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Software Development Strategies for High-Energy Physics Simulations Based on Quantum Field Theory

机译:基于量子场理论的高能物理模拟软件开发策略

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Let us review the main elements of strategies, which we identified in the development of high energy physics simulations. Based on exemplary Monte Carlo simulation projects, several conjectures for the general aspects of work on scientific software are presented, including openness to change, robustness against external changes, modular development processes, and the constant evolution of tests. The analyzed projects were developed over more than 30 years, much longer than the typical lifetime of computer industry software. Some general observations are drawn together with quantitative evaluation on how the quality of software, measured mainly by the precision of the simulation, grows together with the complexity of software and tests. We find these observations interesting, even if attempts to generalize may remain to a degree speculative, as every researcher is tuning that to the specific needs of their own application. In the future, this can be validated, adjusted, or extended by the experiences gained in other projects.
机译:让我们审查我们在高能物理模拟开发中确定的战略的主要内容。基于示例性蒙特卡罗仿真项目,提出了几个关于科学软件工作的一般方面的猜想,包括改变的开放性,对外部变化的鲁棒性,模块化开发过程和试验的不断发展。分析的项目经过30多年的发展,比计算机行业软件的典型寿命长得多。一些一般的观察结果与关于如何质量评估的定量评估,主要通过模拟精度测量,以及软件和测试的复杂性。我们发现这些观察结果很有趣,即使概括可能仍然是一项投机性,因为每个研究人员都在调整他们自己申请的特定需求。在未来,可以通过其他项目中获得的经验进行验证,调整或延长。

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