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941.
多旋翼无人机AHRS系统矢量乘积误差PI跟踪算法 总被引:1,自引:0,他引:1
针对多旋翼无人机对低成本姿态航向参考系统的实际需求,设计并实现了一种姿态航向参考系统。该系统采用陀螺仪积分出的载体姿态和已知的地球重力矢量,解算出地球重力矢量在载体系下的投影和加速度计测量出的地球重力矢量的矢量乘积结果作为水平姿态角的误差表征数值,并采用比例积分跟踪算法进行误差跟踪反馈,实现了准确的水平姿态角跟踪测量。利用陀螺仪积分出的姿态和已知的地球磁场信息,解出地球磁场矢量在载体系下的投影与磁力计测量的地球磁场矢量乘积结果作为航向误差角的误差表征数值,并采用比例积分跟踪算法进行误差跟踪反馈实现了对航向角的跟踪。转台实验表明:该系统水平姿态角跟踪精度约为1°,与EKF算法相比,运算速度提升了80%且精度好于EKF算法。 相似文献
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针对某种冗余机械臂逆运动学求解的问题,提出了一种基于改进量子粒子群神经网络的求解算法。以冗余机械臂末端位姿为输入,经神经网络求得其逆解;针对神经网络输出结果误差较大的问题,把神经网络求初值加入初始化的粒子群中,通过基于Metropolis准则改进量子粒子群算法,避免了量子粒子群算法的早熟现象;以关节坐标经正向运动学求得的末端位姿和期望位姿的误差为适应度函数,对机械臂关节坐标迭代寻优。仿真结果表明该方法结合了神经网络算法的快速性和改进量子粒子群算法的精确性,满足求冗余机械臂逆运动学问题的速度和精度要求。 相似文献
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Integrated scheduling of loading and transportation with tractors and semitrailers separated 下载免费PDF全文
Motivated by some practical applications, we study a new integrated loading and transportation scheduling problem. Given a set of jobs, a single crane is available to load jobs, one by one, onto semitrailers with a given capacity. Loaded semitrailers are assigned to tractors for transportation tasks. Subject to limited resources (crane, semitrailers, and tractors), the problem is to determine (1) an assignment of jobs to semitrailers for loading tasks, (2) a sequence for the crane to load jobs onto semitrailers, (3) an assignment of loaded semitrailers to tractors for transportation tasks, and (4) a transportation schedule of assigned tractors such that the completion time of the last transportation task is minimized. We first formulate the problem as a mixed integer linear programming model (MILPM) and prove that the problem is strongly NP‐hard. Then, optimality properties are provided which are useful in establishing an improved MILPM and designing solution algorithms. We develop a constructive heuristic, two LP‐based heuristics, and a recovering beam search heuristic to solve this problem. An improved procedure for solutions by heuristics is also presented. Furthermore, two branch‐and‐bound (B&B) algorithms with two different lower bounds are developed to solve the problem to optimality. Finally, computational experiments using both real data and randomly generated data demonstrate that our heuristics are highly efficient and effective. In terms of computational time and the number of instances solved to optimality in a time limit, the B&B algorithms are better than solving the MILPM. © 2015 Wiley Periodicals, Inc. Naval Research Logistics 62: 416–433, 2015 相似文献
948.
基于空间约束的舰载机出库调度 总被引:1,自引:0,他引:1
舰载机在航母上的调度问题是制约舰载机出动和回收的重要因素,以往研究主要集中在飞行甲板调度方面。针对舰载机在航母上的出入库问题进行研究,着力解决舰载机在航母上二、三波次的出动能力。首先对舰载机出库的流程进行分析,梳理制约因素。其次,应用柔性流水车间调度理论对空间约束条件下的舰载机出库调度问题进行建模。再次,对智能粒子群算法应用于舰载机出库调度问题进行分析,对编码进行设计,并给出算法流程。最后,对出库流程进行仿真,计算出最优出库方案及时间,验证了模型的准确性。 相似文献
949.
Algorithm to solve a chance‐constrained network capacity design problem with stochastic demands and finite support 下载免费PDF全文
Kathryn M. Schumacher Richard Li‐Yang Chen Amy E.M. Cohn Jeremy Castaing 《海军后勤学研究》2016,63(3):236-246
We consider the problem of determining the capacity to assign to each arc in a given network, subject to uncertainty in the supply and/or demand of each node. This design problem underlies many real‐world applications, such as the design of power transmission and telecommunications networks. We first consider the case where a set of supply/demand scenarios are provided, and we must determine the minimum‐cost set of arc capacities such that a feasible flow exists for each scenario. We briefly review existing theoretical approaches to solving this problem and explore implementation strategies to reduce run times. With this as a foundation, our primary focus is on a chance‐constrained version of the problem in which α% of the scenarios must be feasible under the chosen capacity, where α is a user‐defined parameter and the specific scenarios to be satisfied are not predetermined. We describe an algorithm which utilizes a separation routine for identifying violated cut‐sets which can solve the problem to optimality, and we present computational results. We also present a novel greedy algorithm, our primary contribution, which can be used to solve for a high quality heuristic solution. We present computational analysis to evaluate the performance of our proposed approaches. © 2016 Wiley Periodicals, Inc. Naval Research Logistics 63: 236–246, 2016 相似文献
950.
In this article, we define two different workforce leveling objectives for serial transfer lines. Each job is to be processed on each transfer station for c time periods (e.g., hours). We assume that the number of workers needed to complete each operation of a job in precisely c periods is given. Jobs transfer forward synchronously after every production cycle (i.e., c periods). We study two leveling objectives: maximin workforce size () and min range (R). Leveling objectives produce schedules where the cumulative number of workers needed in all stations of a transfer line does not experience dramatic changes from one production cycle to the next. For and a two‐station system, we develop a fast polynomial algorithm. The range problem is known to be NP‐complete. For the two‐station system, we develop a very fast optimal algorithm that uses a tight lower bound and an efficient procedure for finding complementary Hamiltonian cycles in bipartite graphs. Via a computational experiment, we demonstrate that range schedules are superior because not only do they limit the workforce fluctuations from one production cycle to the next, but they also do so with a minor increase in the total workforce size. We extend our results to the m‐station system and develop heuristic algorithms. We find that these heuristics work poorly for min range (R), which indicates that special structural properties of the m‐station problem need to be identified before we can develop efficient algorithms. © 2016 Wiley Periodicals, Inc. Naval Research Logistics 63: 577–590, 2016 相似文献