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首页> 外文期刊>IEEE Transactions on Neural Networks >The design of a neural network with a biologically motivated architecture
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The design of a neural network with a biologically motivated architecture

机译:具有生物动力架构的神经网络的设计

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摘要

An associative neural network whose architecture is greatly influenced by biological data is described. The proposed neural network is significantly different in architecture and connectivity from previous models. Its emphasis is on high parallelism and modularity. The network connectivity is enriched by recurrent connections within the modules. Each module is, effectively, a Hopfield net. Connections within a module are plastic and are modified by associative learning. Connections between modules are fixed and thus not subject to learning. Although the network is tested with character recognition, it cannot be directly used as such for real-world applications. It must be incorporated as a module in a more complex structure. The architectural principles of the proposed network model can be used in the design of other modules of a whole system. Its architecture is such that it constitutes a good mathematical prototype to analyze the properties of modularity, recurrent connections, and feedback. The model does not make any contribution to the subject of learning in neural networks.
机译:描述了一种其结构受生物学数据影响很大的关联神经网络。所提出的神经网络在架构和连接性方面与以前的模型有很大不同。它的重点是高度并行性和模块化。模块内部的经常性连接丰富了网络连接性。每个模块实际上都是一个Hopfield网络。模块内的连接是塑料的,可以通过关联学习进行修改。模块之间的连接是固定的,因此无需学习。尽管该网络已经过字符识别测试,但不能直接用于实际应用。必须将其作为模块合并到更复杂的结构中。所提出的网络模型的体系结构原理可以用于整个系统的其他模块的设计中。它的架构使得它构成了一个很好的数学原型,可以分析模块化,循环连接和反馈的属性。该模型对神经网络的学习主题没有任何贡献。

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