针对岛屿交流微电网中异质电池储能系统的抗攻击分布式自适应二次控制
Yue Sun1, Chenghui Zhang1, Daduan Zhao1
1School of Control Science and Engineering, Shandong University, Jinan, China.
ISA transactions
|August 18, 2023
概括
本研究介绍了岛屿微电网中的电池储能系统 (BESS) 的抗攻击分布式自适应二次控制. 该方法确保了BESS的稳定性和协调操作,以防止使用本地信息的网络攻击.
科学领域:
- 电气工程 电气工程
- 控制系统 控制系统
- 网络安全 网络安全
背景情况:
- 分布式控制对于岛屿交流微电网中的电池储能系统 (BESS) 至关重要,它可以实现频率恢复,电力共享和电荷状态 (SoC) 平衡.
- 然而,这些分布式系统容易受到网络攻击,这可能会破坏同步和稳定.
研究的目的:
- 建议在岛屿交流微电网中对异质BESS进行攻击弹性的分布式自适应二次控制策略.
- 确保在频率,主动功率和SoC上达成共识,尽管执行器攻击.
主要方法:
- 引入了具有适应性更新法律的动态控制收益,以增强弹性.
- 仅使用本地和邻居的信息来执行控制.
- 进行稳定性分析以保证强度.
主要成果:
- 拟议的控制方法保证了对BESS频率,主动功率和SoC的同时共识.
- 在岛屿交流微电网中显著提高了对执行器攻击的弹性.
- 通过微电网测试系统的案例研究验证了有效性.
结论:
- 开发的自适应二次控制提供了一个强大的解决方案,用于保护岛屿微电网中的BESS免受网络威胁.
- 在攻击条件下,该战略有效地保持关键操作参数 (频率,功率,SoC).
- 这些发现对于提高微电网储能系统的可靠性和安全性至关重要.
更多相关视频
10:36Author Spotlight: Optimization of Airflow Velocities in Battery Cooling Systems for Enhanced Thermal Performance and Reduced Energy Consumption
Published on: November 3, 2023
1.6K
09:49A Protocol for Electrochemical Evaluations and State of Charge Diagnostics of a Symmetric Organic Redox Flow Battery
Published on: February 13, 2017
10.5K
相关概念视频
Secondary Distribution
106
Secondary distribution systems provide electrical energy at the utilization voltage levels from distribution transformers to customer meters. Typical secondary voltages in the United States include 120/240 V for residential use, 208Y/120 V for residential and commercial use, and 480Y/277 V for industrial and high-rise commercial use.
In residential areas, 120/240 V single-phase, three-wire service is commonly used for lighting, outlets, and large appliances. Urban areas with high-density loads...
In residential areas, 120/240 V single-phase, three-wire service is commonly used for lighting, outlets, and large appliances. Urban areas with high-density loads...
106
Distribution Reliability and Automation
129
Distribution reliability in electrical power systems is critical for ensuring an uninterrupted power supply to consumers at minimal cost. According to IEEE Standard Terms, reliability is the probability that a device will function without failure over a specified time period or amount of usage. For electric power distribution, this translates to maintaining continuous power supply and addressing customer concerns over power outages. Several indices, as defined by IEEE Standard 1366-2012, are...
129
Reclosers and Fuses
129
Automatic circuit reclosers enhance the protection of distribution circuits by interrupting and auto-reclosing an AC circuit according to a preset sequence. They effectively manage temporary faults on overhead distribution lines, often caused by tree limbs or wildlife, by briefly disrupting service to improve overall reliability. However, contact with reclosers or energized broken conductors on the ground can pose serious hazards.
A comprehensive protection scheme for radial distribution...
A comprehensive protection scheme for radial distribution...
129
Conservation of AC Power
355
The principle of power preservation is applicable to both ac and dc circuits. This principle, when applied to AC power, asserts that the complex, real, and reactive powers produced by the source are equal to the total complex, real, and reactive powers absorbed by the loads. When two load impedances are connected in parallel to an ac source V, the complex power provided by the source can be calculated using the relation
355
Zones of Protection
224
In power systems, the entire setup is divided into protective zones to isolate faults and protect the rest of the network. These zones include generators, transformers, buses, transmission lines, distribution lines, and motors. Each zone can be visualized as a separate room in a house, with each room protected by its own circuit breaker.
Protective zones are defined by closed dashed lines, containing one or more components. A key characteristic of these zones is the strategic placement of...
Protective zones are defined by closed dashed lines, containing one or more components. A key characteristic of these zones is the strategic placement of...
224
Power System Distribution
264
Power system distribution involves delivering electrical energy from power plants to consumers through a network of transmission and distribution systems. The process begins at power plants, where energy from coal, gas, nuclear, water, and wind is converted into electrical energy. These plants use three-phase generators, typically rated between 50 to 1300 MVA, with terminal voltages ranging from a few kV to 20 kV, depending on the size and age of the units.
The transmission system is designed...
The transmission system is designed...
264
