Journal of Shanghai Jiao Tong University ›› 2023, Vol. 57 ›› Issue (4): 495-504.doi: 10.16183/j.cnki.jsjtu.2022.018
Special Issue: 《上海交通大学学报》2023年“新型电力系统与综合能源”专题
• New Type Power System and the Integrated Energy • Previous Articles
XIONG Lei, MIAO Yurun, FAN Xinzhou, YAO Ye()
Received:
2022-01-24
Revised:
2022-03-28
Accepted:
2022-05-05
Online:
2023-04-28
Published:
2023-05-05
CLC Number:
XIONG Lei, MIAO Yurun, FAN Xinzhou, YAO Ye. Energy-Saving Control of Central Air-Conditioning System Based on an Improved-SSA[J]. Journal of Shanghai Jiao Tong University, 2023, 57(4): 495-504.
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URL: https://xuebao.sjtu.edu.cn/EN/10.16183/j.cnki.jsjtu.2022.018
Tab.2
Comparison of test function optimization results of ISSA
测试函数 | ISSA1 | ISSA2 | ISSA | |||||
---|---|---|---|---|---|---|---|---|
平均值 | 标准差 | 平均值 | 标准差 | 平均值 | 标准差 | |||
F1 | 4.81×10-14 | 1.52×10-13 | 1.09×10-16 | 2.93×10-16 | 1.72×10-16 | 8.11×10-16 | ||
F2 | 5.78×10-6 | 1.34×10-5 | 5.97×10-8 | 1.60×10-7 | 2.86×10-7 | 9.22×10-7 | ||
F3 | 1.25×10-11 | 4.12×10-11 | 3.19×10-12 | 8.58×10-12 | 9.38×10-16 | 5.1×10-15 | ||
F4 | 6.55×10-8 | 1.64×10-7 | 1.96×10-8 | 6.41×10-8 | 5.76×10-9 | 1.85×10-8 | ||
F5 | 1.06×10-7 | 1.79×10-7 | 1.04×10-9 | 1.10×10-9 | 6.47×10-10 | 5.67×10-10 | ||
F6 | 4.20×10-6 | 6.38×10-6 | 4.83×10-7 | 4.32×10-7 | 7.47×10-7 | 8.02×10-7 | ||
F7 | 4.24×10-17 | 2.09×10-16 | 6.63×10-19 | 2.68×10-18 | 6.85×10-18 | 3.19×10-17 | ||
F8 | 3.52×10-10 | 1.31×10-9 | 8.19×10-13 | 2.41×10-12 | 5.55×10-13 | 1.68×10-12 | ||
F9 | 3.01×10-14 | 1.05×10-13 | 4.91×10-14 | 1.25×10-13 | 2.75×10-11 | 9.29×10-11 | ||
F10 | 3.74×10-16 | 1.09×10-15 | 1.47×10-14 | 5.49×10-14 | 3.70×10-18 | 1.34×10-18 | ||
F11 | 1.68×10-6 | 3.16×10-6 | 4.72×10-10 | 1.91×10-9 | 4.53×10-19 | 2.38×10-9 | ||
F12 | 2.06×10-8 | 3.77×10-8 | 7.35×10-11 | 8.93×10-11 | 2.71×10-11 | 9.78×10-11 |
Tab.3
Comparison of test function optimization results between ISSA and other population algorithms
测试 函数 | DE | GA | SBO | SSA | ISSA | |||||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
平均值 | 标准差 | 平均值 | 标准差 | 平均值 | 标准差 | 平均值 | 标准差 | 平均值 | 标准差 | |||||
F1 | 3.88×10-5 | 1.08×10-5 | 7.09×10 | 1.34×102 | 1.44×10-3 | 3.46×10-4 | 1.86×10-12 | 8.75×10-12 | 1.72×10-16 | 8.11×10-16 | ||||
F2 | 7.58×10-4 | 1.49×10-4 | 1.79×10 | 9.34×10-1 | 5.78×10-2 | 2.16×10-2 | 4.76×10-5 | 1.77×10-4 | 2.86×10-7 | 9.22×10-7 | ||||
