Optimal management of replenishable resources in a predator-prey system with randomly fluctuating population
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Publication:1068760
DOI10.1016/0025-5564(86)90033-7zbMath0581.92026OpenAlexW2042237511WikidataQ115599893 ScholiaQ115599893MaRDI QIDQ1068760
Publication date: 1986
Published in: Mathematical Biosciences (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/0025-5564(86)90033-7
predator-preystochastic growthconstant effort harvestingsocial welfare functioneffort adjustment policyOptimal harvesting strategiesrandomly fluctuating populationreplenishable resources
Related Items (3)
Stationary probability distributions of some lotka-volterra types of stochastic predation systems ⋮ Exact solution for steady–state probability distribution of a simple stochastic lotka–volterra food chain ⋮ An Explicit Density Function for a Generalized Stochastic Food Chain of the Lotka–Volterra–Yeung Type
Cites Work
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- Dynamic programming and stochastic control
- Managing stochastic multispecies models
- Random environments and stochastic calculus
- A stochastic model for the economic management of a renewable animal resource
- Optimal control of a prey-predator system
- Random differential equations in science and engineering
- Optimal exploitation of a multi-species community
- Optimal harvesting strategies for stochastic single-species, multiage class models
- Diagrammatic representations of the exploitation of replenishable natural resources: Dynamic iterations
- Optimal Harvesting of a Randomly Fluctuating Resource. I: Application of Perturbation Methods
- Optimal Harvesting of a Randomly Fluctuating Resource. II: Numerical Methods and Results
- The Nature of Stochastic Equilibria
- An Asymptotic Theory of Growth Under Uncertainty
- Solutions of Fokker-Planck Equation with Applications in Nonlinear Random Vibration
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