On Using Relative Information to Estimate Traits in a Darwinian Evolution Population Dynamics
Abstract
:1. Introduction
2. Review of Information Theory
2.1. Fisher’s Information Theory
- A1 :
- The support of G is independent of .
- A2 :
- is nonnegative and for all .
- A3 :
- , the set of continuously and twice differentiable functions of , for all .
2.2. Entropy and Relative Entropy
3. Evolution Population Dynamics and Relative Information
3.1. Single Darwinian Population Model with Multiple Traits
- (H1)
- is the joint distribution of the independent traits , each with mean 0 and variance .
- (H2)
- .
- (H3)
- The density of is given as at .
3.2. Supervised and Unsupervised Learning
3.2.1. Supervised Learning
3.2.2. Unsupervised Learning
3.3. Simulations
4. Conclusions
Funding
Data Availability Statement
Acknowledgments
Conflicts of Interest
Appendix A
Appendix A.1. Proof of Theorem 1
Appendix A.2. Proof of Theorem 2
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Kwessi, E. On Using Relative Information to Estimate Traits in a Darwinian Evolution Population Dynamics. Axioms 2024, 13, 406. https://doi.org/10.3390/axioms13060406
Kwessi E. On Using Relative Information to Estimate Traits in a Darwinian Evolution Population Dynamics. Axioms. 2024; 13(6):406. https://doi.org/10.3390/axioms13060406
Chicago/Turabian StyleKwessi, Eddy. 2024. "On Using Relative Information to Estimate Traits in a Darwinian Evolution Population Dynamics" Axioms 13, no. 6: 406. https://doi.org/10.3390/axioms13060406
APA StyleKwessi, E. (2024). On Using Relative Information to Estimate Traits in a Darwinian Evolution Population Dynamics. Axioms, 13(6), 406. https://doi.org/10.3390/axioms13060406