Application of Domain Keys Identified Mail, Sender Policy Framework, Anti-Spam, and Anti-Virus: The Analysis on Mail Servers

Khairan Marzuki, N. Hanif, Article Info
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引用次数: 3

Abstract

Viruses spread through email are often sent by irresponsible parties that aim to infect email users' servers. This background encouraged the author to analyze the application of DKIM, SPF, anti-spam, and anti-virus to avoid spam, viruses, and spoofing activities. The goal is for the server to prevent spam, spoofing, and viruses to ensure the security and convenience of email users and prevent the impact of losses caused by them. The design and analysis of DKIM, SPF, anti-spam, and anti-virus applications use the NDLC methodology. The process includes designing spam, spoofing, and virus filtering systems and performing installation and configuration simulations. The next stage is implementation, during which the previously developed system is tested on the spam filtering system, spoofing, and viruses. The last stage is the monitoring stage, where supervision is conducted on the approach to determine its success level. This study concludes that applying the DKIM protocol can prevent spoofing through private and public key-matching methods for authentication. Meanwhile, the application of the SPF protocol can prevent spoofing by authorizing the IP address of the sending server. Additionally, SpamAssassin, ClamAV and Amavisd-New can prevent spam and viruses from entering by checking email headers, bodies, and attachments.
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域密钥识别邮件的应用、发件人策略框架、反垃圾邮件和反病毒——以邮件服务器为例分析
通过电子邮件传播的病毒通常是由不负责任的人发送的,目的是感染电子邮件用户的服务器。在这种背景下,作者分析了DKIM、SPF、反垃圾邮件和反病毒的应用,以避免垃圾邮件、病毒和欺骗活动。目的是防止垃圾邮件、欺骗和病毒,确保电子邮件用户的安全性和便利性,防止由此造成的损失的影响。DKIM、SPF、反垃圾邮件和反病毒应用程序的设计和分析使用NDLC方法。该过程包括设计垃圾邮件、欺骗和病毒过滤系统,并执行安装和配置模拟。下一个阶段是实现,在此期间,前面开发的系统在垃圾邮件过滤系统,欺骗和病毒上进行测试。最后一个阶段是监测阶段,对方法进行监督,以确定其成功程度。本研究的结论是,应用DKIM协议可以防止通过私钥和公钥匹配方法进行身份验证的欺骗。同时,SPF协议的应用可以通过对发送服务器的IP地址进行授权来防止欺骗。此外,SpamAssassin、ClamAV和Amavisd-New可以通过检查邮件头、正文和附件来防止垃圾邮件和病毒进入。
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