Processing-in-memory (PIM) is a promising architecture to design various types of neural network accelerators as it ensures the efficiency of computation together with Resistive Random Access Memory (ReRAM). ReRAM has now become a promising solution to enhance computing efficiency due to its crossbar structure. In this paper, a ReRAM-based PIM neural network accelerator is addressed, and different kinds of methods and designs of various schemes are discussed. Various models and architectures implemented for a neural network accelerator are determined for research trends. Further, the limitations or challenges of ReRAM in a neural network are also addressed in this review
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
As data movement operations and power-budget become key bottlenecks in the design of computing syste...
As data movement operations and power-budget become key bottlenecks in the design of computing syste...
Image Processing has become an extremely popular field of application for Neural Networks. Convoluti...
Processing-in-Memory (PIM) based on Resistive Random Access Memory (RRAM) is an emerging acceleratio...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
Reinforcement learning (RL) has been examined to learn when an agent interacts continually with an e...
Workloads involving higher computational operations require impressive computational units. Computat...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
As data movement operations and power-budget become key bottlenecks in the design of computing syste...
As data movement operations and power-budget become key bottlenecks in the design of computing syste...
Image Processing has become an extremely popular field of application for Neural Networks. Convoluti...
Processing-in-Memory (PIM) based on Resistive Random Access Memory (RRAM) is an emerging acceleratio...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
In-memory computing (IMC) has emerged as a promising concept for neural accelerators. While the ener...
Reinforcement learning (RL) has been examined to learn when an agent interacts continually with an e...
Workloads involving higher computational operations require impressive computational units. Computat...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...
In-memory computing (IMC) refers to non-von Neumann architectures where data are processed in situ w...