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1.
针对海空跨域无人航行器集群在复杂水域环境下协同作业以追踪水下目标的任务,提出一种基于协同粒子群(CPSO)的协同作业路径规划算法.考虑不同无人航行器集群特性优势,合理分解并分配远距离追踪水下目标任务过程,并利用CPSO算法进行路径规划.在CPSO算法中,首先为无人机(UAVs)集群规划飞行路径,UAV飞行过程中探测水面...  相似文献   

2.
针对传统的集群控制算法需要获取通信范围内相邻质点的位置和速度信息才能够计算控制量的问题,提出一种新的无须获得相邻无人机速度的六自由度固定翼无人机群的集群和避障控制方法。将通信范围内的无人机均视为障碍物,采用统一的计算方法获得控制量,并且证明了算法的稳定性。通过建立六自由度无人机线性化控制模型,将改进的质点集群算法应用于无人机群控制系统中,将无人机控制设计成六自由度无人机的跟踪回路和质点无人机的导引回路,并证明通过选取合适的跟踪回路控制参数,确保整个无人机集群控制是稳定的。通过六自由度无人机编队仿真验证了所提算法的有效性。  相似文献   

3.
针对大规模异构无人机集群的全局任务规划问题,提出一种基于均衡聚类市场拍卖机制的任务规划方法。对无人机群协同合作完成任务的场景进行分析,综合任务聚类和无人机联盟的优势,建立了通用性较高的任务规划模型。考虑到对无人机群负载均衡的需求,融合和改进了K-means聚类算法和市场拍卖机制,形成一种综合考虑路程消耗和任务消耗的均衡聚类市场拍卖算法。在拍卖过程中引入平衡参数,通过计算旅行商问题来修正平衡参数,保证无人机群在负载均衡的同时整体成本不断降低。仿真结果表明,使用均衡聚类市场拍卖机制的任务规划方法能够在较短时间内完成异构无人机群的复杂任务规划,保证无人机群负载均衡的同时,整体成本和总时间上也有较好表现,具有一定的实际应用价值。  相似文献   

4.
It well known that vehicle detection is an important component of the field of object detection. However, the environment of vehicle detection is particularly sophisticated in practical processes. It is compara-tively difficult to detect vehicles of various scales in traffic scene images, because the vehicles partially obscured by green belts, roadblocks or other vehicles, as well as influence of some low illumination weather. In this paper, we present a model based on Faster R-CNN with NAS optimization and feature enrichment to realize the effective detection of multi-scale vehicle targets in traffic scenes. First, we proposed a Retinex-based image adaptive correction algorithm (RIAC) to enhance the traffic images in the dataset to reduce the influence of shadow and illumination, and improve the image quality. Second, in order to improve the feature expression of the backbone network, we conducted Neural Architecture Search (NAS) on the backbone network used for feature extraction of Faster R-CNN to generate the optimal cross-layer connection to extract multi-layer features more effectively. Third, we used the object Feature Enrichment that combines the multi-layer feature information and the context information of the last layer after cross-layer connection to enrich the information of vehicle targets, and improve the robustness of the model for challenging targets such as small scale and severe occlusion. In the imple-mentation of the model, K-means clustering algorithm was used to select the suitable anchor size for our dataset to improve the convergence speed of the model. Our model has been trained and tested on the UN-DETRAC dataset, and the obtained results indicate that our method has art-of-state detection performance.  相似文献   

5.
《防务技术》2020,16(4):922-932
Focused on the task of fast and accurate armored target detection in ground battlefield, a detection method based on multi-scale representation network (MS-RN) and shape-fixed Guided Anchor (SF-GA) scheme is proposed. Firstly, considering the large-scale variation and camouflage of armored target, a new MS-RN integrating contextual information in battlefield environment is designed. The MS-RN extracts deep features from templates with different scales and strengthens the detection ability of small targets. Armored targets of different sizes are detected on different representation features. Secondly, aiming at the accuracy and real-time detection requirements, improved shape-fixed Guided Anchor is used on feature maps of different scales to recommend regions of interests (ROIs). Different from sliding or random anchor, the SF-GA can filter out 80% of the regions while still improving the recall. A special detection dataset for armored target, named Armored Target Dataset (ARTD), is constructed, based on which the comparable experiments with state-of-art detection methods are conducted. Experimental results show that the proposed method achieves outstanding performance in detection accuracy and efficiency, especially when small armored targets are involved.  相似文献   

