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Efficient realizations of a sound propagation processor as a cellular nonlinear network

机译:高效地实现声音传播处理器作为蜂窝非线性网络

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This paper investigate several aspects for efficiently implementing a sound propagation processor as a nonlinear cellular network. Starting from a partial differential wave propagation equation an equivalent cellular array is defined to simulate a certain 2-dimensional scenario space where various obstacles and signal sources may be positioned arbitrarily. The defining equations in the initial model with 5 state variables per cell are redefined into a much faster model with 2 state variables per cell. Consequently two cell processors (the state and the output processors) are defined from the perspective of implementing arrays of such interconnected processors in FPGA technology. Finite precision effects were investigated concluding that at least 10 bits precision is necessary in order to have acceptable simulation errors.
机译:本文研究了几个方面,以有效地实现声音传播处理器作为非线性蜂窝网络。 从局部差波传播方程开始,定义了等效蜂窝阵列以模拟某个二维场景空间,其中各种障碍物和信号源可以任意定位。 每个单元格的5个状态变量的初始模型中的定义方程被重新定义为具有每个单元格的2个状态变量更快的模型。 因此,两个小区处理器(状态和输出处理器)由在FPGA技术中实现这种互连处理器的阵列的视角来定义。 研究了有限的精度效果得出结论,至少有10位精度是必要的,以便具有可接受的模拟误差。

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