Confronting Management Challenges in Highly Uncertain Natural Resource Systems: a Robustness–Vulnerability Trade-off Approach
نویسندگان
چکیده
This paper presents a framework for the study of policy implementation in highly uncertain natural resource systems in which uncertainty cannot be characterized by probability distributions. We apply the framework to parametric uncertainty in the traditional Gordon–Schaefer model of a fishery to illustrate how performance can be sacrificed (traded-off) for reduced sensitivity and hence increased robustness, with respect to model parameter uncertainty. With sufficient data, our robustness–vulnerability analysis provides tools to discuss policy options. When less data are available, it can be used to inform the early stages of a learning process. Several key insights emerge from this analysis: (1) the classic optimal control policy can be very sensitive to parametric uncertainty, (2) even mild robustness properties are difficult to achieve for the simple Gordon–Schaefer model, and (3) achieving increased robustness with respect to some parameters (e.g., biological parameters) necessarily results in increased The authors gratefully acknowledge financial support for this work under National Science Foundation grant BCS-0527744. A. A. Rodriguez · J. Dickeson Intelligent Embedded Systems Laboratory (IeSL), Department of Electrical Engineering, Arizona State University, Tempe, AZ 85287, USA A. A. Rodriguez e-mail: [email protected] O. Cifdaloz · J. M. Anderies (B) · M. A. Janssen School of Human Evolution and Social Change, Arizona State University, Tempe, AZ 85287, USA e-mail: [email protected] sensitivity (decreased robustness) with respect to other parameters (e.g., economic parameters). We thus illustrate fundamental robustness–vulnerability trade-offs and the limits to robust natural resource management. Finally, we use the framework to explore the effects of infrequent sampling and delays on policy performance.
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