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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >LordCore: Energy-Efficient OpenCL-Programmable Software-Defined Radio Coprocessor
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LordCore: Energy-Efficient OpenCL-Programmable Software-Defined Radio Coprocessor

机译:LordCore:节能的OpenCL可编程软件定义的无线电协处理器

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This paper proposes a single instruction multiple data (SIMD) processor, which is programmed with high-level OpenCL language. The low-power processor is customized for executing multiple-input-multiple-output (MIMO) detection algorithms at a high performance while consuming very little power making it suitable for software-defined radio (SDR) applications. The novel combination of SIMD operations on a transport programmed multicore datapath allows saving power on both the execution front end and the back end, leading to very good energy efficiency with a compiler programmable design. We demonstrate the feasibility of the architecture with the layered orthogonal lattice detector and minimum mean-square-error MIMO algorithms, which can be used as a software-defined radio implementation of the 3GPP local thermal equilibrium r11 standard. Compared to other state-of-the-art SDR architectures, the proposed design adds features that improve programmer productivity with an insignificant power and area impact.
机译:本文提出了一种采用高级OpenCL语言编程的单指令多数据(SIMD)处理器。低功耗处理器经过定制,可在高性能的同时执行多输入多输出(MIMO)检测算法,而功耗却非常低,使其适合于软件定义的无线电(SDR)应用。通过在传输编程的多核数据路径上进行SIMD操作的新颖组合,可以节省执行前端和后端的功耗,并通过编译器可编程设计实现非常好的能源效率。我们使用分层正交晶格检测器和最小均方误差MIMO算法演示了该体系结构的可行性,该算法可用作3GPP局部热平衡r11标准的软件定义无线电实现。与其他最新的SDR架构相比,该提议的设计增加了一些功能,可在不影响功率和面积的情况下提高程序员的生产率。

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