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261.
针对无速度信息的机械臂轨迹跟踪控制问题,提出了一种带观测器的机械臂免模型模糊基函数网络输出反馈PD控制。所设计的模糊基函数网络被用来估计关节速度,并同时用来补偿系统的未知不确定。网络的权值及参数调整采用混合算法,且能够在线自适应实时调整,不需要离线学习阶段。所提出的观测器及控制器均不需要任何的机械臂动态模型(包括惯性矩阵逆),并通过引入PD控制使整个方案更易工程实现。基于Lyapunov理论证明了整个闭环系统一致最终有界。两关节机械臂试验结果进一步证明了这种基于观测器的反馈控制算法的有效性。 相似文献
262.
针对最坏情况下性能优化的稳健自适应波束形成,提出一种自适应方向图的副瓣控制方法。该方法通过在副瓣任意区域设置多个二次不等式约束,对副瓣增益进行控制,从而可将方向图副瓣电平严格控制在期望值以下。该方法的优化模型可转化为凸二阶锥规划问题,利用内点法可有效求解实现。计算机仿真结果表明存在波束指向误差情况下,该方法既能获得指定的较低副瓣电平,又不带来干扰抑制性能的损失。 相似文献
263.
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
264.
以Matlab/simulink为工具,对相位干涉仪快速准确获取窄脉冲目标雷达的角信息问题进行了仿真研究。研究表明,相位干涉仪快速、准确获取窄脉冲目标雷达角信息的基本能力主要取决于鉴相器中低通滤波器截止频率的设计,并给出了截止频率的设计公式。此外,还对读取相关信息的时机和方法等问题进行了研究,给出了相应的解决方案。 相似文献
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自适应采样数粒子滤波算法 总被引:2,自引:0,他引:2
基于统计决策规则提出自适应采样数粒子滤波算法,在定义综合性能风险函数的基础上,推导出粒子数与滤波误差方差之间的关系式,使得在跟踪过程中,可以根据目标的机动情况在线调节粒子数,以使跟踪性能达到最优。在Matlab仿真平台下进行了闪烁噪声下的机动目标跟踪实验,结果表明,自适应采样数粒子滤波算法是一种有效的机动目标跟踪方法,跟踪性能较基本粒子滤波算法提高了3.7倍。 相似文献
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《防务技术》2020,16(1):119-135
The behind-armor debris (BAD) formed by the perforation of an EFP is the main damage factor for the secondary destruction to the behind-armor components. Aiming at investigating the BAD caused by EFP, flash X-ray radiography combined with an experimental witness plate test method was used, and the FEM-SPH adaptive conversion algorithm in LS-DYNA software was employed to model the perforation process. The simulation results of the debris cloud shape and number of debris were in good agreement with the flash X-ray radiographs and perforated holes on the witness plate, respectively. Three-dimensional numerical simulations of EFP's penetration under various impact conditions were conducted. The results show that, an ellipsoidal debris cloud, with the major-to-minor axis radio (a/b) smaller than that caused by shaped charge jets, was formed behind the target. With the increase of target thickness (h) and decrease of impact velocity (v0) and obliquity (θ), the value of a/b decreases. The number of debris ejected from target is significantly higher than that from EFP. Based on the statistical analysis of the spatial distribution of the BAD, An engineering calculation model was established considering the influence of h, v0 and θ. The model can with reasonable accuracy predict the quantity and velocity distribution characteristics of BAD formed by EFP. 相似文献