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模糊-专家控制在智能消磁中的应用研究 总被引:7,自引:2,他引:5
综合消磁是处理舰船固定磁性的重要手段.长期以来,由于综合消磁工艺的复杂性,使得这项工作在很大程度上依赖人工.实现消磁自动化,就是要将工作人员从繁重的脑体劳动中解放出来,提高工作效率.目前的新型消磁站已经实现了数据采集、统计自动化,不仅基本免除了工作人员的体力劳动,也从一定程度上减轻了消磁技师的脑力劳动.然而由于需要人工参与决策,综合消磁的效果和效率仍然十分依赖于人的因素.所以,实现综合消磁工作的完全自动化,补偿电流值组合的智能化决策是关键问题.本文在分析以前所做工作的基础上,运用模糊控制理论构造模糊-专家控制器,替代人工决策过程以实现自动化消磁. 相似文献
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通过对国内自动消防设施设备存在问题的归纳,结合城市消防远程监控系统实际功能的实现,从监控终端、通信网络、信息中心三个方面提高系统的容错能力,阐述了实际建设和调试过程中的解决办法,并对系统的可靠性和安全性进行了讨论。 相似文献
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针对防空导弹体系建模的复杂性,探讨研究防空导弹体系的Agent建模方法.提出了基于G/A矩阵的Agent建模方法步骤,通过分析角色之间的关系描述了Agent组织结构,给出了角色类和Agent类的统一定义,并建立了Agent结构框架和类实现模型,最后构建了基于FIPA规范的MAS综合集成框架.该方法的提出,为防空导弹体系的进一步建模提供了方法依据. 相似文献
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We seek dynamic server assignment policies in finite‐capacity queueing systems with flexible and collaborative servers, which involve an assembly and/or a disassembly operation. The objective is to maximize the steady‐state throughput. We completely characterize the optimal policy for a Markovian system with two servers, two feeder stations, and instantaneous assembly and disassembly operations. This optimal policy allocates one server per station unless one of the stations is blocked, in which case both servers work at the unblocked station. For Markovian systems with three stations and instantaneous assembly and/or disassembly operations, we consider similar policies that move a server away from his/her “primary” station only when that station is blocked or starving. We determine the optimal assignment of each server whose primary station is blocked or starving in systems with three stations and zero buffers, by formulating the problem as a Markov decision process. Using this optimal assignment, we develop heuristic policies for systems with three or more stations and positive buffers, and show by means of a numerical study that these policies provide near‐optimal throughput. Furthermore, our numerical study shows that these policies developed for assembly‐type systems also work well in tandem systems. © 2008 Wiley Periodicals, Inc. Naval Research Logistics, 2008 相似文献
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Magnetic resonance imaging and other multifunctional diagnostic facilities, which are considered as scarce resources of hospitals, typically provide services to patients with different medical needs. This article examines the admission policies during the appointment management of such facilities. We consider two categories of patients: regular patients who are scheduled in advance through an appointment system and emergency patients with randomly generated demands during the workday that must be served as soon as possible. According to the actual medical needs of patients, regular patients are segmented into multiple classes with different cancelation rates, no‐show probabilities, unit value contributions, and average service times. Management makes admission decisions on whether or not to accept a service request from a regular patient during the booking horizon to improve the overall value that could be generated during the workday. The decisions should be made by considering the cancelation and no‐show behavior of booked patients as well as the emergency patients that would have to be served because any overtime service would lead to higher costs. We studied the optimal admission decision using a continuous‐time discrete‐state dynamic programming model. Identifying an optimal policy for this discrete model is analytically intractable and numerically inefficient because the state is multidimensional and infinite. We propose to study a deterministic counterpart of the problem (i.e., the fluid control problem) and to develop a time‐based fluid policy that is shown to be asymptotically optimal for large‐scale problems. Furthermore, we propose to adopt a mixed fluid policy that is developed based on the information obtained from the fluid control problem. Numerical experiments demonstrate that this improved policy works effectively for small‐scale problems. © 2016 Wiley Periodicals, Inc. Naval Research Logistics 63: 287–304, 2016 相似文献
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