6.
对地目标检测与识别是无人机系统典型任务之一,但受限于任务特殊性,往往难以获取足够的目标样本数据以实现高可靠的目标识别。为此,结合人的认知特性,提出一种基于部件模型的小样本车辆目标识别方法,可有效提高无人机感知能力。采用视觉显著性检测与物体性检测相结合的检测方法,提取目标可能区域;采用基于图论的GrabCut方法与最大类间方差法相结合的分割方法,分割目标并提取目标内部件;采用基于概率图模型的部件识别方法,通过将部件轮廓稀疏表示为条件随机场,并进行概率推理实现部件识别;采用基于贝叶斯的目标识别方法完成目标是否为车辆的判断。通过无人机拍摄的车辆图像验证表明,算法可在样本较少、光照变化、存在遮挡等情况下,以较高准确率检测并识别出车辆目标,同时识别算法具有一定可解释性。  相似文献   

7.
为解决单架无人机在动态战场环境下的测向定位问题,提出了一种基于动态窗口法的单机测向定位航迹优化算法。以最大化Fisher信息矩阵行列式为测向定位评价准则,在由动态探测雷达和静/动障碍构成的动态战场环境中,基于动态窗口法思想,将测向定位航迹优化评价准则由传统的单步最优原则扩展到对多步预测航迹的评价,同时考虑雷达探测和静/动障碍环境对预测航迹的影响,通过滚动时域方法控制无人机最优航向。仿真结果表明,所提方法能够使无人机在有效逃避雷达探测威胁以及规避环境中静/动障碍的条件下保证对目标的高精度测向定位,为解决动态战场环境下的单架无人机测向定位问题提供了新思路。  相似文献   

8.
为了提高无人机集群协同搜索移动目标的效率,提出一种基于飞蛾信息素寻偶机制的无人机集群协同搜索方法。根据飞蛾基于信息素选择飞行方向的寻偶行为,建立信息素图风向模型和飞蛾信息素寻偶模型。考虑无人机机间避撞约束,提出从飞蛾信息素寻偶机制到无人机集群分布式协同搜索的映射,并给出具体实现流程。仿真实验结果表明了所提方法在解决单个移动目标的协同搜索问题时的有效性和稳定性;外场飞行试验表明了所提方法在实际应用中的可行性。  相似文献   

9.
针对小型无人机目标雷达回波弱、目标检测难的问题,研究了在线性调频连续波(linear frequency modulation continuous wave, LFMCW)体制雷达下的长时间相参积累方法。通过推导LFMCW雷达回波表达式,提出了基于时域差频信号线性调频-Z变换的拉东-傅里叶变换实现方法。评估了该方法的运算量,并与频域实现的方法进行对比。经过仿真和实测数据验证了本文算法对LFMCW雷达下的弱目标相参积累的有效性。  相似文献   

10.
针对无人机集群目标作战解析建模时在状态转移过程中计算速率低的问题,提出了一种基于行压缩存储的四阶Runge-Kutta法。根据无人机集群作战样式将无人机集群作战过程划分为三个阶段,并分阶段对无人机集群作战的状态转移过程建立连续时间Markov链模型。以无人机集群完成作战任务的可靠性作为求解指标,运用四阶Runge-Kutta法对Markov模型进行求解。由于求解过程中速率转移矩阵具有稀疏特性,采用基于行压缩存储的算法优化求解速率。仿真实验表明,运用连续时间Markov理论建立的无人机集群作战过程模型的有效性和可行性优于其他模型。同时,与其他算法及模型相比,该算法计算速率更高、能更好地满足结果精度的可靠性需求,进一步说明了本算法的优越性。 〖BHDWG8,WK10YQ,DK1*2,WK1*2D〗〖XCHSC.TIF;%129%129〗听语音 聊科研与作者互动  相似文献   

11.
大量无人机和巡飞弹的参战成为亚美尼亚与阿塞拜疆在纳卡地区持续四十多天的冲突的焦点,引发世界各国对无人机作战应用的关注。本文回顾了冲突过程,对比了两国战损情况,介绍了主要参战无人机的技术指标与性能优势。无人机在冲突中能够实时获取高清战场图像,发挥情报侦察优势,对重点军事目标进行精准而有效的打击,发挥了较高的作战效能;同时,采取灵活高效的诱饵探测、饱和攻击以及心理威慑等战术,能够进一步提升无人机作战能力。通过分析纳卡冲突中无人机在性能、体系运用方面的不足,本研究提出应根据不同作战需求,在低烈度战争中发挥无人机性价比优势,现代空中作战开展近距支援作战,面向未来战争要在目标识别等方面发展智能信息处理技术,结合无人机不同功能构建新型无人机战术与作战体系,以实现无人机智能化作战。  相似文献   

12.
李响  邢清华  夏璐 《现代防御技术》2012,40(4):98-102,107
针对多无人机执行对地攻击作战任务的背景,建立了编队对地攻击模型,提出了基于正交实验设计的编队配系优化方法。在考虑多机协同作战因素下,构建了编队目标分配的基本模型;以探测、识别和杀伤为基本过程,构建了攻击过程模型;以空袭方付出代价、防空方毁伤程度和作战效率为依据,构建了目标函数模型,分析了模型中中间变量与目标函数之间的关系;利用正交实验设计原理,研究了编队配系优劣的评价方法。实例分析表明,该方法能够在已有的资源约束条件下,给出编队的最优配系方案。  相似文献   

