Joint Range and Angle Estimation for FMCW MIMO Radar and Its Application
Recently, frequency-modulated continuous wave (FMCW) radars with array antennas are gaining in popularity on a wide variety of commercial applications. A usual approach of the range and angle estimation of a target with an array FMCW radar is to form a range-angle matrix with deramped receive signal, and then apply the two-dimensional fast Fourier transformation (2D-FFT) on the range-angle matrix. However, such frequency estimation approaches give bias error because two frequencies on the range-angle matrix are not independent to each other, unlike the 2D angle estimation with a passive planar antenna array. We propose a new maximum-likelihood based algorithm for the joint range and angle estimation of multiple targets with an array FMCW radar, and show that the proposed algorithm achieves the Cramer-Rao bounds (CRBs) both for the range and angle estimation. The proposed algorithm is also compared with other algorithms for a simultaneous localization and mapping (SLAM) problem.
Code (0)
등록된 구현이 없습니다.
Tasks
Simultaneous Localization and MappingSimilar Papers 제목 키워드 기반
Multi-target Range, Doppler and Angle estimation in MIMO-FMCW Radar with Limited Measurements
Multiple-input multiple-output (MIMO) radar offers several performance and flexibility advantages over traditional radar arrays. However, high angular and Doppler resolutions necessitate a large number of antenna element…
Compressive SensingCode Optimization and Angle-Doppler Imaging for ST-CDM LFMCW MIMO Radar Systems
We consider code optimization and angle-Doppler imaging for slow-time code division multiplexing (ST-CDM) linear frequency-modulated continuous-wave (LFMCW) multiple-input multiple-output (MIMO) radar systems. We optimiz…
parameter estimationLow-Complexity Super-Resolution Signature Estimation of XL-MIMO FMCW Radar
Extremely Large-Scale (XL) multiple input multiple output (MIMO) antenna systems combined with ultra-wide signal bandwidth (BW) offer the potential for ultra-high-resolution sensing in frequency modulated continuous wave…
Compressive SensingSuper-ResolutionMulti-target Range and Angle detection for MIMO-FMCW radar with limited antennas
Multiple-input multiple-output (MIMO) radar has several advantages with respect to the traditional radar array systems in terms of performance and flexibility. However, in order to achieve high angular resolution, a MIMO…
Compressive SensingA Novel Joint Angle-Range-Velocity Estimation Method for MIMO-OFDM ISAC Systems
Integrated sensing and communication (ISAC) is emerging as a key technique for next-generation wireless systems. In order to expedite the practical implementation of ISAC in pervasive mobile networks, it is crucial to ha…
Integrated sensing and communicationISAC