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A top-down design methodology and its implementation for VCSEL-based Optical Links Design

机译:基于VCSEL的光链路设计的自顶向下设计方法及其实现

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In order to find the optimal design for a given specification of an optical communication link, an integrated simulation of electronic, optoelectronic, and optical components of a complete system is required. It is very important to be able to simulate at both system level and detailed model level. This kind of model is feasible due to the high potential of Verilog-AMS language. In this paper, we propose an effective top-down design methodology and employ it in the development of a complete VCSEL-based optical links simulation. The principle of top-down methodology is that the development would proceed from the system to device level. To design a hierarchical model for VCSEL based optical links, the design framework is organized in three levels of hierarchy. The models are developed, and implemented in Verilog-AMS. Therefore, the model parameters are fitted to measured data. A sample transient simulation demonstrates the functioning of our implementation. Suggestions for future directions in top-down methodology used for optoelectronic systems technology are also presented.
机译:为了找到给定规格的光通信链路的最佳设计,需要对整个系统的电子,光电和光学组件进行集成仿真。能够在系统级别和详细模型级别上进行仿真非常重要。由于Verilog-AMS语言的潜力很大,因此这种模型是可行的。在本文中,我们提出了一种有效的自上而下的设计方法,并将其用于基于VCSEL的完整光链路仿真的开发中。自上而下方法的原理是,开发将从系统级到设备级。为了为基于VCSEL的光链路设计分层模型,设计框架分为三个层次。这些模型是在Verilog-AMS中开发和实现的。因此,模型参数适合于测量数据。瞬态仿真示例演示了我们实现的功能。还提出了用于光电系统技术的自上而下方法的未来方向的建议。

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