← 返回
网络化微电网中基于自适应定价的资源利用优化
Adaptive Pricing-Based Optimized Resource Utilization in Networked Microgrids
| 作者 | Syed Muhammad Ahsan · Muhammad Ahmad Iqbal · Akhtar Hussain · Petr Musilek |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 微电网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 联网微电网 资源优化 内部交易价格 功率共享 成本降低 |
语言:
中文摘要
网络化微电网的性能主要取决于内部市场结构设计以实现最大资源利用、优化功率共享和增强经济效率。本文提出网络化微电网内资源优化的新型框架。首先,使用本地能源管理系统优化每个微电网,根据本地发电(太阳能光伏)、储能系统和负荷曲线等各种参数计算功率短缺/盈余。通过聚合每个微电网的短缺/盈余获得总短缺/盈余,便于计算自适应内部交易价格。内部交易价格响应负荷变化和分时电价,从而鼓励网络化微电网内部交易。内部交易价格战略性设定低于电网购电价格、高于电网售电价格,以最大化整个网络总收益。随后,制定中央能源管理系统,基于自适应内部交易确定微电网间优化功率共享。使用改进加速粒子群优化在IEEE-33总线测试馈线上验证所提策略,实现年功率损耗降低1795.8kW、总成本降低7.2%。这些结果确认所提框架在现实场景中的实用性和有效性。
English Abstract
The performance of networked microgrids primarily depends on the design of internal market structure for maximum resource utilization, optimized power sharing, and enhanced economic efficiency. This article presents a novel framework for resource optimization within the networked microgrids. First, each microgrid is optimized using a local energy management system to compute power shortage/surplus depending on various parameters including local generation (solar photovoltaic), battery energy storage system, and load profile. The total shortage/surplus is obtained by aggregating the shortage/surplus of each microgrid, facilitating the calculation of adaptive internal trade price. The internal trade prices are responsive to load variations and time-of-use prices, thereby encouraging internal trading within the networked microgrids. The internal trading price is strategically set to be lower than buying price from the grid and higher than selling price to the grid to maximize overall revenue of the entire network. Subsequently, a central energy management system is formulated, determining optimized power sharing between microgrids based on the adaptive internal trading. The proposed strategy is validated on the IEEE-33 bus test feeder using improved accelerated particle swarm optimization, achieving an annual power loss reduction of 1795.8 kW and an overall cost reduction of 7.2%. These results confirm the practicality and effectiveness of the proposed framework in real-world scenarios.
S
SunView 深度解读
该网络化微电网优化技术与阳光电源多能互补项目高度契合。阳光在工商业园区和海岛等场景部署多个微电网互联系统,需要智能化功率共享和经济调度。该研究的自适应定价机制和双层能量管理架构可集成到阳光PowerStack微电网方案。本地EMS管理单个微电网,中央EMS协调多微电网交易。该策略可优化阳光储能系统在多微电网间的功率调度,降低网损7.2%,提升经济效益。结合阳光iSolarCloud云平台的优化算法,该技术可实现园区级虚拟电厂运营,通过内部电力交易降低整体用能成本,提升分布式能源利用率,增强微电网经济性和可持续性。