Application of Data Security Protection in Smart Grid Based on Computer Electronic Technology

Xiangguo Liu, Huijun Du, Zhonglong Wang, Jianfei Chen, Jia Peng, Yue Liu
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Abstract

With the continuous improvement of the intelligence level of the State Grid, data security protection in power system automation has become an important challenge for the development of power enterprises. In order to solve this problem, this article is based on the research of power system structure, data types, and the current development status of security protection, combined with computer electronics technology, to conduct in-depth research on data security protection in power system automation, and establish a security protection model based on its theoretical foundation. In order to verify the effectiveness of the model, this paper tested it from three dimensions: data security protection degree, risk processing efficiency, and response time, and compared it with traditional security protection models. The test results show that under different test cases, the maximum protection degree of the data security protection model proposed in this article reaches 95.16%, and the average protection degree is about 91.88%. From the specific test results, it can be seen that the application of data security protection in power system automation based on computer electronic technology has strong operability.
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基于计算机电子技术的智能电网数据安全保护应用
随着国家电网智能化水平的不断提高,电力系统自动化中的数据安全防护已成为电力企业发展的重要难题。为了解决这一问题,本文在研究电力系统结构、数据类型、安全防护发展现状的基础上,结合计算机电子技术,对电力系统自动化中的数据安全防护进行了深入研究,并在其理论基础上建立了安全防护模型。为了验证该模型的有效性,本文从数据安全防护程度、风险处理效率、响应时间三个维度对其进行了测试,并与传统的安全防护模型进行了对比。测试结果表明,在不同的测试情况下,本文提出的数据安全保护模型的最大保护度达到 95.16%,平均保护度约为 91.88%。从具体的测试结果可以看出,基于计算机电子技术的数据安全保护在电力系统自动化中的应用具有较强的可操作性。
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