Protecting the Vulnerable during a Pandemic with Uncertain Vaccine Arrival and Reinfection Journal Article uri icon

Overview

abstract

  • We study optimal targeted social distancing policy in a SIR model with multiple risk groups and uncertain arrival time for a vaccine or cure. If the (expected) arrival date is within 1.5 years, policy is largely insensitive to the form of the vaccine arrival distribution, be it exponential, one with an inverted U-shaped hazard rate, or deterministic. But with a longer arrival time, optimal policy depends both on the form of the distribution and the expected arrival time. Reinfection leads to more stringent policy, though expected deaths under optimal policy remain roughly constant for a reinfection rate below 30 percent. Policy that targets different risk groups achieves only modest increases in efficiency for our calibration. We implement the optimization using dynamic programming, and we present and evaluate an approximation that reduces the dimension of the state space needed to consider multiple risk groups.

publication date

  • January 1, 2020

Date in CU Experts

  • January 27, 2025 2:25 AM

Full Author List

  • Iverson T; Karp LS; Peri A

author count

  • 3

Other Profiles