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首页> 外文期刊>International Journal of Computer Network and Information Security >Triple Layered Encryption Algorithm for IEEE 802.11 WLANs in E-Government Services
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Triple Layered Encryption Algorithm for IEEE 802.11 WLANs in E-Government Services

机译:电子政务中IEEE 802.11 WLAN的三层加密算法

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摘要

Wireless local area network (WLAN) can provide e-government services at all levels, from local to national as the WLAN enabled devices have the flexibility to move from one place to another within offices while maintaining connectivity with the network. However, government organizations are subject to strict security policies and other compliance requirements. Therefore, WLAN must ensure the safeguard the privacy of individual data with the strictest levels of security. The 802.11 MAC specifications describe an encryption protocol called Wired Equivalent Privacy (WEP) which is used to protect wireless communications from eavesdropping. It is also capable of preventing unauthorized access. However, the WEP protocol often fails to accomplish its security goal due to the weakness in RC4 and the way it is applied in WEP protocol. This paper focuses the improvement of existing WEP protocol using the varying secret key for each transmission. This will remove the insecurities that currently make the RC4 unattractive for secured networking and this will add further cryptographic strength if applied to Rijndael algorithm. Our result shows that the proposed algorithm is more suitable for small and medium packets and AES for large packets.
机译:无线局域网(WLAN)可以提供从本地到国家的所有级别的电子政务服务,这是因为具有WLAN功能的设备可以灵活地从办公室内的一个地方移动到另一个地方,同时保持与网络的连接性。但是,政府组织必须遵守严格的安全策略和其他合规性要求。因此,WLAN必须以最严格的安全级别确保维护单个数据的隐私。 802.11 MAC规范描述了一种称为有线等效保密(WEP)的加密协议,该协议用于保护无线通信免遭窃听。它还能够防止未经授权的访问。但是,由于RC4的弱点及其在WEP协议中的应用方式,WEP协议通常无法实现其安全目标。本文着重于对每次传输使用可变密钥的现有WEP协议的改进。这将消除当前使RC4对安全网络失去吸引力的不安全因素,如果将其应用于Rijndael算法,则将进一步提高加密强度。我们的结果表明,该算法更适用于中小型数据包,适用于大数据包的AES。

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