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In-Memory Nearest Neighbor Search with FeFET Multi-Bit Content-Addressable Memories

机译:内存最近的邻居搜索使用FFFET多比特内容可寻址的记忆

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Nearest neighbor (NN) search is an essential operation in many applications, such as one/few-shot learning and image classification. As such, fast and low-energy hardware support for accurate NN search is highly desirable. Ternary content-addressable memories (TCAMs) have been proposed to accelerate NN search for few-shot learning tasks by implementing $L$ and Hamming distance metrics, but they cannot achieve software-comparable accuracies. This paper proposes a novel distance function that can be natively evaluated with multi-bit content-addressable memories (MCAMs) based on ferroelectric FETs (Fe-FETs) to perform a single-step, in-memory NN search. Moreover, this approach achieves accuracies comparable to floating-point precision implementations in software for NN classification and one/few-shot learning tasks. As an example, the proposed method achieves a 98.34% accuracy for a 5-way, 5-shot classification task for the Omniglot dataset (only 0.8% lower than software-based implementations) with a 3-bit MCAM. This represents a 13% accuracy improvement over state-of-the-art TCAM-based implementations at iso-energy and iso-delay. The presented distance function is resilient to the effects of FeFET device-to-device variations. Furthermore, this work experimentally demonstrates a 2-bit implementation of FeFET MCAM using AND arrays from GLOBALFOUNDRIES to further validate proof of concept.
机译:最近的邻居(NN)搜索是许多应用中的重要操作,例如一个/几秒钟学习和图像分类。因此,对于精确的NN搜索,非常希望的快速和低能量硬件支持是非常理想的。已经提出了三元内容可寻址的记忆(TCAM)加速NN搜索通过实现来搜索几次拍摄的学习任务 $ l $ 和汉明距离指标,但他们无法实现软件可比的准确性。本文提出了一种新颖的距离功能,可以利用基于铁电FET(FE-FET)的多比特内容可寻址存储器(MCAM)来自然地评估以执行单步,内存NN搜索。此外,这种方法可以实现与NN分类软件中的浮点精度实现相当的精度和一个/小射击学习任务。作为示例,该方法为Omniglot DataSet的5路5次分类任务实现了98.34%的精度(仅在基于软件的实现低0.8%),3位MCAM。这代表了在ISO-Energy和ISO延迟的最先进的TCAM实现中提高了13%的准确性改进。所提出的距离功能是弹性装置到装置变化的影响。此外,这项工作通过实验演示了FFET MCAM的2位实现,并从GlobalFoundries阵列进一步验证概念证明。

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