用于超高速无线局域网的高吞吐量低功耗CCMP架构

S. A. Hoseini, Behnam Khodabandeloo, Mahdi Jelodari Mamaghani, P. Teymoori, N. Yazdani
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引用次数: 4

摘要

考虑到无线便携设备的普及和多媒体应用的发展趋势,获得高速,特别是高吞吐量的无线信道是非常重要的。无线设备除了存在安全问题外,还存在吞吐量不足和功耗增加的问题。因此,设计一种安全、高速、低功耗的无线设备将是对全球需求的合适回应。在本文中,我们提出了一个解决方案,以减少加密开销,我们几乎消除它。在此基础上,提出了基于分组链消息认证码协议(CCMP)的计数器模式的定制硬件架构。该协议是IEEE 802.11i标准的基本安全架构。为了提高吞吐量和减少开销,加密是在空闲时间间隔完成的,例如IEEE 802.11i标准中使用的DCF帧间空间(DIFS)。为了克服处理这些时间间隔的限制,提出了一种多核结构。此外,为了降低功耗,为处理内核实现了一个特定的调度器。在提出的架构中,我们在MPDU (MAC协议数据单元)和A-MSDU(聚合MAC服务数据单元)输入帧的单核模式下实现了高达2Gbps的吞吐量,在A-MPDU(聚合MPDU)输入帧的多核模式下实现了17Gbps的吞吐量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High throughput low power CCMP architecture for very high speed wireless LANs
Considering the pervasion of wireless portable devices and growing trends in the use of multimedia applications, access to a high speed and, especially, a high throughput wireless channel are of significant importance. In addition to security concerns in wireless devices, deficiency in throughput and also increase in power consumption are introduced to the system by applying security. Therefore, designing a secure, high-speed wireless device with low power consumption would be a suitable response to worldwide demands. In this paper, we propose a solution to reduce encryption overhead and we almost eliminate it. Furthermore, a customized hardware architecture for Counter Mode with Cipher Block Chaining Message Authentication Code Protocol (CCMP) is proposed. This protocol is the fundamental security architecture of IEEE 802.11i standard. To improve throughput and reduce overhead, encryption is accomplished in the spare time intervals, such as DCF Inter-Frame Spaces (DIFS) used in IEEE 802.11i standard. In order to overcome the restrictions in dealing with these time intervals, a multi-core structure is proposed. Moreover, to reduce power consumption, a particular scheduler is implemented for processing cores. In the proposed architecture, we achieve up to 2Gbps throughput in the single core mode for MPDU (MAC Protocol Data Unit) and A-MSDU (Aggregated MAC Service Data Unit) input frames, and 17Gbps throughput in multi core mode for A-MPDU (Aggregated MPDU) input frames.
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