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Titlebook: Human-in-the-Loop Simulations; Methods and Practice Ling Rothrock,S. Narayanan Book 2011 Springer-Verlag London Limited 2011 Decision Makin

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An Integrated Pedestrian Behavior Model Based on Extended Decision Field Theory and Social Force Mo) social force model (SFM) to represent physical interactions and congestions among people and the environment, and (3) dynamic planning algorithm involving AND/OR graphs. Furthermore, SFM is enhanced with the vision of each individual, and both individual and group behaviors are considered. The pro
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Determining the Number of Simulation Runs: Treating Simulations as Theories by Not Sampling Their Bastic simulation, the answer is more complex. Different researchers have proposed and used different heuristics. A review of the models presented at a conference on cognitive modeling illustrates the range of solutions and problems in this area. We present the argument that because the simulation is
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Training for Metacognition in Simulated Environments,, due to its focus on relatively static domains, there are several constraints in applying the concept to real-world domains that are highly complex and dynamic in nature. For example, being able to self-regulate the selection of our skills and strategies is essential to maintain a high level of hum
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,Trade Space Exploration: Assessing the Benefits of Putting Designers “Back-in-the-Loop” during Engitely solving engineering design optimization problems. This is achieved by combining multi-dimensional data visualization techniques with visual steering commands to allow designers to “steer” the optimization process while searching for the best, or Pareto optimal, designs. After introducing the tr
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Analyzing Global Epidemiology of Diseases Using Human-in-the-Loop Bio-Simulations,th knowledge of their epidemiology. The only practical method for discovering global epidemiological knowledge and identifying prophylactic strategies is simulation. However, several interrelated factors, including increasing model complexity, stochastic nature of diseases, and short analysis timefr
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,Aiding Understanding of a Contested Information Environment’s Effect on Operations,rough cyberspace. Modeling and simulation can be used to increase the understanding of potential effects these attacks may generate and guide the development of contingency planning. The increased understanding and more comprehensive and focused contingency planning will enhance the ability of organ
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Interactive Model-Based Decision Making for Time-Critical Vehicle Routing, with optimization modelling algorithms in large-scale systems operating in dynamic and uncertain environments. In military applications, such as search and rescue/destroy missions or real-time route planning or re-planning provide time windows within which critical decisions need to be made. Using
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