Abstract:
An evolutionary algorithm is used to evolve personal contact networks representing the individuals in a population and the interactions between them. Such networks can be...Show MoreMetadata
Abstract:
An evolutionary algorithm is used to evolve personal contact networks representing the individuals in a population and the interactions between them. Such networks can be used to track the progress of an epidemic, as it passes from infected individuals to others. Two fitness functions are used: epidemic duration and epidemic spread. Each of these is evaluated in the context of new variants being introduced during the course of the epidemic. Individuals infected with one variant obtain immunity to that variant and possible partial immunity to future variants. Two frameworks for epidemic variants are presented. In the first, infectivity is coupled directly to how well an individual's immunity covers the variant. In the second, infectivity is decoupled, causing a much higher number of infections but with many of lessened severity due to immunity.
Published in: 2022 IEEE Conference on Computational Intelligence in Bioinformatics and Computational Biology (CIBCB)
Date of Conference: 15-17 August 2022
Date Added to IEEE Xplore: 26 August 2022
ISBN Information:
Funding Agency:
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Evolutionary Algorithms ,
- Epidemic Variants ,
- Infected Individuals ,
- Population Of Individuals ,
- Fitness Function ,
- Personal Networks ,
- Epidemic Spread ,
- High Number Of Infections ,
- Time Step ,
- Severe Infection ,
- Susceptible Individuals ,
- Tournament ,
- Mild Infection ,
- Binary String ,
- Adjacent Nodes ,
- Generation Of Variants ,
- Likelihood Of Infection ,
- Total Number Of Infections ,
- Parental Varieties ,
- Original Variant ,
- Number Of Edits ,
- Patient Zero
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Evolutionary Algorithms ,
- Epidemic Variants ,
- Infected Individuals ,
- Population Of Individuals ,
- Fitness Function ,
- Personal Networks ,
- Epidemic Spread ,
- High Number Of Infections ,
- Time Step ,
- Severe Infection ,
- Susceptible Individuals ,
- Tournament ,
- Mild Infection ,
- Binary String ,
- Adjacent Nodes ,
- Generation Of Variants ,
- Likelihood Of Infection ,
- Total Number Of Infections ,
- Parental Varieties ,
- Original Variant ,
- Number Of Edits ,
- Patient Zero