|
|
A method for N-line overcurrent protection and detection based on neural line security protector |
KAN Pengcheng1, HUANG Chunguang2 |
1. Jiangsu Acrel Electrical Manufacturing Co., Ltd, Jiangyin, Jiangsu 214405; 2. Acrel Co., Ltd, Shanghai 201801 |
|
|
Abstract In actual production and daily life, non-linear loads such as LED lights and LED screens are widely used. Such devices generate 3n harmonics, resulting in an excessively large current in the N line. The N line curent can be managed by configuring neural line safety protector (SNP) at the terminal. When there are a large number of SNP devices, the inspection personnel need to check them one by one, resulting in relatively low operation and maintenance efficiency. When there is an overcurrent in the N-line or other faults, timely feedback cannot be obtained, and ultimately, the SNP is damaged, causing economic losses. This paper proposes a method for N-line overcurrent protection and detection based on neutral line safety protector, which is realized through the internal hardware circuit. When the current value of the N-line exceeds the set value, the internal relay sends a dry contact signal to control the shutdown and alarm of the SNP. At the same time, users can monitor data and control the operation through the WiFi module and the network communication circuit. Finally, the practicality and safety of this method are verified through experiments. It has the advantages of providing timely feedback of information, protecting the safety of equipment, and facilitating operation and maintenance.
|
Received: 10 March 2025
|
|
|
|
Cite this article: |
KAN Pengcheng,HUANG Chunguang. A method for N-line overcurrent protection and detection based on neural line security protector[J]. Electrical Engineering, 2025, 26(6): 58-63.
|
|
|
|
URL: |
https://dqjs.cesmedia.cn/EN/Y2025/V26/I6/58
|
[1] 刘泽松, 刘杰, 刘建春, 等. 一种中线安防保护器用的N相过流保护与监测系统[P]. 上海, CN202211014221.5, 2022-12-09. [2] 冯振亮. 典型电能质量问题的解决方案[C]//2024年电力行业技术监督专业技术交流研讨会优秀论文集, 南宁, 2024: 867-879. [3] 孙换春, 王剑. 关于提高配电网电能质量精细化管理的措施及建议[J]. 电气技术, 2017, 18(10): 131-133. [4] 龙齐杰, 胡亮灯, 鲁斌, 等. 考虑多相电机高频振动抑制的三电平H桥变频器中性线电流异常增加问题分析及抑制研究[J/OL]. 中国电机工程学报, 1- 15 [2025-04-16]. https://doi.org/10.13334/j.0258-8013.pcsee.242056. [5] 李正新, 陈斗沙, 李波, 等. 基于混合自然启发算法的电网自适应过流保护优化研究[J]. 自动化技术与应用, 2024, 43(9): 34-37, 46. [6] 邹甲, 刘祺, 欧明端, 等. 谐波监测式电气火灾监控系统设计[J]. 电气技术, 2023, 24(8): 22-28. [7] 郑楚韬, 陈永杰. 三相四线制系统零线断线检测及保护研究[J]. 电气技术, 2008, 9(8): 83-85. [8] 姚伟, 刘彦彦, 郭志明. 基于中性线电流离散分析治理三相负荷不平衡[J]. 变压器, 2024, 61(10): 46-53. [9] 刘松喜, 杨智奇, 黄伟达, 等. 基于分布式测量的低压主动配电网中性线断线识别与定位方法[J]. 供用电, 2022, 39(4): 68-76. [10] 赵庆元, 王鹏飞, 孔金良, 等. 电网谐波的危害及其抑制技术研究[J]. 电力设备管理, 2024(21): 49-51. [11] 马国泉, 马腾, 楼英. 低压配电系统中性线断线危害与防范[J]. 农村电工, 2019, 27(2): 41-42. [12] 黄春光, 刘建春, 武明科. 一种逆变器的并网-谐波治理综合控制方法[J]. 电气技术, 2024, 25(11): 30-36. [13] 陈明泉, 肖世挺, 严昌华, 等. 厦门柔直工程高频谐波保护方案分析与试验[J]. 电气技术, 2023, 24(10): 79-84. |
|
|
|