F3 | 2.55×10-3 | 5.98×10-4 | 8.05×103 | 9.54×103 | 1.97×10 | 5.77×10 | 5.94×10-9 | 3.04×10-8 | 9.38×10-16 | 5.10×10-15 | ||||
F4 | 2.57 | 1.13 | 4.68×10 | 4.64 | 5.68 | 1.32 | 7.50×10-7 | 2.07×10-6 | 5.76×10-9 | 1.85×10-8 | ||||
F5 | 3.92×10-5 | 1.21×10-5 | 3.07×10 | 5.09×10 | 1.69×10-3 | 6.45×10-4 | 2.31×10-6 | 5.52×10-6 | 6.47×10-10 | 5.67×10-10 | ||||
F6 | 7.71×10 | 4.46×10 | 2.22×103 | 3.94×103 | 1.66×102 | 1.57×102 | 1.51×10-5 | 2.69×10-5 | 7.47×10-7 | 8.02×10-7 | ||||
F7 | 4.57×10-23 | 2.07×10-22 | 9.41×10-7 | 4.91×10-6 | 4.52×10-11 | 3.29×10-11 | 4.95×10-16 | 2.13×10-15 | 6.85×10-18 | 3.19×10-17 | ||||
F8 | 1.72×102 | 2.32×102 | 1.77×102 | 2.32×10 | 3.14 | 2.66 | 9.80×10-10 | 3.84×10-9 | 5.55×10-13 | 1.68×10-12 | ||||
F9 | 6.73×10 | 1.14×10 | 6.59×10 | 5.93 | 2.59×10 | 8.05 | 8.22×10-12 | 3.02×10-11 | 2.75×10-11 | 9.29×10-11 | ||||
F10 | 3.89×10-4 | 2.63×10-4 | 1.53 | 8.73×10-1 | 4.57×10-2 | 1.81×10-2 | 9.88×10-14 | 4.47×10-12 | 3.70×10-18 | 1.34×10-18 | ||||
F11 | 1.58×10-3 | 2.16×10-3 | 2.26 | 1.07 | 1.70 | 1.59 | 1.97×10-6 | 8.11×10-6 | 4.53×10-19 | 2.38×10-9 | ||||
F12 | 3.20×10-6 | 5.53×10-6 | 2.45 | 2.42 | 3.46 | 4.26 | 2.00×10-6 | 2.41×10-6 | 2.71×10-11 | 9.78×10-11 |
[1] |
YAO R M, LI B Z, STEEMERS K. Energy policy and standard for built environment in China[J]. Renewable Energy, 2005, 30(13): 1973-1988.
doi: 10.1016/j.renene.2005.01.013 URL |
[2] |
CHWIEDUK D. Towards sustainable-energy buildings[J]. Applied Energy, 2003, 76(1/2/3): 211-217.
doi: 10.1016/S0306-2619(03)00059-X URL |
[3] |
TANG R, WANG S W, SHAN K, et al. Optimal control strategy of central air-conditioning systems of buildings at morning start period for enhanced energy efficiency and peak demand limiting[J]. Energy, 2018, 151: 771-781.
doi: 10.1016/j.energy.2018.03.032 URL |
[4] | ZHAO T Y, WANG J M, FU P, et al. Study on simplified energy-efficient control methods of HVAC cooling water system from the global online optimization perspective[J]. Energy Science & Engineering, 2021, 9(4): 464-482. |
[5] | SYED ASAD H, WAN H, KASUN H, et al. Distributed real-time optimal control of central air-conditioning systems[J]. Energy & Buildings, 2022, 256: 111756. |
[6] |
CHAN T S, CHANG Y C, HUANG J H. Application of artificial neural network and genetic algorithm to the optimization of load distribution for a multiple-type-chiller plant[J]. Building Simulation, 2017, 10(5): 711-722.
