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951.
In the design of a digital filter, the frequency response is often optimized to meet a given set of specifications on a dense grid of frequency points. The density of the frequency grid points must be sufficiently high so that the frequency response of the filter does not violate the specifications at frequencies in between the grid points. However, the computational complexity of the design process and the storage requirements of the computer increase with the number of frequency grid points. We propose a novel dynamic: grid point allocation technique for the design of minimax optimum FIR filter. It uses a sparse frequency grid but will produce a design that is the same as one designed on very dense frequency grid points. It requires significantly less computer time and memory resources compared with fixed grid point algorithms 相似文献
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This paper presents a simulated annealing algorithm for resource constrained project scheduling problems with the objective of minimising makespan. In the search algorithm, a solution is represented with a priority list, a vector of numbers each of which denotes the priority of each activity. In the algorithm, a priority scheduling method is used for making a complete schedule from a given priority list (and hence a project schedule is defined by a priority list). The search algorithm is applied to find a priority list which corresponds to a good project schedule. Unlike most of priority scheduling methods, in the suggested algorithm some activities are delayed on purpose so as to extend search space. Solutions can be further improved by delaying certain activities, since non-delay schedules are not dominant in the problem (the set of non-delay schedules does not always include an optimal solution). The suggested algorithm is flexible in that it can be easily applied to problems with an objective function of a general form and/or complex constraints. The performance of the simulated annealing algorithm is compared with existing heuristics on problems prepared by Patterson and randomly generated test problems. Computational results showed that the suggested algorithm outperformed existing ones. 相似文献
954.
ZverovichIE ZverovichOI 《高校应用数学学报(英文版)》2004,19(2):125-132
Two new hereditary classes of P5-free graphs where the stability number can be found in polynomial time are proposed. They generalize several known results. 相似文献
955.
张少林 《高校应用数学学报(英文版)》2004,19(3):257-262
In this paper, an important problem arising from conservation biology is considered. Namely, how does the introduced species affect the survival of a native endangered species through predation? By using Kamke comparison theorem and some results in Cui and Chen‘s paper (1998), some sufficient conditions that guarantee the permanence of the species and global stability of a unique positive periodic solution are obtained. Biological implication of these results are discussed. 相似文献
956.
为了研究晶格常数不匹配的异质结SiGe/Si生长过程中低温缓冲层内缺陷对位错运动的影响,使用位错偶极子模型在Si晶体内建立了一对30°部分位错,和导致30°部分位错运动的弯结结构,以及位错芯重构缺陷(RD)与弯结组合而生成的弯结-RD结构.通过分子动力学模拟,使用Parrnello-Rahmman方法施加剪应力促使位错运动,得到了左右弯结-RD结构在迁移过程中的8种稳定构型,并且使用NEB方法和紧束缚势计算了纯弯结和弯结-RD迁移过程中势垒高度,发现弯结-RD的迁移能力要高于纯弯结结构.从模拟结果推断出,低温层生长技术中的Si低温缓冲层由于低温限制了重构缺陷的运动,减少其相遇发生湮灭的概率,从而使得更多的弯结能够与重构缺陷结合生成弯结-RD结构来提高30°部分位错的运动能力,由此释放异质结结构失配应力所需的位错密度会随之减小. 相似文献
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Ignattos Antoniadis 《Pramana》2004,62(2):163-176
The recent understanding of string theory opens the possibility that the string scale can be as low as a few TeV. The apparent
weakness of gravitational interactions can then be accounted by the existence of large internal dimensions, in the sub-millimeter
region. Furthermore, our world must be confined to live on a brane transverse to these large dimensions, with which it interacts
only gravitationally. In my lecture, I describe briefly this scenario which gives a new theoretical framework for solving
the gauge hierarchy problem and the unification of all interactions. I also discuss a minimal embedding of the standard model,
gauge coupling unification and proton stability.
On leave from: Centre de Physique Théorique, Ecole Polytechnique, 91128 Palaiseau, Cedex, France. 相似文献