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Enhanced Throughput and Energy-Efficient MRAM-Based NB-LDPC Decoder

机译:基于MRAM的增强型吞吐量和节能型NB-LDPC解码器

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In this paper, an adaptive and efficient memorization system based on Spin-Transfer-Torque Magneto-resistive Random Access Memory (STT-MRAM) is proposed to be implemented within Non Binary-Low Density Parity Check (NB-LDPC) Decoder. Based on the available MRAM types and array dimensions, new data mapping and efficient structure of the memorization system are proposed. The power consumption of the NB-LDPC decoder with STT-MRAM is evaluated and compared to the Static Random Access Memory (SRAM)-based one. Simulation results show that the proposed memorization system offers an energy reduction that reaches 73.35% for MRAM type I and 65.15% for MRAM type II. Moreover MRAM type I increases the throughput by 21.05% and MRAM type II by 43.75% for the NB-LDPC Decoder.
机译:本文提出了一种在非二进制低密度奇偶校验(NB-LDPC)解码器中实现的基于自旋转移转矩磁阻随机存取存储器(STT-MRAM)的自适应高效存储系统。基于可用的MRAM类型和阵列尺寸,提出了存储系统的新数据映射和有效结构。评估具有STT-MRAM的NB-LDPC解码器的功耗,并将其与基于静态随机存取存储器(SRAM)的功耗进行比较。仿真结果表明,所提出的存储系统对I型MRAM的能耗降低了73.35%,对II型MRAM的能耗降低了65.15%。此外,对于NB-LDPC解码器,I型MRAM的吞吐量增加了21.05%,II型MRAM的吞吐量增加了43.75%。

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