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无人机辅助车联网的无人机部署算法 被引量:2
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作者 谢英辉 彭维捷 +2 位作者 苏秀芝 邱春荣 杨洪朝 《宇航计测技术》 CSCD 2022年第3期80-85,共6页
针对无人机辅助车联网的无人机部署问题,分析了基于时延和回传链路的能效无人机部署策略的性能。该策略从车联网的数据传输时延和回传链路角度优化无人机的部署,进而最小化无人机的功率消耗。先面向车联网网络,推导了基于单个用户速率... 针对无人机辅助车联网的无人机部署问题,分析了基于时延和回传链路的能效无人机部署策略的性能。该策略从车联网的数据传输时延和回传链路角度优化无人机的部署,进而最小化无人机的功率消耗。先面向车联网网络,推导了基于单个用户速率的时延约束函数,并构建基于无人机离基站距离的回传链路容量函数;再构建基于时延和回传链路容量函数的目标函数。最后,利用序列二次规划求解目标函数。性能分析表明,通信数据包尺寸是影响时延的重要参数。此外,在低时延和数据尺寸较大时,车辆用户的总速率之和收敛于回传链路容量。 展开更多
关键词 无人机 车联网 能效 回传链路容量 序列二次规划
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Bionic Design and Simulation Analysis of Energy⁃Efficient and Vibration⁃Damping Walking Mechanism
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作者 Rui Zhang Hao Pang +4 位作者 Yuan He Dianlei Han Lige Wen Lei Jiang Jianqiao Li 《Journal of Harbin Institute of Technology(New Series)》 CAS 2021年第4期16-24,共9页
African ostrich can run for 30 min at a speed of 60 km/h in the desert,and its hindlimb has excellent energy saving and vibration damping performance.In order to realize the energy⁃efficient and vibration⁃damping desi... African ostrich can run for 30 min at a speed of 60 km/h in the desert,and its hindlimb has excellent energy saving and vibration damping performance.In order to realize the energy⁃efficient and vibration⁃damping design of the leg mechanism of the legged robot,the principle of engineering bionics was applied.According to the passive rebound characteristic of the intertarsal joint of the ostrich foot and the characteristic of variable output stiffness of the ostrich hindlimb,combined with the proportion and size of the structure of the ostrich hindlimb,the bionic rigid⁃flexible composite legged robot single⁃leg structure was designed.The locomotion of the bionic mechanical leg was simulated by means of ADAMS.Through the motion simulation analysis,the influence of the change of the inner spring stiffness coefficient within a certain range on the vertical acceleration of the body centroid and the motor power consumption was studied,and the optimal stiffness coefficient of the inner spring was obtained to be 200 N/mm,and it was further verified that the inner and outer spring mechanism could effectively reduce the energy consumption of the mechanical leg.Simulation results show that the inner and outer spring mechanism could effectively reduce the motor energy consumption by about 72.49%. 展开更多
关键词 bionics engineering bionic mechanical leg passive rebound characteristic rigidflexible composite structure energyefficient and vibrationdamping
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