Journal of Electrical Engineering ›› 2023, Vol. 18 ›› Issue (4): 320-330.doi: 10.11985/2023.04.034
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GENG Yang1(), WANG Hailong2(
), ZHANG Nan3(
), FU Ming2(
)
Received:
2022-11-30
Revised:
2023-08-30
Online:
2023-12-25
Published:
2024-01-12
CLC Number:
GENG Yang, WANG Hailong, ZHANG Nan, FU Ming. Multivariate Load Forecasting for Integrated Energy Systems Based on Error-compensated LSTM-GRU[J]. Journal of Electrical Engineering, 2023, 18(4): 320-330.
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模型 | 负荷 类型 | 工作日 | 休息日 | ||||
---|---|---|---|---|---|---|---|
MAPE(%) | RMSE | ME | MAPE(%) | RMSE | ME | ||
1 | 电负荷 | 0.95 | 431.8 | 270.5 | 1.19 | 502.1 | 327.4 |
热负荷 | 0.80 | 93.9 | 74.1 | 1.01 | 111.1 | 88.9 | |
冷负荷 | 0.99 | 171.5 | 127.3 | 1.17 | 203.5 | 151.7 | |
2 | 电负荷 | 0.95 | 429.5 | 268.0 | 1.19 | 491.5 | 316.7 |
热负荷 | 0.79 | 92.5 | 73.0 | 0.97 | 108.2 | 85.6 | |
冷负荷 | 0.94 | 162.7 | 126.1 | 1.09 | 191.4 | 142.2 | |
3 | 电负荷 | 1.03 | 461.6 | 282.9 | 1.28 | 545.4 | 332.3 |
热负荷 | 0.85 | 99.6 | 77.9 | 1.02 | 116.3 | 93.6 | |
冷负荷 | 0.99 | 171.2 | 135.2 | 1.18 | 206.2 | 157.2 | |
4 | 电负荷 | 1.24 | 508.3 | 323.4 | 1.47 | 586.7 | 383.1 |
热负荷 | 0.93 | 104.1 | 85.8 | 1.08 | 124.6 | 101.8 | |
冷负荷 | 1.09 | 189.3 | 147.7 | 1.37 | 223.3 | 175.6 |
"
模型 | 负荷 类型 | 工作日 | 休息日 | ||||
---|---|---|---|---|---|---|---|
MAPE(%) | RMSE | ME | MAPE(%) | RMSE | ME | ||
5 | 电负荷 | 0.95 | 429.5 | 268.0 | 1.19 | 491.5 | 316.7 |
热负荷 | 0.79 | 92.5 | 73.0 | 0.97 | 108.2 | 85.6 | |
冷负荷 | 0.94 | 162.7 | 126.1 | 1.09 | 191.4 | 142.2 | |
6 | 电负荷 | 2.00 | 781.2 | 565.2 | 2.38 | 856.3 | 663.6 |
热负荷 | 1.32 | 151.4 | 121.8 | 1.57 | 183.5 | 144.2 | |
冷负荷 | 1.39 | 244.8 | 186.5 | 1.68 | 296.6 | 224.6 | |
7 | 电负荷 | 2.96 | 995.6 | 836.7 | 3.48 | 1 188.1 | 993.3 |
热负荷 | 2.66 | 276.8 | 229.3 | 3.18 | 328.6 | 275.5 | |
冷负荷 | 1.71 | 297.8 | 244.2 | 2.04 | 358.5 | 291.0 |
"
模型 | 负荷 类型 | 工作日 | 休息日 | ||||
---|---|---|---|---|---|---|---|
MAPE(%) | RMSE | ME | MAPE(%) | RMSE | ME | ||
10 | 电负荷 | 0.95 | 429.5 | 268.0 | 1.19 | 491.5 | 316.7 |
热负荷 | 0.79 | 92.5 | 73.0 | 0.97 | 108.2 | 85.6 | |
冷负荷 | 0.94 | 162.7 | 126.1 | 1.09 | 191.4 | 142.2 | |
11 | 电负荷 | 0.98 | 453.0 | 284.9 | 1.21 | 548.4 | 344.7 |
热负荷 | 0.99 | 113.8 | 89.0 | 1.18 | 134.1 | 105.7 | |