13.
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   

14.
随着无人机技术的快速发展,无人机已在民用、军事领域得到广泛应用.尤其是具有"低慢小"特征的小型无人机,使用方便灵活,成本相对低廉,可用于执行侦察监视、自杀袭击等任务,对日常防空安全、重要目标防护构成严重威胁.分析研究了小型无人机主要威胁样式,重点分析了小型侦察无人机载荷任务能力,提出对该类目标拒止距离需求,可为相关拦截...  相似文献   

15.
Jian-li Su  Hua Wang 《防务技术》2021,17(6):1967-1975
Single unmanned aerial vehicle (UAV) multitasking plays an important role in multiple UAVs cooperative control, which is as well as the most complicated and hardest part. This paper establishes a three-dimensional topographical map, and an improved adaptive differential evolution (IADE) algorithm is proposed for single UAV multitasking. As an optimized problem, the efficiency of using standard differential evolution to obtain the global optimal solution is very low to avoid this problem. Therefore, the algorithm adopts the mutation factor and crossover factor into dynamic adaptive functions, which makes the crossover factor and variation factor can be adjusted with the number of population iteration and individual fitness value, letting the algorithm exploration and development more reasonable. The experimental results implicate that the IADE algorithm has better performance, higher convergence and efficiency to solve the multitasking problem compared with other algorithms.  相似文献   

16.
军用无人机技术智能化发展及应用   总被引:1,自引:0,他引:1       下载免费PDF全文
军用无人机作为收集战场信息和军事打击的新兴手段和工具,以其机动灵活、战场生存能力强等独特优势,能够方便快速地获取战场态势,极大地弥补了传统作战方式和侦查手段的短板和不足。智能无人系统的发展可能会引领军事领域的重大变革甚至改变战争形态。文章介绍了无人机技术在军事领域中的发展和应用现状,并从飞行控制、火控系统、任务规划以及无人机集群等方面浅析了军用无人机技术智能化发展方向。  相似文献   

17.
介绍了基本粒子群优化算法的思想、步骤,针对其有时会出现粒子在最优解附近“振荡”的现象,使用加入惯性权重因子的复合粒子群优化算法来对无人机(UAV)进行优化设计。最后以意大利研制成功的喷气无人机(米拉奇-100)为例对该算法进行了验算和仿真。由结果可知,该机的实际起飞重量与优化结果十分相似,证明了优化计算的可行性和高精度。  相似文献   

18.
近似平面场景多视点图像拼接算法   总被引:1,自引:0,他引:1       下载免费PDF全文
以小型无人机对地观测为应用背景,研究了近似平面场景多视点图像拼接问题。对于已知粗略相机位姿的情况,提出一种融合相机位姿信息和图像特征点对应信息的方法,采用直接稀疏Cholesky分解方法求解拼接全局优化问题。由该方法得到的拼接结果没有全局变形,局部拼接误差也得到了明显的改善。对于相机位姿未知的情况,先采用structure-from-motion(SFM)方法恢复相机姿态和场景稀疏结构信息,再采用稀疏全局调整方法获得最终的图像变换参数。通过沙盘图像和真实的航拍图像拼接实验验证了算法的有效性。  相似文献   

19.
探讨了无人飞行器(UAV)编队的任务分配问题。任务分配是UAV协同控制的基础,其解是任务区域内各任务的一个排列。求解UAV任务分配问题的有效方法是能在合理的计算时间内找到近似最优解的启发式算法。用对称群描述UAV任务分配的搜索空间,基于右乘运算构造搜索邻域。仿真结果验证了群论禁忌搜索算法的有效性。  相似文献   

20.
《防务技术》2020,16(4):811-824
For the automatic tracking of unknown moving targets on the ground, most of the commonly used methods involve circling above the target. With such a tracking mode, there is a moving laser spot on the target, which will bring trouble for cooperative manned helicopters. In this paper, we propose a new way of tracking, where an unmanned aerial vehicle (UAV) circles on one side of the tracked target. A circular path algorithm is developed for monitoring the relative position between the UAV and the target considering the real-time range and the bearing angle. This can determine the center of the new circular path if the predicted range between the UAV and the target does not meet the monitoring requirements. A transition path algorithm is presented for planning the transition path between circular paths that constrain the turning radius of the UAV. The transition path algorithm can generate waypoints that meet the flight ability. In this paper, we analyze the entire method and detail the scope of applications. We formulate an observation angle as an evaluation index. A series of simulations and evaluation index comparisons verify the effectiveness of the proposed algorithms.  相似文献   

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