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Model-driven requirements engineering (MDRE) for real-time ultra-wide instantaneous bandwidth signal simulation

机译:模型驱动的需求工程(MDRE),用于实时超宽瞬时带宽信号仿真

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While conducting a cutting-edge research in a specific domain, we realize that (1) requirements clarity and correctness are crucial to our success [1], (2) hardware is hard to change, most work is in software requirements development, coding and testing [2], (3) requirements are constantly changing, so that configurability, reusability, scalability, adaptability, modularity and testability are important non-functional attributes [3], (4) cross-domain knowledge is necessary for complex systems [4], and (5) if our research is successful, the results could be applied to other domains with similar problems, hi this paper, we propose to use model-driven requirements engineering (MDRE) to model and guide our requirements/development, since models are easy to understand, execute, and modify. The domain for our research is Electronic Warfare (EW) real-time ultra-wide instantaneous bandwidth (IBW~1) signal simulation. The proposed four MDRE models are (1) Switch-and-Filter architecture, (2) multiple parallel data bit streams alignment, (3) post-ADC and pre-DAC bits re-mapping, and (4) Discrete Fourier Transform (DFT) filter bank. This research is unique since the instantaneous bandwidth we are dealing with is in gigahertz range instead of conventional megahertz.
机译:在特定领域进行前沿研究时,我们意识到(1)需求的清晰性和正确性对于我们的成功至关重要[1],(2)硬件难以更改,大部分工作在软件需求开发,编码和测试[2],(3)需求不断变化,因此可配置性,可重用性,可伸缩性,适应性,模块化和可测试性是重要的非功能属性[3],(4)跨域知识对于复杂系统来说是必需的[4] ],以及(5)如果我们的研究成功,则该结果可以应用于存在类似问题的其他领域。在本文中,我们建议使用模型驱动的需求工程(MDRE)来建模和指导我们的需求/开发,因为模型易于理解,执行和修改。我们研究的领域是电子战(EW)实时超宽瞬时带宽(IBW〜1)信号仿真。提出的四个MDRE模型是(1)开关和滤波器架构,(2)多个并行数据比特流对齐,(3)ADC后和DAC前比特重新映射以及(4)离散傅里叶变换(DFT) )过滤器组。这项研究是独一无二的,因为我们正在处理的瞬时带宽在千兆赫兹范围内,而不是传统的兆赫兹。

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