A Real-time Reporting Solution for LV Power Supply Interruption

Author(s):  
Hongke Zhang ◽  
Rui Xiang ◽  
Wei Guan ◽  
Yiwei Zhang
2021 ◽  
pp. 1-10
Author(s):  
Xiaohong Yan ◽  
Zhigang Zhao ◽  
Yongqiang Liu

As the need of power supply is tremendously increasing in modern society, the stableness and reliability of the power delivery system are the two essential factors that ensure the power supply safety. With the quick expansion of electricity infrastructures, the failures of power transmission system are becoming more frequent, leading to economic loss and high risk of maintenance work under hazardous conditions. The existing automatic power line inspection utilizes advanced convolutional neural network (CNN) to improve the inspection efficiency, emerging as one promising solution. But the needed computational complexity is high since CNN inference demands large amount of multiplication-and-accumulation operations. In this paper, we alleviate this problem by utilizing the heterogeneous computing techniques to design a real-time on-site inspection system. Firstly, the required computational complexity of CNN inference is reduced using FFT-based convolution algorithms, speeding up the inference. Then we utilize the region of interest (ROI) extrapolation to predict the object detection bounding boxes without CNN inference, thus saving computing power. Finally, a heterogeneous computing architecture is presented to accommodate the requirements of proposed algorithms. According to the experiment results, the proposed design significantly improves the frame rate of CNN-based inspection visual system applied to power line inspection. The processing frame rate is also drastically improved. Moreover, the precision loss is negligible which means our proposed schemes are applicable for real application scenarios.


2012 ◽  
Vol 24 (12) ◽  
pp. 2897-2900
Author(s):  
曾贤强 Zeng Xianqiang ◽  
敬岚 Jing Lan ◽  
龙银东 Long Yindong ◽  
姚泽恩 Yao Ze’en ◽  
郭玉辉 Guo Yuhui

2014 ◽  
Vol 945-949 ◽  
pp. 1535-1538
Author(s):  
Min Jie Zhu ◽  
Sen Gang Ye ◽  
Bao Geng Jin

The exhaust valve failure may cause drainage pipe leakage, but most of exhaust valve are lack of leakage protection and real-time alarm function. A set of new intelligent exhaust valve can monitor, alarm and close drainage pipes in this paper. The system consists of main controller, power supply, valve body and actuator. The exhaust valve is leak, the system sends failure SMS to the server or maintainer, and exhaust valve is closed to prevent environmental pollution simultaneously. The main controller is the core unit, and consists of power circuit, detection and driving circuit, micro chip and GSM/GPRS module. The intelligent exhaust value is put into practice, and it solves leakage and alarm problems effectively.


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