首页> 外文会议>Evolvable Hardware, 1999. Proceedings of the First NASA/DoD Workshop on >GeneticFPGA: evolving stable circuits on mainstream FPGA devices
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GeneticFPGA: evolving stable circuits on mainstream FPGA devices

机译:GeneticFPGA:主流FPGA器件上不断发展的稳定电路

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GeneticFPGA is a Java-based tool for evolving digital circuits on Xilinx XC4000EX/sup TM/ and XC4000XL/sup TM/ devices. Unlike other FPGA architectures popular with evolutionary hardware researchers, the XC4000 series architectures cannot accept arbitrary configuration data. Only a small subset of configuration bit patterns will produce operational circuits; other configuration bit patterns produce circuits which are unreliable and may even permanently damage the FPGA device. GeneticFPGA uses novel software techniques to produce legal circuit configurations for these devices, permitting experimentation with evolvable hardware on the larger, faster more mainstream devices. In addition, these techniques have led to methods for evolving circuits which are neither temperature, voltage, nor silicon dependent. An 8-bit counter and several digital frequency dividers have been successfully evolved using this approach. GeneticFPGA uses Xilinx's JBits/sup TM/ interface to control the generation of bitstream configuration data and the XHWIF portable hardware interface to communicate with a variety of commercially available FPGA-based hardware. GeneticFPGA, JBits, and XHWIF are currently being ported to the Xilinx Virtex/sup TM/ family of devices, which will provide greatly increased reconfiguration speed and circuit density.
机译:GeneticFPGA是基于Java的工具,用于在Xilinx XC4000EX / sup TM /和XC4000XL / sup TM /器件上发展数字电路。与进化硬件研究人员欢迎的其他FPGA架构不同,XC4000系列架构不能接受任意配置数据。只有一小部分配置位模式会产生运算电路。其他配置位模式会产生不可靠的电路,甚至可能永久损坏FPGA器件。 GeneticFPGA使用新颖的软件技术来为这些设备生成合法的电路配置,从而允许在更大,更快,更主流的设备上使用可进化的硬件进行试验。另外,这些技术已经导致用于发展电路的方法,该电路既不依赖于温度,电压也不依赖于硅。使用此方法已成功开发了8位计数器和几个数字分频器。 GeneticFPGA使用Xilinx的JBits / sup TM /接口来控制比特流配置数据的生成,并使用XHWIF便携式硬件接口来与各种基于市场的FPGA硬件进行通信。目前,GeneticFPGA,JBits和XHWIF已移植到Xilinx Virtex / sup TM /系列器件,这将大大提高重新配置速度和电路密度。

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