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Dynamically Reconfigurable Analog Circuit Design Automation Through Multiobjective Optimization and Direct Execution

机译:通过多目标优化和直接执行实现可动态重构的模拟电路设计自动化

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Fast analog circuit design and rapid prototyping is increasingly required in mixed-signal designs to keep pace with the digital part in order to meet stringent time to market constraints. In order to achieve these goals heavy reliance on analog design automation and prototyping platforms is required. This paper presents an analog circuit multiobjective design methodology combined with a reconfigurable analog platform. The complete prototyping system is composed of Field-Programmable Analog Arrays (FPAAs) and Field Programmable Gate Arrays (FPGAs) on which the synthesized designs are implemented and validated in order to optimize the desired analog circuit. Compared with simulation based methodologies important gains in total design time are achieved. We applied this methodology on a case study of a rejecter filter.
机译:在混合信号设计中越来越需要快速模拟电路设计和快速原型设计,以保持与数字部分的速度,以满足严格的市场限制时间。为了实现这些目标,需要对模拟设计自动化和原型平台进行厚重的依赖。本文介绍了一种与可重新配置模拟平台相结合的模拟电路多目标设计方法。完整的原型化系统由现场可编程模拟阵列(FPAAS)和现场可编程门阵列(FPGA)组成,在其上实现和验证合成设计,以优化所需的模拟电路。与基于仿真的方法相比,实现了总设计时间的重要收益。我们在拒绝过滤器的案例研究中应用了这种方法。

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