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根据FPGA的并行工作方式以及高速、高集成度的特点,采用Handel-C语言对改进型基因表达式克隆选择算法(IGE-CSA)进行编程。在基于FPGA的硬件平台上,实现了组合逻辑电路的自动合成。实验结果表明,采用基于FPGA硬件平台自动合成组合逻辑电路的方法,能获得更好更新颖的组合逻辑电路,同时减轻了设计者的负担,降低了组合逻辑电路的设计成本,为组合逻辑电路的自动合成方法得到实际应用提供了可能。
According to the parallel working mode of FPGA and the characteristics of high speed and high integration, the improved gene expression clone selection algorithm (IGE-CSA) is programmed in Handel-C language. On FPGA-based hardware platform, automatic synthesis of combinational logic circuit is realized. The experimental results show that the combinational logic circuit based on the FPGA hardware platform can be automatically synthesized to obtain a better and more innovative combinational logic circuit while reducing the burden on the designer and reducing the design cost of the combinational logic circuit Automatic synthesis methods have been practical applications.