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FTC of hidden Markov process with application to resource allocation in air operation
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作者 Neng Eva Wu Matthew Charies Ruschmann 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2011年第1期12-21,共10页
This paper investigates the feedback control of hidden Markov process(HMP) in the face of loss of some observation processes.The control action facilitates or impedes some particular transitions from an inferred cur... This paper investigates the feedback control of hidden Markov process(HMP) in the face of loss of some observation processes.The control action facilitates or impedes some particular transitions from an inferred current state in the attempt to maximize the probability that the HMP is driven to a desirable absorbing state.This control problem is motivated by the need for judicious resource allocation to win an air operation involving two opposing forces.The effectiveness of a receding horizon control scheme based on the inferred discrete state is examined.Tolerance to loss of sensors that help determine the state of the air operation is achieved through a decentralized scheme that estimates a continuous state from measurements of linear models with additive noise.The discrete state of the HMP is identified using three well-known detection schemes.The sub-optimal control policy based on the detected state is implemented on-line in a closed-loop,where the air operation is simulated as a stochastic process with SimEvents,and the measurement process is simulated for a range of single sensor loss rates. 展开更多
关键词 hidden Markov process(HMP) DECENTRALIZATION information fusion fault tolerant estimation air operation receding horizon control(RHC).
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Dynamic WTA optimization model of air defense operation of warships' formation 被引量:10
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作者 Li Jinjun Cong Rong Xiong Jiguang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2006年第1期126-131,共6页
WTA (weapon-target allocation) of air defense operation is a very complicated problem and current models focus on static and restricted WTA problem mostly. Based on the dynamic characteristics of air defense operati... WTA (weapon-target allocation) of air defense operation is a very complicated problem and current models focus on static and restricted WTA problem mostly. Based on the dynamic characteristics of air defense operational command and decision of warships' formation, a dynamic WTA model is established. Simulation results show that switch fire and repetition fire of anti-air weapon system affect the result of the air defense operation remarkably and the dynamic model is more satisfying than static ones. Related results are gained based on the analysis of the simulation results and the results are accordant with the intuitionistic tactical judgment. The model is some reference for the research of air defense C^3I system of warships' formation. 展开更多
关键词 warships' formation air defense operation dynamic weapon-target allocation.
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空中发射技术现状及趋势分析 被引量:8
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作者 辛朝军 蔡远文 姚静波 《装备学院学报》 2014年第5期67-73,共7页
空中发射技术具备快速响应航天发射所要求的快速性、机动性和灵活性等特性,是最具潜力的快速发射方式,越来越受到各航天大国的重视。对国内外空中发射技术发展脉络进行了分析,总结出了空中发射技术的发展特点与趋势,并对空中发射技术发... 空中发射技术具备快速响应航天发射所要求的快速性、机动性和灵活性等特性,是最具潜力的快速发射方式,越来越受到各航天大国的重视。对国内外空中发射技术发展脉络进行了分析,总结出了空中发射技术的发展特点与趋势,并对空中发射技术发展的部分关键技术进行了讨论,提出了技术发展途径。 展开更多
关键词 发射技术 空中发射 快速响应 航天发射 发展现状
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Influence of staff number and internal constellation on surgical site infection in an operating room 被引量:11
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作者 Sasan Sadrizadeh Ann Tammelin +1 位作者 Peter Ekolind Sture Holmberg 《Particuology》 SCIE EI CAS CSCD 2014年第2期42-51,共10页
Prediction of bacteria-carrying particle (BCP) dispersion and particle distribution released from staffmem- bers in an operating room (OR) is very important for creating and sustaining a safe indoor environment. P... Prediction of bacteria-carrying particle (BCP) dispersion and particle distribution released from staffmem- bers in an operating room (OR) is very important for creating and sustaining a safe indoor environment. Postoperative wound infections cause significant morbidity and mortality, and contribute to increased hospitalization time. Increasing the number of personnel within the OR disrupts the ventilation airflow pattern and causes enhanced contamination risk in the area of an open wound. Whether the amount of staffwithin the OR influences the BCP distribution in the surgical zone has rarely been investigated. This study was conducted to explore the influence of the number of personnel in the OR on the airflow field and the BCP distribution. This was performed by applying a numerical calculation to map the airflow field and Lagrangian particle tracking (LPT) for the BCP phase. The results are reported both for active sampling and passive monitoring approaches. Not surprisingly, a growing trend in the BCP concentration (cfu/ms) was observed as the amount of staff in the OR increased. Passive sampling shows unpredictable results due to the sedimentation rate, especially for small particles (5-10 i^m). Risk factors for surgical site infections (SSls) must be well understood to develop more effective prevention programs. 展开更多
关键词 air quality Surgical site infection airborne particle control Hospital operating room Ventilation system
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