冷负荷 | 0.99 | 170.7 | 137.7 | 1.17 | 202.2 | 163.4 | |
12 | 电负荷 | 1.33 | 573.6 | 360.3 | 1.60 | 613.5 | 424.0 |
热负荷 | 1.06 | 125.8 | 100.4 | 1.26 | 151.2 | 121.6 | |
冷负荷 | 1.20 | 199.7 | 173.3 | 1.43 | 240.3 | 209.6 |
[1] | 宫飞翔, 李德智, 田世明, 等. 综合能源系统关键技术综述与展望[J]. 可再生能源, 2019, 37(8):1229-1235. |
GONG Feixiang, LI Dezhi, TIAN Shiming, et al. Overview and prospects of key technologies for integrated energy systems[J]. Renewable Energy, 2019, 37(8):1229-1235. | |
[2] | 程浩忠, 胡枭, 王莉, 等. 区域综合能源系统规划研究综述[J]. 电力系统自动化, 2019, 43(7):2-13. |
CHENG Haozhong, HU Xiao, WANG Li, et al. A review of regional integrated energy system planning research[J]. Automation of Electric Power Systems, 2019, 43(7):2-13. | |
[3] |
ZHANG Zhijun, YUE Dong, DOU Chunxia. DMPC based coordinated voltage control for integrated hybrid energy system[J]. IEEE Transactions on Industrial Informatics, 2021, 17(10):6786-6797.
doi: 10.1109/TII.2020.3046633 |
[4] | 朱继忠, 董瀚江, 李盛林, 等. 数据驱动的综合能源系统负荷预测综述[J]. 中国电机工程学报, 2021, 41(23):7905-7923. |
ZHU Jizhong, DONG Hanjiang, LI Shenglin, et al. Overview of data-driven comprehensive energy system load forecasting[J]. Proceedings of the CSEE, 2021, 41(23):7905-7923. | |
[5] | 胡瑞琨, 吴煜宇, 郑豪丰, 等. 综合能源系统整体架构设计及负荷预测[J]. 宁夏电力, 2021(4):9-14,21. |
HU Ruikun, WU Yuyu, ZHENG Haofeng, et al. Integrated energy system overall architecture design and load forecasting[J]. Ningxia Electric Power, 2021(4):9-14,21. | |
[6] | 段成俊. 区域综合能源系统负荷预测和优化调度研究[D]. 镇江: 江苏大学, 2020. |
DUAN Chengjun. Research on load forecast and optimal dispatch of regional integrated energy system[D]. Zhenjiang: Jiangsu University, 2020. | |
[7] |
RENDON-SANCHEZ J F, DE MENEZES L M. Structural combination of seasonal exponential smoothing forecasts applied to load forecasting[J]. European Journal of Operational Research, 2019, 275(3):916-924.
doi: 10.1016/j.ejor.2018.12.013 |
[8] | 刘鑫, 滕欢, 宫毓斌, 等. 基于改进卡尔曼滤波算法的短期负荷预测[J]. 电测与仪表, 2019, 56(3):42-46. |
LIU Xin, TENG Huan, GONG Yubin, et al. Short-term load forecasting based on improved Kalman filter algorithm[J]. Electrical Measurement & Instrumentation, 2019, 56(3):42-46. | |
[9] |
ZHANG Zhijun, ZHANG Yudi, YUE Dong, et al. Economic-driven hierarchical voltage regulation of incremental distribution networks:A cloud-edge collaboration based perspective[J]. IEEE Transactions on Industrial Informatics, 2022, 18(3):1746-1757.
