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FPGA based implementation of a Fuzzy Neural Network modular architecture for embedded systems

机译:基于FPGA的嵌入式系统模糊神经网络模块化架构的实现

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This paper presents a FPGA based approach for a modular architecture of Fuzzy Neural Networks (FNN) to embed with easily different topologies set up. The project is based on a Takagi - Hayashi (T-H) method for the construction and tuning of fuzzy rules, this is commonly referred as neural network driven fuzzy reasoning. The proposed architecture approach consists of two main configurable modules: a Multilayer Perceptron - MLP with sigmoidal activation function that composes the first module to determine a Fuzzy membership function; the second employs an MLP with pure linear activation function to define the consequents. The DSPBuilder® software along the Simulink® is used to connect, set and synthesize the Fuzzy Neural Network desired. Other hardware components employed in the architecture proposed cooperate to the system modularity. The system was tested and validated through a control problem and an interpolation problem. Several papers proposed different hardware architecture to implement hybrid systems by using Fuzzy logic and Neural Network. However, there is no approach with this specific neural network driven fuzzy reasoning by T-H method and the aim to be embedded. The Self-Organizing Map (SOM) and Levenberg-Marquardt backpropagation were used to train the FNN proposed off-line.
机译:本文提出了一种基于FPGA的模糊神经网络(FNN)模块化体系结构的方法,该方法可嵌入容易建立的不同拓扑。该项目基于Takagi-Hayashi(T-H)方法来构建和调整模糊规则,这通常称为神经网络驱动的模糊推理。所提出的体系结构方法包括两个主要的可配置模块:具有S形激活函数的多层感知器-MLP,它构成第一个模块来确定模糊隶属函数。第二种采用具有纯线性激活函数的MLP来定义结果。 Simulink®上的DSPBuilder®软件用于连接,设置和合成所需的模糊神经网络。所提出的体系结构中采用的其他硬件组件与系统模块化协作。通过控制问题和插值问题对系统进行了测试和验证。几篇论文提出了使用模糊逻辑和神经网络来实现混合系统的不同硬件体系结构。但是,这种基于神经网络的基于T-H方法的模糊推理方法并没有嵌入目标。自组织图(SOM)和Levenberg-Marquardt反向传播用于离线训练FNN建议。

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