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CV_CT_IMM3
- 基于无源时差定位系统的机动目标跟踪IMM算法
WuYuanDingWei
- !针对水下机动目标的无源定位和跟踪问题\"先运用测向定位和时差定位相结合的思想\"给出来自水下 机动声源目标的定位解$然后在此基础上\"将多部被动声呐在各个状态时刻所定位的含噪声数据视为一冲击 扰动序列\"对其应用缓冲算子作用\"以弱化其随机性
CV_CT_IMM3
- 基于无源时差定位系统的机动目标跟踪IMM算法 -Passive TDOA location system based on the IMM algorithm for maneuvering target tracking
WuYuanDingWei
- !针对水下机动目标的无源定位和跟踪问题"先运用测向定位和时差定位相结合的思想"给出来自水下 机动声源目标的定位解$然后在此基础上"将多部被动声呐在各个状态时刻所定位的含噪声数据视为一冲击 扰动序列"对其应用缓冲算子作用"以弱化其随机性-! For an underwater maneuvering target of passive location and tracking problem of
passiveloacation
- 详细介绍了无源定位技术的理论基础、方向的测量方法、高精度时差测量技术、定位误差与定位站的配置关系-Described in detail the theory of passive location technology based on the direction of the measurement method, the time difference between high-precision measurement tech
ChanAlgorithm
- TDOA无源时差定位Chan算法,matlab源码-Chan Passive TDOA TDOA location algorithm, matlab source code
TDOAChanAlgorithm
- TDOA无源时差定位Chan算法,matlab源码-Chan Passive TDOA TDOA location algorithm, matlab source code
TDOATaylorAlgorithm
- TDOA无源时差定位Taylor算法,matlab源码-Taylor Passive TDOA TDOA location algorithm, matlab source code
TDOAFangAlgrithm
- TDOA无源时差定位Fang算法,matlab源码-Fang Passive TDOA TDOA location algorithm, matlab source code
BD
- 研究无源北斗定位技术的目的,在于解决目前北斗定位体制下,存在用户数量受限、用 户机需发射信号、定位数据更新率慢等缺点。利用现有的2颗北斗地球同步卫星、1颗备份卫星的 星历信息以及测量获得的时差信息,可以推导出实现无源定位的数学模型。该方法通过试验数据 获得了50 m范围的定位结果,从而验证了该项技术的正确性-The purpose of the passive Beidou, is to solve the current Beidou
New_re
- 利用牛顿迭代法对于时差法无源定位进行了仿真并且 进行了 精度分析-failed to translate
TDOA-and-FDOA-Location-Algorithm
- 基于约束总体最小二乘方法的到达时差到达频差无源定位算法-Source Localization Using TDOA and FDOA Measurements Based on Constrained Total Least Squares Algorithm
PSO
- 利用粒子群算法求解基于时差无源定位的非线性方程,解决非线性方程的最优化问题。(passive location based on PSO)
Taylor_Algorithm
- 基于时差序列估计的泰勒算法,用于进行无源数据定位(Taylor_Algorithm to simulate TDOA)
时差和频差无源定位方法研究zip
- 时差频差定位仿真,基于matlab的源代码程序(Simulation of time difference and frequency difference location, source code program based on MATLAB)
tdoa-3d
- 三维无源时差定位系统,通过四个基站确定目标的具体位置(Three dimensional passive TDOA location system, through four base stations to determine the specific location of the target)