334/j.0258-8013.pcsee.221709

面向减排贡献的电碳解耦分摊离散分析理论及计算方法

Discrete Analysis Theory and Calculation Method of Electricity-carbon Decoupling Sharing by Contribution to Carbon Emission Reduction

  • 摘要: 厘清碳排放权责,建立面向零碳演化的碳排放分析理论和方法体系是电力系统低碳化转型的基础。已有碳排放分析方法侧重于对负荷碳责任的分摊,该文从负荷对新能源消纳贡献角度出发,提出1种面向减排贡献的电碳解耦分摊离散分析理论及计算方法。首先,以提升源荷时序特征的一致性,促进新能源消纳为目标,将碳排放从单时间断面连续分摊扩展到多连续时间断面综合评价,建立适用于多时段、面向过程、实时评价的电碳分摊离散分析基础理论;其次,考虑时段内电源和负荷的时空耦合特性,提出计及新能源消纳贡献的碳排放责任评价机制;最后,基于评价机制建立电碳离散分摊模型,提出潮流与碳流解耦计算方法,实现对碳排放的高效溯源、支路/节点电碳流率的快速求解。算例结果表明,所提出的离散分析理论和计算方法能够实现整体和各环节的碳平衡,具备可行性。此外,与已有分摊方法对比,负荷节点可以在不降低用电总量的条件下,通过用电时序的优化实现减排,促进新能源消纳,验证了方法的合理性和优越性。

     

    Abstract: Clarifying the rights and responsibilities of carbon emissions and establishing a theory and method system for carbon flow distribution in net-zero carbon evolution serve as the foundation for low-carbon transformation and development in the power system.. Existing methods of carbon flow analysis focus on the share of load carbon emission responsibility. This paper proposes a discrete analysis theory and calculation method of carbon flow distribution in power system with spatiotemporal coupling from the perspective of the consumption contribution of load to renewable energy. First, aiming at improving the consistency of time series characteristics between power supply and load, and consumption of renewable energy, the carbon emission is extended from continuous allocation of single time section to comprehensive evaluation of multiple continuous time sections, and a discrete analysis theory is established to analyze carbon flow distribution with multi-period, process-oriented and real-time evaluation. Then, considering the time-space coupling characteristics of power supply and load in the period, a carbon emission evaluation scheme considering the contribution of renewable energy consumption is proposed. Finally, a discrete calculation model of carbon emission flow distribution is established based on the evaluation scheme, and a decoupled calculation method of power flow and carbon emission flow is proposed to achieve efficient traceability of carbon emissions and fast solution of branch/node carbon flow rate. Case study shows that the discrete distribution method proposed can achieve carbon balance of the whole and all links, which proves the feasibility of the theory. In addition, comparing with the existing methods, load nodes can achieve emission reduction without reducing the total power consumption by adjusting the load time sequence, which is conducive to forcing the consumption of renewable energy through carbon constraints. As a result, rationality and superiority of the proposed theory are verified.

     

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