噪声对无人机瞬变电磁系统定位性能的影响OA
Influence of Noise on Positioning Performance of Drone-Based Transient Electromagnetic System
虽然瞬变电磁(TEM:Transient Electromagnetic)系统与无人机相结合,具有轻便灵活、高效安全的优点,但同时也引入了多种噪声,影响系统在实际应用中的探测性能.为此,提出基于偶极子模型及差分进化(DE:Differential Evolution)算法对目标进行定位,通过野外实测分析噪声来源与种类,研究噪声对系统定位性能的影响.实测显示,系统受静态噪声、线圈转动/摆动导致的低频噪声及无人机噪声影响.当仅受静态噪声影响且目标深度为80~100 cm时,定位误差不超过9 cm,反演深度比实际深度浅;线圈转动/摆动幅度较小时,低频噪声影响较小,随着幅度增大,低频噪声影响增强,定位误差显著增大至29 cm,反演深度比实际深度深;并且无人机噪声会使定位误差增大至12 cm,反演深度比实际深度深.研究确定了噪声的种类、来源及其影响效果,为后续系统优化指明方向.
The drone-based TEM(Transient Electromagnetic)system combines the advantages of being lightweight,flexible,efficient and safe,with broad application prospects.However,it also produces various noises that affect the detection performance in practical applications.Based on the dipole model and DE(Differential Evolution)algorithm,targets are located,noise sources and types are analyzed through field tests,and the influence of noise on system positioning performance is studied.The results show that the system is affected by static noise,low-frequency noise caused by coil rotation/swing,and drone noise.When only affected by static noise with target depth of 80~100 cm,the positioning error does not exceed 9 cm,and the inversion depth is shallower than the actual depth.When coil rotation/swing amplitude is small,low-frequency noise has minor influence.As amplitude increases,the influence grows significantly,with positioning error increasing to 29 cm and inversion depth becoming deeper than actual depth.Drone noise also increases positioning error to 12 cm,with inversion depth deeper than actual depth.The research determines the types,sources and effects of noise,and guides the subsequent system optimization.
刘志;陈曙东;张爽
吉林大学 电子科学与工程学院,长春 130012吉林大学 电子科学与工程学院,长春 130012吉林大学 电子科学与工程学院,长春 130012
信息技术与安全科学
未爆弹无人机瞬变电磁系统差分进化算法噪声影响
unexploded ordnancedrone-based transient electromagnetic systemdifferential evolution algorithmnoise influence
《吉林大学学报(信息科学版)》 2026 (3)
551-557,7
国家自然科学基金青年基金资助项目(41704145)
评论