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Simulation cache to expedite complex modeling and simulation processes

机译:仿真缓存可加快复杂的建模和仿真过程

摘要

A method is provided for determining optimum positions in a region for a plurality of sensors that are capable of detecting occurrence of a hazard in the region. The hazard may be a chemical, biological, and/or radiological hazard in solid, liquid or gas form. A “simulation cache” is provided that stores data representing interaction of the hazard with sensors at each of the plurality of candidate locations in the region for each of the plurality of sensor types. Data is then retrieved from the simulation cache as needed for evaluation a particular candidate sensor solution comprising one or more sensors of one or more sensor types at corresponding ones of the candidate locations. An optimization algorithm may be used to select a candidate sensor solution. The data that is retrieved from the simulation cache for a selected candidate sensor solution is evaluated with respect to certain performance criteria. The simulation cache greatly reduces the time required to generate an optimum sensor layout because it separates the hazard modeling and sensor performance modeling from the optimization algorithm. By capturing this data at one time for storage in the simulation cache, it is not necessary to re-run the hazard simulations for each candidate sensor location generated by the optimization algorithm.
机译:提供了一种方法,该方法用于确定能够检测该区域中的危险的发生的多个传感器在该区域中的最佳位置。危害可能是固体,液体或气体形式的化学,生物和/或放射危害。提供了“模拟高速缓存”,其存储表示对于多种传感器类型中的每种传感器,在区域中的多个候选位置中的每一个中,危害与传感器的相互作用的数据。然后根据需要从仿真高速缓存中检索数据,以评估特定的候选传感器解决方案,该解决方案包括在候选位置中的对应位置处的一个或多个传感器类型的一个或多个传感器。优化算法可以用于选择候选传感器解决方案。针对某些性能标准评估从模拟缓存中为选定的候选传感器解决方案检索的数据。仿真缓存极大地减少了生成最佳传感器布局所需的时间,因为它可以将危险模型和传感器性能模型与优化算法分开。通过一次捕获该数据以存储在仿真缓存中,就不必为优化算法生成的每个候选传感器位置重新运行危害仿真。

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