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An effective VHDL-AMS simulation algorithm with event

机译:具有事件的有效VHDL-AMS仿真算法

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VHDL-AMS is a suitable language to describe mixed signal circuits. The nature of analog and digital simulation is different, so they work with two different simulation kernels. Synchronization between these two kernels (the analog solver and the digital kernel) is an important challenge in the mixed signal simulation subject. In this paper we introduce an algorithm for mixed signal simulation that works based on reducing the analog and digital simulation interaction. When the simulator switches to analog simulation, the analog solver initiates the analog parameters to start analog simulation. Resuming the analog simulation needs some additional steps; in this algorithm we eliminate unnecessary switchings between analog and digital simulation engines. We first explain our simulator, then we describe our new scheduling algorithm. The efficiency of the new synchronization algorithm is shown by examples. Simulation results show that the newly developed algorithm can speed up the simulation in comparison with the canonical algorithm.
机译:VHDL-AMS是描述混合信号电路的合适语言。模拟和数字模拟的性质是不同的,因此它们与两个不同的模拟内核一起使用。这两个内核之间的同步(模拟求解器和数字内核)是混合信号仿真对象中的重要挑战。本文介绍了一种基于降低模拟和数字仿真交互的混合信号仿真算法。当模拟器切换到模拟仿真时,模拟求解器启动模拟参数以开始模拟模拟模拟。恢复模拟模拟需要一些额外的步骤;在该算法中,我们消除了模拟和数字仿真引擎之间不必要的切换。我们首先解释我们的模拟器,然后我们描述了我们的新调度算法。示例显示了新的同步算法的效率。仿真结果表明,与规范算法相比,新开发的算法可以加速模拟。

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