LOW VOLTAGE APPARATUS ›› 2025, Vol. 0 ›› Issue (12): 59-66.doi: 10.16628/j.cnki.2095-8188.2025.12.008
• Energy Storage Technology • Previous Articles Next Articles
HE Ping, LIU Wei, NING Xinfu, YE Jianfeng, LIU Da, ZHU Yuhao
Received:2025-09-25
Online:2025-12-30
Published:2025-12-31
CLC Number:
HE Ping, LIU Wei, NING Xinfu, YE Jianfeng, LIU Da, ZHU Yuhao. Economic Calculation Model for Peak-Valley Arbitrage of User Side Energy Storage in Zhejiang Province Considering Basic Electricity Charges[J]. LOW VOLTAGE APPARATUS, 2025, 0(12): 59-66.
| 年份 | 贴现系数/ % | 初始投资/ 万元 | 年折旧/ 万元 | 折旧所致税费 减免/万元 | 税费减免现值/ 万元 | 年维护成本/ 万元 | 年循环电量/ 万kWh | 贴现电量/ 万kWh |
|---|---|---|---|---|---|---|---|---|
| 1 | 94.34 | 38 | 9.5 | 9.0 | 7.2 | 93.31 | 88.0 | |
| 2 | 89.00 | 38 | 9.5 | 8.5 | 7.2 | 90.23 | 80.3 | |
| 3 | 83.96 | 38 | 9.5 | 8.0 | 7.2 | 87.15 | 73.2 | |
| 4 | 79.21 | 38 | 9.5 | 7.5 | 7.2 | 84.08 | 66.6 | |
| 5 | 74.73 | 38 | 9.5 | 7.1 | 7.2 | 81.00 | 60.5 | |
| 6 | 70.50 | 38 | 9.5 | 6.7 | 7.2 | 77.92 | 54.9 | |
| 7 | 66.51 | 38 | 9.5 | 6.3 | 7.2 | 74.84 | 49.8 | |
| 8 | 62.74 | 38 | 9.5 | 6.0 | 7.2 | 71.76 | 45.0 | |
| 总计 | 年6%贴现率 | 360 | — | — | 59.0 | 57.6 | 660.3 | 518.4 |
| [1] | 张文智, 杨晋红, 贾艳刚. 新型储能产业发展对新型电力系统建设的促进研究[J]. 新能源科技, 2023, 4(1):12-17. |
| [2] | 苏涛. 我国“十四五”储能政策对比分析[J]. 电器与能效管理技术, 2024(11):1-9. |
| [3] | 吴林林, 陈璨, 胡俊杰, 等. 支撑新能源电力系统灵活性需求的用户侧资源应用与关键技术[J]. 电网技术, 2024, 48(4):1435-1444. |
| [4] | 杨光明. 新型电力系统下虚拟电厂研究[J]. 电器与能效管理技术, 2024(11):65-72. |
| [5] |
鲁跃峰, 郭祚刚, 谷裕, 等. 国内外新型储能相关政策及商业模式分析[J]. 储能科学与技术, 2023, 12(9):3019-3032.
doi: 10.19799/j.cnki.2095-4239.2023.0276 |
| [6] | 李敬如, 万志伟, 宋毅, 等. 国外新型储能政策研究及对中国储能发展的启示[J]. 中国电力, 2022, 55(11):1-9. |
| [7] |
郑云平, 李明, 张艳丽, 等. 新型储能政策分析与建议[J]. 储能科学与技术, 2023, 12(6):2022-2031.
doi: 10.19799/j.cnki.2095-4239.2023.0140 |
| [8] | 刘坚. 我国新型储能发展问题分析与政策建议[J]. 中国能源, 2022, 44(6):6-10. |
| [9] |
李明, 郑云平, 亚夏尔·吐尔洪, 等. 新型储能政策分析与建议[J]. 储能科学与技术, 2023, 12(6):2022-2031.
doi: 10.19799/j.cnki.2095-4239.2023.0140 |
| [10] | 李玥瑶. 用户侧储能在多种盈利模式下的经济性研究[D]. 北京: 华北电力大学(北京), 2023. |
| [11] |
刘志成, 彭道刚, 赵慧荣, 等. 双碳目标下储能参与电力系统辅助服务发展前景[J]. 储能科学与技术, 2022, 11(2):704-716.
