排序方式: 共有57条查询结果,搜索用时 15 毫秒
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研究了BP神经网络的收敛问题。基于随机理论 ,提出了解决网络收敛性问题的随机优选法。该方法不仅在任何条件下都能得到问题的具有一定精度的解答 ,而且收敛速度很快 相似文献
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A polling system comprising n queues and a single server is considered. Service is performed according to an elevator scheme under the globally gated regime. The problem of arranging the channels to minimize a measure of the variability of the waiting times is addressed. © 1997 John Wiley & Sons, Inc. Naval Research Logistics 44: 605–611, 1997 相似文献
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研究BGP收敛性改进问题,考虑网络运行状况,提出一种新的机制,称为通告时间戳机制ATS(advertisement time stamp)。在该机制中,BGP路由器在向对等体发送路由通告报文时,将相应的路由前缀打上时间戳。当通告报文准备好时,通过查看相应前缀的时间戳来判断报文是否可以立即发送还是应该等待。该机制充分融合了每对等体每目的网络速率限制定时器和每对等体速率限制定时器各自的优点,克服各自缺点。分析表明,该机制可以较大地减少Tup、Tlong及Tshort事件的收敛延迟。 相似文献
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We present, analyze, and compare three random search methods for solving stochastic optimization problems with uncountable feasible regions. Our adaptive search with resampling (ASR) approach is a framework for designing provably convergent algorithms that are adaptive and may consequently involve local search. The deterministic and stochastic shrinking ball (DSB and SSB) approaches are also convergent, but they are based on pure random search with the only difference being the estimator of the optimal solution [the DSB method was originally proposed and analyzed by Baumert and Smith]. The three methods use different techniques to reduce the effects of noise in the estimated objective function values. Our ASR method achieves this goal through resampling of already sampled points, whereas the DSB and SSB approaches address it by averaging observations in balls that shrink with time. We present conditions under which the three methods are convergent, both in probability and almost surely, and provide a limited computational study aimed at comparing the methods. Although further investigation is needed, our numerical results suggest that the ASR approach is promising, especially for difficult problems where the probability of identifying good solutions using pure random search is small. © 2010 Wiley Periodicals, Inc. Naval Research Logistics, 2010 相似文献
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We present two frameworks for designing random search methods for discrete simulation optimization. One of our frameworks is very broad (in that it includes many random search methods), whereas the other one considers a special class of random search methods called point‐based methods, that move iteratively between points within the feasible region. Our frameworks involve averaging, in that all decisions that require estimates of the objective function values at various feasible solutions are based on the averages of all observations collected at these solutions so far. Also, the methods are adaptive in that they can use information gathered in previous iterations to decide how simulation effort is expended in the current iteration. We show that the methods within our frameworks are almost surely globally convergent under mild conditions. Thus, the generality of our frameworks and associated convergence guarantees makes the frameworks useful to algorithm developers wishing to design efficient and rigorous procedures for simulation optimization. We also present two variants of the simulated annealing (SA) algorithm and provide their convergence analysis as example application of our point‐based framework. Finally, we provide numerical results that demonstrate the empirical effectiveness of averaging and adaptivity in the context of SA. © 2012 Wiley Periodicals, Inc. Naval Research Logistics, 2012 相似文献
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无人机搭载光电载荷进行安装误差标校时,飞行航路的选择与规划在很大程度上影响着标校算法的收敛性与误差识别结果。为增强标校飞行架次的有效性,提高安装误差可被识别的程度,改善标校算法的收敛性及标校精度,对标校的原理和标校算法进行了理论分析,并利用考察差异函数偏微分的方法找到了标校航路和安装误差标校之间的相互联系,然后结合标校实施过程中所遇到的实际问题提出标校航路规划应遵循的原则,给出了标校航路规划的参考范例。 相似文献
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从高斯-牛顿迭代的角度对迭代扩展卡尔曼滤波(IEKF)进行分析,提出了一种基于组合牛顿迭代法的改进IEKF算法。该算法通过实时判断每次迭代对状态的逼近程度,采用加权平均的方法确定新的迭代值,继而采用卡尔曼滤波框架对状态进行量测更新。新算法较传统的IEKF具有精度高以及对初值不敏感的优点。实例仿真验证了该算法的有效性。 相似文献
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为了保证视线角速率在弹目碰撞前收敛到零附近的较小邻域内从而达到准平行接近的状态,本文基于自抗扰控制的不确定性估计补偿思想,应用反演控制方法设计了一种考虑导弹自动驾驶仪二阶动态特性和目标机动的三维有限时间收敛导引律。根据有限时间收敛控制理论,严格证明了系统的有限时间收敛特性;为抑制量测噪声,将传统跟踪微分器进行改进并应用于扩张状态观测器与反演控制的设计中。仿真结果表明:在自动驾驶仪响应延迟情况下,所设计的导引律能够导引导弹在有限时间内精确地拦截高速机动目标;改进的跟踪微分器精度高、响应快;基于改进跟踪微分器的扩张观测器估计效果理想。 相似文献