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A Voltage-Mode Sensing Scheme with Differential-Row Weight Mapping For Energy-Efficient RRAM-Based In-Memory Computing

机译:具有差分行权重映射的电压模式感测方案,用于节能RRAM基础内存计算

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The energy efficiency of RRAM-based in-memory matrix-vector multiplication (MVM) depends largely on the output sensing mechanism. We design a novel voltage-mode sensing configuration with differential-row weight mapping that achieves a 3.6x improvement in energy per multiply-accumulate (MAC) at the same read voltage compared to current-mode sensing, and avoids the nonlinear source-line dynamics issue that occurs in conventional voltage-mode sensing. We verify the MVM performance of our scheme by performing measurements using a RRAM array monolithically integrated with CMOS voltage-mode neurons. We compare the effects of weight normalization on MVM accuracy under two different weight mapping schemes, and provide guidance in selecting the scheme based on weight sparsity and consistency of the L-1 weight norm across the columns.
机译:基于RRAM的内存矩阵 - 矢量乘法(MVM)的能量效率在很大程度上取决于输出感测机制。我们设计一种具有差分行重量映射的新型电压模式感测配置,与电流模式感测相比,​​在相同的读取电压下实现了每次累积(MAC)的能量的3.6倍的能量,避免了非线性源线动态在传统电压模式感测中发生的问题。我们通过使用与CMOS电压模式神经元单片整合的RRAM阵列进行测量来验证我们的方案的MVM性能。我们在两种不同重量映射方案下比较重量归一化对MVM精度的影响,并在基于柱上的L-1重量标准的重量稀疏和L-1重量规范的一致性方面提供指导。

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