1. The Maritime Faculty, Ningbo University, Ningbo 315000, China
2. Inst. of Comp Science & Data Engineering, NingboTech University, Ningbo 315000, China
| Abstract: | This article investigates a mathematical model for smart microgrids that integrate several energy resources. The model is ubiquitously applicable such that it enables users and prosumers to deliver an optimal trade-off among the following three key output functions. The solutions of smart grids deliver output power, an energy benefit or cost, and carbon emissions during operations. It is imperative for smart renewable energy systems to integrate both renewable energy and energy storage technologies so that the commonly discounted solar and/or wind power issues can be addressed. Energy storage technology can ensure the production of various smart grids with stable and safe operations to counter normal power fluctuations. The investigation conducted herein yields a predictive model with a mathematical power utility matrix that is specified by a 3X3 square matrix. As a result, carbon emissions can be effectively reduced; e.g., in one case, the achieved reduction is approximately 79.6% in real time. The standard carbon emissions reach a range of 0.425kg/kWh to 0.5537 kg/kWh at the carbon peak state and nearly zero at carbon neutrality. Finally, the optimal scheduling method results in minimized carbon emissions, thus greatly benefitting the existing carbon peak and carbon neutrality goals. |
| Keywords: | Carbon Peak; Carbon Neutrality; PEC Model; Green Energy; Energy Transition; Energy Independence |
| DOI: | 10.57237/j.jest.2024.03.003 |
| [1] | NASA, 詹姆斯•汉森气候变暖国会作证, June, 1988年6月.他在1974年开发出NASA第一代全球气候模式.他于1981年在Science发表的文章首次使公众意识到了人为排放的温室气体对气候产生的重要影响, 并成功地预测了气候变化的趋势. |
| [2] | Masson-Delmotte, V., Zhai, P., Pörtner H. O., Roberts, D., Skea, J., Shukla, P. R.,陈 Y.,周X.,戈米斯M. I., 朗诺伊, E., 梅科克, T., 蒂格诺 M., 沃特菲尔德, T. (编辑) (2018). IPCC探讨有关全球变暖1.5°C.政府间气候变化专门委员会 (IPCC) 关于全球变暖比工业化前水平高1.5°C的影响以及相关的全球温室气体排放途径的特别报告, 探讨加强全球应对气候变化威胁、可持续发展和消除贫困的努力的背景.国际标准书号978-92-9169-151-7. |
| [3] | A. Couto, A. Estanqueiro, “Exploring Wind and Solar PV Generation Complementarity to Meet Electricity Demand,” Energies, vol. 13, pp. 4132, 2020. [Online]. https://doi.org/10.3390/en13164132. |
| [4] | 联合国气候变化框架公约 (2015). 《联合国气候变化框架公约》简称《巴黎协定》. |
| [5] | A. J. Jin, “Fundamental theory on multiple energy resources and related case studies”, Scientific Reports 2023, vol. 13, Article number: 10965 https://www.nature.com/articles/s41598-023-37653-5. 综合能源的智慧微电网技术包含混搭式能源的应用及智慧优化. |
| [6] | 卡尼亚诺 A、图格利 E D、曼卡雷拉 P., (2020); 微电网: 实际实施和运行的概述和指南[J]. Applied Energy, 2020, 258: 114039. |
| [7] | 金安君; 李昌利; 苏家鹏; 谈建(2022); 智能分布式能源的基础研究以及能源区块链.能源 2022, 15, 806701-806712. (英文). |
| [8] | 生态环境部(2022).官方解读 | 《2021、2022年全国碳排放权交易配额总量设定与分配实施方案 (征求意见稿)》2022-11-04, 来源: 生态环境部关键词: 碳配额碳排放发电企业. 要达到预期的碳排因子峰值, 国内当前合适的目标低于0.557 kg/kWh. (last access, 2024-2-28). |
| [9] | 国家发展改革委国家能源局(2022).关于完善能源绿色低碳转型体制机制和政策措施的意见.发改能源〔2022〕206号. |
| [10] | Cortesc C A, Contreras S F, Shahidehpour M. (2018), 增强主动配电网可靠性的微电网拓扑规划 [J]. IEEE Transactions on Smart Grid, 2018, 9(6): 6369-6377. |
| [11] | 苏家鹏, “基于负荷侧管理和双储能模式的微电网多时间尺度能量优化调度研究”, 浙江2022: 宁波大学 2022-6-2. |
| [12] | Muhtadi A, Pandit D, Nguyen N, et al. (2021), 基于分布式能源的微电网: 架构、控制和可靠性综述[J]. IEEE Transactions on Industry Applications, 2021, 57(03): 2223-2235. |
| [13] | Andoni, M., Robu, V., Flynn, D., et al, “能源领域的区块链技术: 对挑战和机遇的系统回顾”, 可再生能源与可持续能源评论2019, 第100卷, 143-174(2019). (英文). |
| [14] | 李智豪等, 《已发布的能源和智能区块链展望》, Advanced Materials Letters 2021, 第12卷, 第3期, 第21-031607页. (英文). |
| [15] | 颜拥, 赵俊华, 文福拴, 陈星莺, “能源系统中的区块链: 概念、应用与展望”,电力建设2017 (中文), CEPC Vol. 38 (2): 12. https://doi.org/10.3969/j.issn.1000-7229.2017.02.002. |
| [16] | 蓝虹, 陈雅函 (2022); 碳交易市场发展及其制度体系的构建, 《改革》 2022年1月21日. http://www.reform.net.cn; https://gddc.sass.org.cn/2023/0320/c5953a535779/page.htm |
| [17] | 熊灵, 齐绍洲, 沈波 (2016), 中国碳交易试点配额分配的机制特征、设计问题与改进对策, 《社会科学文摘》. https://xueshu.baidu.com/usercenter/paper/show?paperid=61b08e0844662b4505a7f51d7502cb42.https://doi.org/CNKI:SUN:WSLD.0.2016-03-008http://www.gov.cn/zhengce/zhengceku/2022-02/11/content_5673015.htm |
| [18] | 国际能源署 (2020): 到 2050 年实现净零排放: 全球能源部门路线图. 国际能源署. |
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