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171.
在WDM光纤通信系统中充当分波 合波器的全介质F B型多腔窄带滤光片的膜层层数较多,一般采用规整膜系结构,其各层膜的光学厚度均为监控波长的1 4整数倍.但仅采用规整膜层的膜系往往不能完全满足设计指标.因此,提出一种在基本满足设计指标的多层规整膜系上叠加少量非规整膜层的膜系设计方法,其中非规整膜层的光学厚度是在计算机上借助最优化方法寻优而得. 相似文献
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In this article, we introduce the capacitated warehouse location model with risk pooling (CLMRP), which captures the interdependence between capacity issues and the inventory management at the warehouses. The CLMRP models a logistics system in which a single plant ships one type of product to a set of retailers, each with an uncertain demand. Warehouses serve as the direct intermediary between the plant and the retailers for the shipment of the product and also retain safety stock to provide appropriate service levels to the retailers. The CLMRP minimizes the sum of the fixed facility location, transportation, and inventory carrying costs. The model simultaneously determines warehouse locations, shipment sizes from the plant to the warehouses, the working inventory, and safety stock levels at the warehouses and the assignment of retailers to the warehouses. The costs at each warehouse exhibit initially economies of scale and then an exponential increase due to the capacity limitations. We show that this problem can be formulated as a nonlinear integer program in which the objective function is neither concave nor convex. A Lagrangian relaxation solution algorithm is proposed. The Lagrangian subproblem is also a nonlinear integer program. An efficient algorithm is developed for the linear relaxation of this subproblem. The Lagrangian relaxation algorithm provides near‐optimal solutions with reasonable computational requirements for large problem instances. © 2008 Wiley Periodicals, Inc. Naval Research Logistics, 2008 相似文献
174.
This article studies the optimal capacity investment problem for a risk‐averse decision maker. The capacity can be either purchased or salvaged, whereas both involve a fixed cost and a proportional cost/revenue. We incorporate risk preference and use a consumption model to capture the decision maker's risk sensitivity in a multiperiod capacity investment model. We show that, in each period, capacity and consumption decisions can be separately determined. In addition, we characterize the structure of the optimal capacity strategy. When the parameters are stationary, we present certain conditions under which the optimal capacity strategy could be easily characterized by a static two‐sided (s, S) policy, whereby, the capacity is determined only at the beginning of period one, and held constant during the entire planning horizon. It is purchased up to B when the initial capacity is below b, salvaged down to Σ when it is above σ, and remains constant otherwise. Numerical tests are presented to investigate the impact of demand volatility on the optimal capacity strategy. © 2016 Wiley Periodicals, Inc. Naval Research Logistics 63: 218–235, 2016 相似文献
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随着高速ADC器件和高性能通用处理器的发展,雷达的数字化程度越来越高。分析了数字阵列雷达的优点;介绍了现有的典型数字阵列雷达系统,总结了数字阵列雷达的典型结构;介绍了高速ADC器件、高速采集板、正交解调和通道均衡等关键技术的发展现状。随着相关技术的不断进步,阵列雷达必然向着数字化、软件化和多功能的方向发展。 相似文献
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We study an infinite‐horizon, N‐stage, serial production/inventory system with two transportation modes between stages: regular shipping and expedited shipping. The optimal inventory policy for this system is a top–down echelon base‐stock policy, which can be computed through minimizing 2N nested convex functions recursively (Lawson and Porteus, Oper Res 48 (2000), 878–893). In this article, we first present some structural properties and comparative statics for the parameters of the optimal inventory policies, we then derive simple, newsvendor‐type lower and upper bounds for the optimal control parameters. These results are used to develop near optimal heuristic solutions for the echelon base‐stock policies. Numerical studies show that the heuristic performs well. © 2009 Wiley Periodicals, Inc. Naval Research Logistics, 2010 相似文献
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针对小型无人飞行器位置姿态估计问题,提出了一种基于视觉图像目标特征的相对位姿估计算法。应用Camshift算法获取目标初始位置,利用非线性尺度空间下的KAZE特征进行跟踪区域特征点提取,与源目标特征点进行匹配,得到精确的目标位置信息,实现了在图像平面内的目标快速跟踪,并得到机体轴系下无人飞行器与目标间相对位置和姿态角的估计值。对算法进行了实验验证,具有优良的跟踪性和实时性。 相似文献
180.
多核处理器架构已经成为当前处理器的主流趋势,应用程序中访问模式的多样性给多核处理器的末级Cache带来了许多挑战。提出了一种基于访问模式的多核末级Cache优化方法,它包含“可配置的共享私有Cache划分”、“可配置的旁路Cache策略”和“优先权替换策略”三个协同递进的层次。通过使用该方法,程序员能够灵活地改变末级Cache执行行为,从而高效地适应应用程序访问模式的变化。实验结果表明,提出的方法能够显著降低末级Cache的缺失率,进而提高系统的整体性能。 相似文献