搜索资源列表
musicesprit
- 通信信号波达方向估计的MATAB程序,采用MUSIC和ESPRIT算法-communication signal DOA estimated Matlab procedures, and using ESPRIT algorithm MUSIC
DOA_Estimating
- DOA估计(雷达来波方向估计)是雷达的重要理论,我提供了阵列信号处理中基于MUSIC算法的DOA估计,和基于最大熵法的DOA估计的MATLAB源代码。都是自己仿真用的。
DOA
- DOA估计,music算法对于非相干信号的方向估计
MATLAB阵列信号处理方面的经典程序
- 阵列信号处理方面的经典程序,包括MUSIC算法,ESPRIT 算法,Root-MUSIC算法面阵中二维角度估计 Unitary -ESPRIT算法,空间平滑MUSIC算法,传播算子DOA估计算法-Classical array signal processing procedures, including the MUSIC algorithm, ESPRIT algorithm, Root-MUSIC algorithm for two-dimensional planar array of
MUSIC
- 基于阵列信号的MUSIC算法和正交投影法来进行DOA估计-Based on the array signal MUSIC algorithm and orthogonal projection method for DOA estimation
Bistatic-_MIMO_radar_DOA-DOD
- 双基地MIMO雷达系统DOA和DOD联合估计的MATLAB仿真程序,系统架构和算法可参考以下两篇原始文献。 Haidong Yan,Jun Li, Guisheng Liao.Multi-Target Identification and Localization Using Bistatic MIMO Radar Systems.(cited by 106)EURASIP Journal on Advances in Signal Processing , vol.2008, Jan. 2
momp
- 基于多观测矢量的正交匹配追踪算法 正确估计信号的DOA-MMV bases on omp used to DOA
MUSIC
- 四阶累积量下的MUSIC算法DOA估计,特别是对于四阶累积量的计算是重要看点-MUSIC algorithm based DOA estimation
ESPRIT
- 旋转不变波达方向估计算法,很简洁经典,初学者必看-ESPRIT method which is widely used in DOA estimation
sim_SOMP
- 为了解决DOA估计中的网格不匹配问题所采用的SOMP算法,此代码为somp的仿真代码-SOMP DOA estimation algorithm in order to solve the mismatch problem by using a grid, and this code is somp simulation code
WidebandNonCoherentSignal
- 宽带DOA估计 使用经典的MUSIC算法仿真通过 -wideband direction of arravial use the MUSIC method
ESPRIT
- 空间谱估计理论计算法之ESPRIT-DOA,使用了LS—DOA 与TLS-DOA,并对几种常见的DOA方法进行了总结-Spatial spectrum estimation theory calculations of the ESPRIT-DOA, use the LS-DOA and TLS-DOA, DOA and several common methods are summarized
MUSIC_DOA
- music doa估计算法,适用于matlab仿真环境下,比较详细-music doa algrithm, used in matlab enviroment.
l1_svdmimoradar
- 此函数用于MIMO雷达的超分辨算法,利用凸优化压缩感知算法进行DOA估计,相比于MUSIC等超分辨算法,该算法的分辨性能更好。(this function is used to DOA estimation of MIMO Radar by the ways of compressive sensing, and compared to other DOA estimation algorithm, this algorithm can achieve the better performan