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Collusion-Resistant Jamming for Securing Legacy Clients in Wireless Networks

机译:用于保护无线网络中的传统客户端的串抗干扰

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摘要

Existing physical layer security schemes are inapplicable to legacy devices operating on long coherence-time channels, since they demand changes in the physical layer. To this end, a new physical-layer security scheme is developed to secure legacy clients. In this scheme, secret keys are generated by a client and transmitted to the access point (AP). To protect these keys, a separated device called secrecy protector (SP) transmits jamming signals to prevent eavesdroppers from overhearing the keys. The SP is equipped with multiple antennas, each of which transmits an independent jamming stream with a pseudo-preamble. Since the SP can share jamming signals with the AP secretly, the AP can use a certain analog network coding scheme to remove jamming signals and decode the keys. In contrast, eavesdroppers have no knowledge of jamming signals to decode the keys. However, the long coherence-time channels are vulnerable to eavesdroppers, as they can guess the channel coefficients in a brute force way and then remove the jamming signals. Thus, frequency diversity is exploited to enhance the security of the system. Moreover, the design of jamming mechanisms resists collusion among eavesdroppers. Therefore, secret keys can be secretly shared between the AP and a client. The developed scheme is implemented on a software-defined radio platform. Performance results demonstrate that it can effectively deliver secure communications without any changes to the physical layer of legacy clients.
机译:现有物理层安全方案是不适用于在长期相干时通道上运行的传统设备,因为它们需要物理层的变化。为此,开发了一种新的物理层安全方案来保护传统客户端。在该方案中,密钥由客户端生成并发送到接入点(AP)。为了保护这些键,称为保密保护器(SP)的分离设备传输干扰信号以防止窃听者释放钥匙。 SP配备有多个天线,每个天线用伪前导码发送独立的干扰流。由于SP可以秘密地与AP共享干扰信号,因此AP可以使用某种模拟网络编码方案来消除干扰信号并解码键。相比之下,窃听者没有了解干扰信号以解码键。然而,长相干时间通道容易受到窃听者的影响,因为它们可以猜测蛮力方式的沟道系数,然后去除干扰信号。因此,利用频率分集来增强系统的安全性。此外,干扰机构的设计抵抗了窃听者之间的勾结。因此,可以在AP和客户端之间暗中共享密钥。开发方案是在软件定义的无线电平台上实现的。性能结果表明它可以有效地提供安全通信,而不会对遗留客户端的物理层进行任何变化。

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