参考文献/References:
[1] AIT SAADI A,SOUKANE A,MERAIHI Y,et al.UAV path planning using optimization approaches:asurvey [J].Archives of computational methods in engineering,2022,29:4233 4284.
[2] HUANG H X,SHANG Y X,LIU X F,et al.An improved Bi RRT* based path planning algorithm with adaptive search strategy assignment mechanism for ultra low altitude penetration of fixed wing aircraft[J].Aerospace science and technology,2024,152:109363.
[3] LI J,LIAO C Y,ZHANG W J,et al.UAV path planning model based on R5DOS model improved a star algorithm[J].Applied sciences,2022,12(11):11338.
[4] 唐嘉宁,闫搏远,陈云浩,等.改进JPS的无人机路径规划研究[J].重庆理工大学学报(自然科学),2024,38(1):328 337.
[5] ABDULRAZZAQ A,MOHAMED M J,OLEIWI B K.Unmanned aerial vehicle path planning in a 3D environment using a hybrid algorithm[J].Bulletin of electrical engineering and informatics,2024,13(2):905 915.
[6] CHEN H,LIANG Y H,MENG X.A UAV path planningmethod for building surface information acquisition utilizing opposition based learning artificial bee colony algorithm [J].Remote sensing,2023,15(17):4312.
[7] LIN L H,WANG Z G,TIAN L Q,et al.A PSO based energy efficient data collection optimization algorithm for UAV mission planning [J].PLOS One,2024,19(1):e0297066.
[8] LI W M,WANG L,ZOU A W,et al.Path planning for UAV based on improved PRM[J].Energies,2022,15(19):7267.
[9] LAVALLE S M.Rapidly exploring random trees:a new tool for path planning[R].1998.
[10] KARAMAN S,FRAZZOLI E.Sampling based algorithms for optimal motion planning[J].The international journal of robotics research,2011,30(7):846 894.
[11] GAMMELL J D,SRINIVASA S S,BARFOOT T D.Informed RRT* :optimal sampling based path planning focused via direct sampling of an admissible ellipsoidal heuristic[C]∥2014 IEEE/RSJ International Conference on Intelligent Robots and Systems,2014:2997 3004.
[12] LI M,SONG Q,ZHAO Q J.UAV path re planning based on improved bidirectional RRT algorithm in dynamic environment[C]∥2017 3rd International Conference on Control,Automation and Robotics (ICCAR),2017:658 661.
[13] FAN J M,CHEN X,LIANG X.UAV trajectory planning based on bi directional APF RRT* algorithm with goal biased[J].Expert systems with applications,2023,213:119137.
[14] LI N,HAN S I.Adaptive bi directional RRT algorithm for three dimensional path planning of unmanned aerial vehicles in complex environments[J].IEEE Access,2025,13:23748 23767.
[15] ZHANG J C,AN Y Q,CAO J N,et al.UAV trajectory planning for complex open storage environments based on an improved RRT algorithm[J].IEEE Access,2023,11:23189 23204.
[16] 张海阔,孟秀云.基于改进RRT* 算法的无人机在线航迹规划[J].系统工程与电子技术,2024,46(12):4157 4164.
[17] 刘文倩,单梁,张伟龙,等.复杂环境下基于改进Informed RRT的无人机路径规划算法[J].上海交通大学学报,2024,58(4):511 524.
[18] ZHANG J,LI J W,YANG H W,et al.Complex environment path planning for unmanned aerial vehicles[J].Sensors,2021,21(15):5250.
[19] MCCAMMON S,HOLLINGER G A.Topological path planning for autonomous information gathering[J].Autonomous robots,2021,45(6):821 842.
[20] HUANG T,FAN K G,SUN W.Density gradient RRT:an improved rapidly exploring random tree algorithm for UAV path planning[J].Expert systems with applications,2024,252:124121.
相似文献/References:
[1]雷永涛,周 权,张静静. 基于印制电路连接器变形问题的分析和设计改进[J].机械与电子,2019,(01):7.
,analysis and design improvement of deformation problem based on printed circuit connector[J].Machinery & Electronics,2019,(02):7.
[2]孟繁萃1,张 达2,张 明1. 自然风力对绝缘子结构的影响[J].机械与电子,2019,(01):3.
,the influence of natural wind on insulator structure[J].Machinery & Electronics,2019,(02):3.
[3]任智勇1,邓晓政1,马丁峰2. 一种发动机试飞数据快速处理方法[J].机械与电子,2019,(01):11.
,A Fast Processing Method of Multi-subject Engine Flight Test Data[J].Machinery & Electronics,2019,(02):11.
[4]冷雪锋,吴正明. 基于STC12C5A60S2的100W 小型风力发电系统设计[J].机械与电子,2019,(01):15.
.The Design of 100W Small Wind Power Generation System Based on STC12C5A60S2[J].Machinery & Electronics,2019,(02):15.
[5]查金水,朱志远,邓友银,等. 某大型相控阵雷达测试系统结构设计[J].机械与电子,2019,(01):19.
,,et al.Structural Design of a Large Phased Array Radar Test System[J].Machinery & Electronics,2019,(02):19.
[6]万 欢,李伟达,李 娟. 一种面向上肢康复的便携式电刺激器设计[J].机械与电子,2019,(01):33.
,Design of Portable Electric Stimulator for Upper Limb Rehabilitation[J].Machinery & Electronics,2019,(02):33.
[7]郑锦汤1,李玉忠1,2. 紧凑型纯电动汽车动力系统匹配与性能仿真[J].机械与电子,2019,(01):38.
,Matching and Performance Simulation of Dynamic Systems of Compact Electric Vehicle[J].Machinery & Electronics,2019,(02):38.
[8]吕明珠1,2,苏晓明 1,等. 改进粒子群算法优化的支持向量机在滚动轴承故障诊断中的应用[J].机械与电子,2019,(01):42.
,,et al.Application of SVM Optimized by IPSO in Rolling Bearing Fault Diagnosis[J].Machinery & Electronics,2019,(02):42.
[9]韩雪莹1,张佳炜2,刘 梦1,等. 集中控制协调多个并网逆变器的谐波补偿[J].机械与电子,2019,(01):49.
,,et al.Centralized Control Coordination of Harmonic Compensation for Multiple Grid-connected Inverters[J].Machinery & Electronics,2019,(02):49.
[10]蒋 波1,3,周自强2,等. 基于PLC的报废汽车拆解线作业控制系统[J].机械与电子,2019,(01):54.
,,et al.PLC-based ELV Disassembly Line Operation Control System[J].Machinery & Electronics,2019,(02):54.