doi: 10.1109/TII.2021.3085670 |
[10] |
WANG Yi, GAN Dahua, ZHANG Ning, et al. Feature selection for probabilistic load forecasting via sparse penalized quantile regression[J]. Journal of Modern Power Systems and Clean Energy, 2019, 7(5):1200-1209.
doi: 10.1007/s40565-019-0552-3 |
[11] |
DING Jia, WANG Maolin, PING Zuowei, et al. An integrated method based on relevance vector machine for short-term load forecasting[J]. European Journal of Operational Research, 2020, 287(2):497-510.
doi: 10.1016/j.ejor.2020.04.007 |
[12] | 谭风雷, 陈梦涛, 汪龙龙. 基于积温效应和优化支持向量机的短期电力负荷预测[J]. 电力需求侧管理, 2018, 20(5):33-36. |
TAN Fenglei, CHEN Mengtao, WANG Longlong. Short-term power load forecasting based on accumulated temperature effect and optimized support vector machine[J]. Power Demand Side Management, 2018, 20(5):33-36. | |
[13] | 李焱, 贾雅君, 李磊, 等. 基于随机森林算法的短期电力负荷预测[J]. 电力系统保护与控制, 2020, 48(21):117-124. |
LI Yan, JIA Yajun, LI Lei, et al. Short-term power load forecasting based on random forest algorithm[J]. Power System Protection and Control, 2020, 48(21):117-124. | |
[14] |
LI Jinghua, WEI Shanyang, DAI Wei. Combination of manifold learning and deep learning algorithms for mid-term electrical load forecasting[J]. IEEE Transactions on Neural Networks and Learning Systems, 2023, 34(5):2584-2593.
doi: 10.1109/TNNLS.2021.3106968 |
[15] |
FARSI B, AMAYRI M, BOUGUILA N, et al. On short-term load forecasting using machine learning techniques and a novel parallel deep LSTM-CNN approach[J]. IEEE Access, 2021, 9:31191-31212.
doi: 10.1109/Access.6287639 |
[16] |
PARIZAD A, HATZIADONIU C. Deep learning algorithms and parallel distributed computing techniques for high-resolution load forecasting applying hyperparameter optimization[J]. IEEE Systems Journal, 2022, 16(3):3758-3769.
doi: 10.1109/JSYST.2021.3130080 |
[17] | 陈锦植, 刘海琼, 梁宏池, 等. 基于LSTM的配电网线路超短期负荷预测方法[J]. 能源工程, 2021(5):66-70. |
CHEN Jinzhi, LIU Haiqiong, LIANG Hongchi, et al. Super short-term load forecasting method of distribution network based on LSTM[J]. Energy Engineering, 2021(5):66-70. | |
[18] | 朱凌建, 荀子涵, 王裕鑫, 等. 基于CNN-BiLSTM的短期电力负荷预测[J]. 电网技术, 2021, 45(11):4532-4539. |
ZHU Lingjian, XUN Zihan, WANG Yuxin, et al. Short-term power load forecasting based on CNN-BiLSTM[J]. Power System Technology, 2021, 45(11):4532-4539. | |
[19] | 王克杰, 张瑞. 基于改进BP神经网络的短期电力负荷预测方法研究[J]. 电测与仪表, 2019, 56(24):115-121. |
WANG Kejie, ZHANG Rui. Research on short-term power load forecasting method based on improved BP neural network[J]. Electrical Measurement & Instrumentation, 2019, 56(24):115-121. | |
[20] | 金山红, 朱想, 赫卫国, 等. 基于相空间重构ARIMA和SVR的母线净负荷预测[J]. 电力需求侧管理, 2018, 20(2):20-24. |
JIN Shanhong, ZHU Xiang, HE Weiguo, et al. Bus net load forecast based on phase space reconstruction ARIMA and SVR[J]. Power Demand Side Management, 2018, 20(2):20-24. |
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