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优化用于变压器保护的软件定义电池系统
Optimizing software defined battery systems for transformer protection
| 作者 | Sonia Martina1 · Obidike Nnorom Jr.b1 · Philip Levis · Ram Rajagopalb |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 396 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 户用光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Proposes protecting residential transformers by aggregating home battery systems. |
语言:
中文摘要
摘要 住宅电动汽车充电会导致电力需求大幅激增,可能超出社区变压器的功率限制。电池储能系统可以减少此类变压器限值越限现象,但单独运行这些电池并非成本最优方案。与单独优化相比,将这些电池进行聚合或共享可实现成本最优的性能,但前提是房主必须放弃对电池的控制权。本文利用虚拟化技术,提出了一种电池共享优化方案,旨在降低用电成本、延长住宅变压器的使用寿命,同时保持房主对电池的控制权。通过一个包含模拟家庭负荷、太阳能发电以及电动汽车充电行为的案例研究显示,相较于独立优化,联合或共享优化方式可使消费者电费降低56%,变压器老化程度减少48%。而为电池所有者提供更高自主权的混合型和动态优化方案在减缓变压器老化方面效果相近,但在成本效益上略逊一筹。这些结果表明,在住宅电动汽车充电渗透率不断上升的背景下,采用虚拟化技术对共享电池进行控制是一种有效延缓变压器升级需求的方法。
English Abstract
Abstract Residential electric vehicle charging causes large spikes in electricity demand that risk violating neighborhood transformer power limits. Battery energy storage systems reduce these transformer limit violations, but operating them individually is not cost-optimal. Instead of individual optimization, aggregating, or sharing, these batteries leads to cost-optimal performance, but homeowners must relinquish battery control. This paper leverages virtualization to propose battery sharing optimization schemes to reduce electricity costs, extend the lifetime of a residential transformer, and maintain homeowner control over the battery. A case study with simulated home loads, solar generation, and electric vehicle charging profiles demonstrates that joint , or shared, optimization reduces consumer bills by 56 % and transformer aging by 48 % compared to individual optimization. Hybrid and dynamic optimization schemes that provide owners with autonomy have similar transformer aging reduction but are slightly less cost-effective. These results suggest that controlling shared batteries with virtualization is an effective way to delay transformer upgrades in the face of growing residential electric vehicle charging penetration.
S
SunView 深度解读
该虚拟化电池共享优化技术对阳光电源储能及充电桩产品线具有重要价值。研究验证了集中式储能管理可降低56%用电成本并减少48%变压器老化,与我司ST系列PCS及PowerTitan储能系统的群控策略高度契合。建议将该虚拟化调度算法集成至iSolarCloud平台,实现户用储能、SG光伏逆变器与充电桩的协同优化,既保障用户自主权又提升配电网承载能力,为社区级能源管理系统提供差异化竞争优势。