用条件扩散模型生成低压配网真实负载,提升规划与运行可靠性
Coherent Load Profile Synthesis with Conditional Diffusion for LV Distribution Network Scenario Generation
- 基于条件扩散模型,根据元数据和统计信息生成日级有功/无功负荷
- 合成负荷在单个与群体层面均符合电力系统真实特性,验证通过潮流模拟
- 适用于数据不足场景,为区域配电规划提供可信负载场景
低压配电网功率流可见性有限,给规划与阻塞管理带来挑战。传统典型负荷曲线简化了变电站层级的复杂性,现有生成模型虽能逼近负荷形态,但难以刻画变电站间的协同行为,影响高压层级运行分析。随着低碳技术普及,基础负荷估算更难反映负载多样性。为此,提出用于低压配电网变电站层级的条件扩散模型,生成日级有功与无功功率曲线。通过时序与统计真实性指标及潮流建模评估保真度。模型涵盖从无条件到基于元数据与日统计信息的多层级生成能力。结果表明,合成负荷在个体及整体上均具备合理性,且优于基线与先进模型,在子区域配电网络规划与运行中具有实用性。
原文摘要 · Abstract (English)
Limited visibility of distribution network power flows at the low voltage level presents challenges to both distribution network operators from a planning perspective and distribution system operators from a congestion management perspective. More representative loads are required to support meaningful analysis of LV substations; otherwise, such analysis risks misinforming future decisions. Traditional load profiling relies on typical profiles, oversimplifying substation-level complexity. Generative models have attempted to address this through synthesising representative loads from historical exemplars; however, while these approaches can approximate load shapes to a convincing degree of fidelity, analysis of the co-behaviour between substations is limited, which ultimately impacts higher voltage level network operation. This limitation will become even more pronounced with the increasing integration of low-carbon technologies, as estimates of base loads fail to capture load diversity. To address this gap, Conditional Diffusion models for synthesising daily active and reactive power profiles at the low voltage distribution substation level are proposed. The evaluation of fidelity is demonstrated through conventional metrics capturing temporal and statistical realism, as well as power flow modelling. Multiple models are proposed to handle varying levels of data availability, ranging from unconditional synthesis to an informed generation driven by metadata and daily statistics. The results show synthesised load profiles are plausible both independently and as a cohort in a wider power systems context. The Conditional Diffusion model is benchmarked against both naive and state-of-the-art models to demonstrate its effectiveness in producing realistic scenarios on which to base sub-regional power distribution network planning and operations.
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