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A hybrid HW/SW 802.11ac/ax system design platform with ASIP implementation

机译:具有ASIP实现的混合HW / SW 802.11ac / ax系统设计平台

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Current and next generation WLAN devices have an increasing need for processing power to support new WLAN features that require high computation complexity. In this paper, we present our design for an 802.11ac/ax system with an application specific instruction-set processor (ASIP) to implement multiple disjoint system tasks at much faster speed compared to a general purpose processor. As a proof of concept, we implemented the channel SVD, channel compression/decompression and beam-forming weight computations at the same time in the embedded ASIP core to support the 802.11ac MU-MIMO beamforming feature. In addition, the design was synthesized in the Zynq zc706 evaluation board programmable logic (PL) along with the rest of the PHY. The actual task to be done by the ASIP core at any given time can be programmed via the zc706 processing system (PS) resulting in a very high hardware savings compared to an all hardware implementation.
机译:当前和下一代WLAN设备对处理能力的需求不断增长,以支持需要高计算复杂度的新WLAN功能。在本文中,我们介绍了具有专用指令集处理器(ASIP)的802.11ac / ax系统的设计,与通用处理器相比,该处理器可以以更快的速度实现多个不相交的系统任务。作为概念验证,我们在嵌入式ASIP内核中同时实现了信道SVD,信道压缩/解压缩和波束成形权重计算,以支持802.11ac MU-MIMO波束成形功能。此外,该设计还与其他PHY一起在Zynq zc706评估板可编程逻辑(PL)中进行了综合。可以通过zc706处理系统(PS)对在任何给定时间由ASIP内核完成的实际任务进行编程,与全硬件实现相比,节省了非常多的硬件。

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