Pandemic Equation and COVID-19 Evolution

M. Shur
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Abstract

The Pandemic Equation describes multiple pandemic waves and has been applied to describe the COVID-19 pandemic. Using the generalized approaches of solid-state physics, we derive the Pandemic Equation, which accounts for the effects of pandemic mitigation measures and multiple pandemic waves. The Pandemic Equation uses slow and fast time scales for “curve flattening” and describing vaccination and mitigation measures and the Scaled Fermi–Dirac distribution functions for describing transitions between pandemic waves. The Pandemic Equation parameters extracted from the pandemic curves can be used for comparing different scenarios of the pandemic evolution and for extrapolating the pandemic evolution curves for the periods of time on the order of the instantaneous Pandemic Equation characteristic time constant. The parameter extraction for multiple locations could also allow for uncertainty quantification for such pandemic evolution predictions.
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大流行方程和 COVID-19 的演变
大流行方程描述了多种大流行波,并已用于描述 COVID-19 大流行。利用固态物理学的广义方法,我们推导出了大流行方程,该方程考虑到了大流行缓解措施和多重大流行波的影响。大流行方程使用慢速和快速时间尺度来 "平缓曲线 "并描述疫苗接种和缓解措施,使用标度费米-狄拉克分布函数来描述大流行波之间的转换。从大流行病曲线中提取的大流行病方程参数可用于比较大流行病演变的不同情况,以及推断大流行病演变曲线的时间段,其数量级与大流行病方程的瞬时特征时间常数相同。对多个地点的参数提取还可以对此类大流行病演变预测的不确定性进行量化。
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