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Efficient precise weight tuning protocol considering variation of the synaptic devices and target accuracy

机译:考虑突触设备变化和目标精度的高效精确体重调整协议

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In off-chip training, we can improve the inference accuracy of hardware-based neural networks by reducing the conductance (weight) variation of synaptic devices through precise program/erase control in weight mapping. However, the precise weight tuning protocol (PWTP) requires a significant amount of time because it requires repeated read-verify-write cycles for each synapse device. In this paper, we propose an efficient PWTP method to significantly reduce the weight mapping time by greatly reducing the number of synaptic devices to which PWTP should be applied. In the proposed method, the effect of weight variation of synaptic devices on the inference accuracy of neural networks depends largely on which layer the synaptic devices belong to. Using our layer-selection method, the required percentage of PWTP-applied synaptic devices is can be reduced by up to 2600 times compared to that of the conventional method where PWTP is applied to all or part of the synaptic devices which are simply ranked by the weight magnitude. Also, three criteria of variation sensitivity are evaluated and compared in the method of selecting synaptic devices to which PWTP is applied within the selected layer. (C) 2019 Elsevier B.V. All rights reserved.
机译:在芯片外训练中,我们可以通过权重映射中的精确程序/擦除控制来减少突触设备的电导(权重)变化,从而提高基于硬件的神经网络的推理精度。但是,精确的权重调整协议(PWTP)需要大量时间,因为它需要为每个突触设备重复读取-验证-写入周期。在本文中,我们提出了一种有效的PWTP方法,通过大大减少应应用PWTP的突触设备的数量来显着减少权重映射时间。在所提出的方法中,突触设备的权重变化对神经网络推理精度的影响在很大程度上取决于突触设备属于哪一层。使用我们的层选择方法,与传统方法相比,传统方法将PWTP应用于全部或部分突触设备,而传统方法只是简单地将PWTP排名,而PWTP应用于突触设备的百分比可减少2600倍。体重。此外,在选择在选定层中应用了PWTP的突触设备的方法中,评估并比较了三个变化敏感性标准。 (C)2019 Elsevier B.V.保留所有权利。

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