Abstract:
This paper introduces a novel eigenstructure-based algorithm uni-vector-sensor ESPRIT that yields closed-form direction-of-arrival (DOA) estimates and polarization estima...Show MoreMetadata
Abstract:
This paper introduces a novel eigenstructure-based algorithm uni-vector-sensor ESPRIT that yields closed-form direction-of-arrival (DOA) estimates and polarization estimates using one electromagnetic vector sensor. A vector sensor is composed of six spatially co-located nonisotropic polarization-sensitive antennas, measuring all six electromagnetic field components of the incident wave field. Uni-vector-sensor ESPRIT is based on a matrix-pencil pair of temporally displaced data sets collected from a single electromagnetic vector sensor. The closed-form parameter estimates are obtained through a vector cross-product operation on each decoupled signal-subspace eigenvector of the data correlation matrix. This method exploits the electromagnetic sources' polarization diversity in addition to their spatial diversity, requires no a priori knowledge of signal frequencies, suffers no frequency-DOA ambiguity, pairs automatically the x-axis direction cosines with the y-axis direction cosines, eliminates array interelement calibration, can resolve up to five completely polarized uncorrelated monochromatic sources from near field or far field. It impressively out-performs an array of spatially displaced identically polarized antennas of comparable array-manifold size and computational load.
Published in: IEEE Transactions on Antennas and Propagation ( Volume: 45, Issue: 10, October 1997)
DOI: 10.1109/8.633852
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Spatial Variation ,
- Electromagnetic Field ,
- Magnetometer ,
- Far-field ,
- Signal Frequency ,
- Computational Load ,
- Vector Production ,
- Single Vector ,
- Single Sensor ,
- Monochromatic Source ,
- Polarization Diversity ,
- Electromagnetic Source ,
- Electromagnetic Components ,
- Eigenvalues ,
- Time Delay ,
- Additive Noise ,
- Curing Time ,
- Azimuth Angle ,
- Polarization State ,
- Phased Array ,
- Signal Estimation ,
- Electric Vector ,
- Magnetic Vector ,
- Steering Vector ,
- Local Vector ,
- Elevation Angle ,
- Spatial Co-localization ,
- Circularly Polarized ,
- Planar Array ,
- Phase Offset
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Spatial Variation ,
- Electromagnetic Field ,
- Magnetometer ,
- Far-field ,
- Signal Frequency ,
- Computational Load ,
- Vector Production ,
- Single Vector ,
- Single Sensor ,
- Monochromatic Source ,
- Polarization Diversity ,
- Electromagnetic Source ,
- Electromagnetic Components ,
- Eigenvalues ,
- Time Delay ,
- Additive Noise ,
- Curing Time ,
- Azimuth Angle ,
- Polarization State ,
- Phased Array ,
- Signal Estimation ,
- Electric Vector ,
- Magnetic Vector ,
- Steering Vector ,
- Local Vector ,
- Elevation Angle ,
- Spatial Co-localization ,
- Circularly Polarized ,
- Planar Array ,
- Phase Offset