doi: 10.1007/s12273-017-0363-2 URL |
[7] | 蔡晖, 高伯阳, 祁万春, 等. “双碳”背景下线间潮流控制器多目标协调控制策略[J]. 上海交通大学学报, 2021, 55(12): 1608-1618. |
CAI Hui, GAO Boyang, QI Wanchun, et al. A coordination control strategy of interline power flow controller in carbon peaking and carbon neutrality[J]. Journal of Shanghai Jiao Tong University, 2021, 55(12): 1608-1618. | |
[8] | 杨博, 俞磊, 王俊婷, 等. 基于自适应蝠鲼觅食优化算法的分布式电源选址定容[J]. 上海交通大学学报, 2021, 55(12): 1673-1688. |
YANG Bo, YU Lei, WANG Junting, et al. Optimal sizing and placement of distributed generation based on adaptive manta ray foraging optimization[J]. Journal of Shanghai Jiao Tong University, 2021, 55(12): 1673-1688. | |
[9] | 薛晗, 邵哲平, 潘家财, 等. 基于文化萤火虫算法-广义回归神经网络的船舶交通流量预测[J]. 上海交通大学学报, 2020, 54(4): 421-429. |
XUE Han, SHAO Zheping, PAN Jiacai, et al. Vessel traffic flow prediction based on CFA-GRNN algorithm[J]. Journal of Shanghai Jiao Tong University, 2020, 54(4): 421-429. | |
[10] | AFROZ Z, SHAFIULLAH G M, URMEE T, et al. Predictive modelling and optimization of HVAC systems using neural network and particle swarm optimization algorithm[J]. Building & Environment, 2022, 209: 108681. |
[11] | MOHANTY S, PANDA S, SAHU B K, et al. A genetic algorithm-based demand side management program for implementation of virtual power plant integrating distributed energy resources[C]// Innovation in Electrical Power Engineering, Communication & Computing Technology. Bhubaneswar, India: Springer Singapore, 2022: 469-481. |
[12] | CHELLAMANI G K, CHANDRAMANI P V. An optimized methodical energy management system for residential consumers considering price-driven demand response using satin bowerbird optimization[J]. Journal of Electrical Engineering & Technology, 2021, 15(2): 955-967. |
[13] |
TIAN C S, HAO Y, HU J M. A novel wind speed forecasting system based on hybrid data preprocessing and multi-objective optimization[J]. Applied Energy, 2018, 231: 301-319.
doi: 10.1016/j.apenergy.2018.09.012 URL |
[14] |
RAGHAV L P, KUMAR R S, RAJU D K, et al. Analytic Hierarchy Process (AHP)-Swarm intelligence based flexible demand response management of grid-connected microgrid[J]. Applied Energy, 2022, 306: 118058.
doi: 10.1016/j.apenergy.2021.118058 URL |
[15] | 黄敬宇. 融合t分布和Tent混沌映射的麻雀搜索算法研究[D]. 兰州: 兰州大学, 2021. |
HUANG Jingyu. Research on sparrow search algorithm based on fusion of t distribution and tent chaotic mapping[D]. Lanzhou: Lanzhou University, 2021. | |
[16] | 吕鑫, 慕晓冬, 张钧, 等. 混沌麻雀搜索优化算法[J]. 北京航空航天大学学报, 2021, 47(8): 1712-1720. |
LV X, MU X D, ZHANG J, et al. Chaos sparrow search optimization algorithm[J]. Journal of Beijing University of Aeronautics & Astronautics, 2021, 47(8): 1712-1720. | |
[17] |
KUMAR GANTI P, NAIK H, KANUNGO BARADA M. Environmental impact analysis and enhancement of factors affecting the photovoltaic (PV) energy utilization in mining industry by sparrow search optimization based gradient boosting decision tree approach[J]. Energy, 2022, 244: 122561.
doi: 10.1016/j.energy.2021.122561 URL |
[18] | XUE J K, SHEN B. A novel swarm intelligence optimization approach: Sparrow search algorithm[J]. Systems Science & Control Engineering, 2020, 8(1): 22-34. |
[19] | YAO Y, YU Y B. Modeling and control in air-conditioning systems[M]. Berlin, Heidelberg: Springer Berlin Heidelberg, 2017. |
[20] | 陈阳, 姚晔. 基于天牛须-粒子群优化算法的大型中央空调系统节能控制[J]. 制冷学报, 2021, 42(4): 43-49. |
CHEN Yang, YAO Ye. Study on energy-saving control of large central air-conditioning system based on BAS-PSO[J]. Journal of Refrigeration, 2021, 42(4): 43-49. |
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