午夜精品久久久久久久99热_日本丰满少妇裸体自慰_国产a区_亚洲欧美日韩另类精品一区_天天天天做夜夜夜夜做无码_欧美性久久久

Application of Supercapacitors (Farad Capacitors) in Smart Grids

A microgrid consists of micro power sources, loads, energy storage, and energy managers. The forms of energy storage in microgrids include: connected to the DC bus of the microgrid, on the feeder line containing important loads, or on the AC bus of the microgrid. Among them, the first two can be called distributed energy storage, and the last one is called central energy storage.

 

When connected to the grid, the power fluctuations within the microgrid are balanced by the large grid, and the energy storage is in a charging standby state. When the microgrid switches from grid connected operation to isolated operation, the central energy storage system immediately starts to compensate for the power shortage. The fluctuations in load or micro power sources during the operation of a microgrid in isolation can be balanced by central or distributed energy storage. Among them, there are two ways to balance the power fluctuations of micro power sources: connecting distributed energy storage and micro power sources that require energy storage in parallel on a certain feeder line, or directly connecting the energy storage to the DC bus of the micro power source.

 

1. Provide short-term power supply

 

There are two typical operating modes for microgrids: under normal circumstances, microgrids operate in parallel with conventional distribution networks, known as grid connected operation mode; When a power grid fault or insufficient power quality is detected, the microgrid will promptly disconnect from the grid and operate independently, known as the isolated grid operation mode. Microgrids often need to absorb some active power from conventional distribution networks, so there may be power shortages when transitioning from grid connected mode to isolated mode. Installing energy storage devices can help facilitate a smooth transition between the two modes.

 

2. Used as an energy buffering device

 

Due to the small scale and low system inertia of microgrids, frequent fluctuations in network and load become very serious, which affects the stable operation of the entire microgrid. We always expect efficient generators (such as fuel cells) in microgrids to operate at their rated capacity. However, the load of microgrids does not remain constant throughout the day. On the contrary, it fluctuates with changes in weather and other conditions. In order to meet peak load power supply, it is necessary to use fuel and gas peaking power plants for peak load adjustment. Due to the high fuel prices, the operating costs of this method are too expensive. The supercapacitor energy storage system can effectively solve this problem by storing excess electricity from the power source during low load periods and feeding it back to the microgrid to adjust power demand during peak load periods. The high power density and energy density of supercapacitors make them the best choice for handling peak loads, and using supercapacitors only requires storing energy equivalent to that of peak loads.

 

3. Improve the power quality of microgrids

 

The energy storage system plays a crucial role in improving the power quality of microgrids. Through the inverter control unit, the reactive and active power provided by the supercapacitor energy storage system to users and the network can be adjusted, thereby achieving the goal of improving power quality. Due to their ability to quickly absorb and release high-power electrical energy, supercapacitors are highly suitable for application in power quality control devices of microgrids to solve transient problems in the system, such as instantaneous power outages, voltage surges, and voltage drops caused by system faults. At this time, supercapacitors are used to provide fast power buffering, absorb or supplement electrical energy, and provide active power support for active or reactive power compensation, in order to stabilize and smooth the fluctuations of grid voltage.

 

4. Optimize the operation of the micro power supply

 

Green energy sources such as solar and wind energy often have non-uniformity, and the output of electricity is prone to change. This requires the use of a buffer to store energy. Due to the fact that the electricity output generated by these energy sources may not meet the peak electricity demand of the microgrid, energy storage devices can be used to provide the required peak electricity in a short period of time until the power generation increases and the demand decreases. Moderate energy storage can serve as a transitional measure when the DG unit is unable to operate normally. If solar power is used for night time, wind power is used in the absence of wind, or other types of DG units are under maintenance, then the energy storage in the system can play a transitional role.

 

In situations where energy generation is stable and demand is constantly changing, energy storage devices are also necessary. By storing excess energy in energy storage devices, the required peak energy can be provided in a short period of time through the energy storage devices.


Tel
0416-3890026
Add
No 141, Jinyi street, Linghe District,Jinzhou Liaoning,China,
link:Client from Korea can click here Copyright:Jinzhou Kaimei Power Co.Ltd 遼ICP備11004092號-1 45106
Tel: 0416-3890026
Add: No 141, Jinyi street, Linghe District,Jinzhou Liaoning,China,
主站蜘蛛池模板: 精品视频在线观自拍自拍 | 性色a| 免费无码又爽又刺激动态图 | 你懂得视频在线观看 | 成熟女人特级毛片www免费 | 国产学生av娇小av毛片 | 日本三级小视频 | 免费午夜爽爽爽www视频十八禁 | 无码国产偷倩在线播放 | 高清国产AV一区二区三区 | 色网视频国产高清制服一区 | 丰满少妇弄高潮了WWW | 无码精品人妻一区二区三区98 | 国产疯狂伦交大片 | 亚洲精品无码不卡在线播HE | 久久无码人妻一区二区三区午夜 | 三年片大全在线观看免费观看第二集 | 国产精品无码免费专区午夜 | 公和我在野外做好爽爱爱小说雨婷 | 国产高跟丝袜脚交视频 | 真人无码国产作爱免费视频 | 少妇饥渴偷公乱A级无码 | 一个人看的免费视频WWW中文字幕 | 国产午夜精品一二区理论影院 | 女邻居丰满的奶水 | 国产精人妻无码一区二区三区牛牛 | 欧美一区二区三区爽大粗 | 亚洲色偷偷综合亚洲AV伊人 | 日韩欧美群交P片內射中文 亚洲综合区夜夜久久久 | 观看av网站 | 亚洲国产欧美中文手机在线 | 天堂AV旡码AV在线A2020V | 亚洲中文字幕久久精品无码2021 | 97亚洲狠狠色综合一区二区 | 亚洲日产韩国一二三四区 | 老司机免费精品视频 | 久久精品国产亚洲av瑜伽 | 国产人妻人伦精品熟女 | 久久日韩精品一区鲁大师 | 亚洲一线二线三线品牌精华液 | 天天做天天爱天天综合网2021 |