论文标题
需求响应方法考虑了工业园区多种类型的柔性负载
Demand Response Method Considering Multiple Types of Flexible Loads in Industrial Parks
论文作者
论文摘要
随着能源互联网的快速发展,智能电网中灵活负载的比例越来越高。基于需求响应的柔性负载对灵活负载进行建模非常重要。因此,在本文中提出了一种新的需求响应方法,该方法考虑了多个灵活的负载,以使综合需求响应(IDR)资源具有特征。首先,提出了一种物理过程分析扣除额(PPAD)模型,以改善工业园区柔性负载的分类。在各种操作条件下,方案生成,数据点增强和平滑曲线被认为可以增强模型的适用性。其次,鉴于瓦斯恒星产生的对抗网络(WGAN)的强大波动性和较差的建模效应,因此开发了改善的wgan级奖励惩罚(IWGAN-GP)模型,以比传统的wgan获得更快的收敛速度并产生更高质量的样品。最后,共同实施了PPAD和IWGAN-GP模型,以揭示柔性载荷之间的相关程度。同时,构建了一个智能的离线数据库,以应对不同响应方案中非线性因素的影响。已经进行了数值示例,结果证明,在减少负载建模偏差和提高公园负载的响应性方面,所提出的方法明显好于现有技术。
With the rapid development of the energy internet, the proportion of flexible loads in smart grid is getting much higher than before. It is highly important to model flexible loads based on demand response. Therefore, a new demand response method considering multiple flexible loads is proposed in this paper to character the integrated demand response (IDR) resources. Firstly, a physical process analytical deduction (PPAD) model is proposed to improve the classification of flexible loads in industrial parks. Scenario generation, data point augmentation, and smooth curves under various operating conditions are considered to enhance the applicability of the model. Secondly, in view of the strong volatility and poor modeling effect of Wasserstein-generative adversarial networks (WGAN), an improved WGAN-gradient penalty (IWGAN-GP) model is developed to get a faster convergence speed than traditional WGAN and generate a higher quality samples. Finally, the PPAD and IWGAN-GP models are jointly implemented to reveal the degree of correlation between flexible loads. Meanwhile, an intelligent offline database is built to deal with the impact of nonlinear factors in different response scenarios. Numerical examples have been performed with the results proving that the proposed method is significantly better than the existing technologies in reducing load modeling deviation and improving the responsiveness of park loads.