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Research Article

NAS-FD: Neural Architecture Search-Based Fraud Detection for Power Audit Data

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  • @ARTICLE{10.4108/eetsis.10860,
        author={Yuanzhong Zuo and Jingyi Hu and Rao Kuang and Ping Chen and Zhigao Zheng and Ze Zhou},
        title={NAS-FD: Neural Architecture Search-Based Fraud Detection for Power Audit Data},
        journal={EAI Endorsed Transactions on Scalable Information Systems},
        volume={12},
        number={6},
        publisher={EAI},
        journal_a={SIS},
        year={2026},
        month={1},
        keywords={Modern power systems, power audit data, fraud detection, convolutional neural network, neural architecture search},
        doi={10.4108/eetsis.10860}
    }
    
  • Yuanzhong Zuo
    Jingyi Hu
    Rao Kuang
    Ping Chen
    Zhigao Zheng
    Ze Zhou
    Year: 2026
    NAS-FD: Neural Architecture Search-Based Fraud Detection for Power Audit Data
    SIS
    EAI
    DOI: 10.4108/eetsis.10860
Yuanzhong Zuo1, Jingyi Hu1, Rao Kuang1, Ping Chen1,2,*, Zhigao Zheng3, Ze Zhou4
  • 1: State Grid Hubei Electric Power Co., Ltd.
  • 2: Wuhan Electric Power Technical College
  • 3: Wuhan University
  • 4: Wuhan University of Technology
*Contact email: chenp35@hb.sgcc.com.cn

Abstract

Power data auditing is the cornerstone of a reliable and efficient modern power system. Various deep learning models have been successfully applied to fraud detection in power audit data. However, most of these methods rely on manual trial-and-error and expert knowledge to design the neural architectures and hyper-parameters. To address this limitation, this paper proposes an innovative automated deep learning approach for fraud detection model design using genetic algorithm (GA)-based neural architecture search (NAS), termed NAS-FD. In NAS-FD, convolutional neural network (CNN) is employed as the primary detection model, leveraging its strong data learning and feature extraction capabilities. First, an effective encoding scheme is developed to represent the nueral architectures and hyper-parameters of CNN, as these parameters significantly influence the detection performance. Then, considering detection performance as the objective function, well-designed GA-based evolutionary operations are implemented to optimize the neural architectures and hyper-parameters of CNN, obtaining the optimized CNN. The detection performance of the proposed NAS-FD method is validated using an electricity theft dataset from the power auditing domain. Experimental results demonstrate that NAS-FD achieves superior detection performance compared with manually designed deep learning models in terms of four performance indices including accuracy, precision, recall, and F1-score.

Keywords
Modern power systems, power audit data, fraud detection, convolutional neural network, neural architecture search
Published
2026-01-14
Publisher
EAI
http://dx.doi.org/10.4108/eetsis.10860

Copyright © 2026 Yuanzhong Zuo et al., licensed to EAI. This is an open access article distributed under the terms of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/), which permits unlimited use, distribution and reproduction in any medium so long as the original work is properly cited.

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