doi: 10.19799/j.cnki.2095-4239.2021.0431 |
| [12] | 王利猛, 曲洋, 刘宇途, 等. 基于电力大数据的用户储能最优配置[J]. 电器与能效管理技术, 2023(9):32-38. |
| [13] | 窦艳, 王传艺, 陈子晖, 等. 基于全钒液流电池的构网型储能建模与研究[J]. 电器与能效管理技术, 2024(11):29-37. |
| [14] | 戴朝华, 杨帅, 叶圣永, 等. 供需双方博弈视角下的V2G优化策略[J]. 西南交通大学学报, 2025, 60(1):166-174. |
| [15] | 郭久亿, 刘洋, 郭焱林, 等. 不同典型用户侧储能配置评估与运行优化模型[J]. 电网技术, 2020, 44(11):4245-4254. |
| [16] | 温可瑞, 李卫东, 孙乔, 等. 用户侧分布式储能参与一次调频的日内前瞻-值函数近似策略[J]. 电力系统自动化, 2022, 46(20):33-42. |
| [17] | 朱立位, 伏祥运, 牛萌, 等. 储能接入配电网影响评估及自适应保护策略[J]. 电器与能效管理技术, 2023(9):1-10. |
| [18] | 孙伟伟, 寇潇文, 周光, 等. 区分工作日和非工作日负荷的用户侧储能多目标优化策略[J]. 中国电力, 2022, 55(6):194-201. |
| [19] | 吕斌, 黄丹, 丁宏, 等. 基于共享储能的台区多元负荷协同控制策略[J]. 电力自动化设备, 2024, 44(1):1-12. |
| [20] | 闫群民, 穆佳豪, 马永翔, 等. 分布式储能应用模式及优化配置综述[J]. 电力工程技术, 2022, 41(2):67-74. |
| [1] | LI Jiawei, MIAO Xiren. Research on Asymmetric Fault Ride-Through Control Strategy of Low Voltage Distribution Areas Flexible Interconnection System [J]. LOW VOLTAGE APPARATUS, 2025, 0(8): 1-8. |
| [2] | LI Yongle, ZHANG Shuwei, ZHANG Wenkang, MAO Xingkui. Optimization Design and Control of Power Quality for Light-Loaded Server Power Supplies [J]. LOW VOLTAGE APPARATUS, 2025, 0(8): 70-78. |
| [3] | WANG Zhiyuan, LIU Yuewei, SHANG Sen, REN Feng, DONG Hongwei. Refined Energy Management and Control Strategy for Energy Storage Power Stations Based on Multi-Agent Theory [J]. LOW VOLTAGE APPARATUS, 2025, 0(10): 16-27. |
| [4] | DUAN Ketong, HAN Zijiao, DONG Yannan, CAI Zhiyuan. Black-Start Control Strategy for Photovoltaic-Storage Microgrid Based on Improved Micro-Source Voltage and Virtual Synchronous Generator [J]. LOW VOLTAGE APPARATUS, 2025, 0(10): 28-36. |
| [5] | LIN Yurun, MIAO Xiren. Coordinated Control Study on Flexible Interconnection of Distribution Station Areas Considering Transformer Power Losses [J]. LOW VOLTAGE APPARATUS, 2024, 0(9): 15-23. |
| [6] | CHEN Qi, ZHANG Binyi, MAO Xingkui. Bidirectional PCS Design Based on Silicon Carbide [J]. LOW VOLTAGE APPARATUS, 2023, 0(9): 43-49. |
| [7] | WANG He, XU Xiangsheng, SHEN Guanye, BIAN Jing. Model Prediction Control Strategy of Multi-Port Interline DC Power Flow Controller [J]. LOW VOLTAGE APPARATUS, 2023, 0(7): 61-69. |
| [8] | JI Shengzhi, JIANG Haoran, LIU Shengyu. Digital Hysteresis Control Strategy for LLC Resonant Converter Suitable for Battery Charging [J]. LOW VOLTAGE APPARATUS, 2022, 0(5): 83-87. |
| [9] | LI Xinyuan, GAO Peng, YU Haoran, SHEN Zhendong, WANG Baichao, LIN Yan. Design of Multifunctional Electronic Load Based on Active Power Filter [J]. LOW VOLTAGE APPARATUS, 2022, 0(4): 41-46. |
| [10] | WANG Yunhui, ZHENG Qiangren, GUO Miao, XIAO Huanchun, HE Houdao, CHEN Wanxi. Research on Control Strategy and Consumption Capacity Evaluation of Distributed Generation Access to Distribution Network [J]. LOW VOLTAGE APPARATUS, 2022, 0(4): 83-87. |
| [11] | FU Meiping, MAO Jianrong, SONG Rui, WANG Guanghui, FU Guobin. Voltage and Reactive Power Control Strategy of Energy Storage Power Stations in Large New Energy Enriched Areas [J]. LOW VOLTAGE APPARATUS, 2022, 0(2): 88-94. |
| [12] | LI Hongyan, LIU Miaomiao, JIA Tian, QI Xiaoxiang, NIU Gaoyuan, ZHANG Zhen. Research on Control Strategy of Electric Vehicle Orderly Charging Based on Monte Carlo Algorithm [J]. LOW VOLTAGE APPARATUS, 2021, 0(5): 59-64. |
| [13] | CAO Xinhui, FU Lin, GAO Lingyu, KAI Saijiang, LI Zhongzheng, YUAN Tiejiang. Energy Storage Control Strategy to Eliminate Risk of New Energy Grid-Connected Operation [J]. LOW VOLTAGE APPARATUS, 2021, 0(5): 75-80. |
| [14] | LI Feng. Cascade Utilization Battery Energy Storage System Architecture and Control Strategy [J]. LOW VOLTAGE APPARATUS, 2021, 0(4): 81-84. |
| [15] | LI Xinyuan, MA Jun, GAO Peng, YU Haoran, LIN Yan, LÜ Haichao, SHEN Zhendong. Three-Phase Power Quality Adjustment Device for Distribution Network Based on Phase Sequence Adaptive Technology [J]. LOW VOLTAGE APPARATUS, 2021, 0(3): 61-67. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||