This paper proposes a computationally efficient 2-D direction-of-arrival (DoA) estimation method with a uniform rectangular array (URA). This method is called the direct signal-based method in the sense that it is based directly on the phase relationships among the signals arriving at each antenna of an antenna array rather than their correlation matrix. According to the simulation results, it has be shown that the direct signal-based method, with much less computations than any existing methods, yields the performance comparable to that of the MUSIC (MUltiple SIgnal Classification) method in terms of the root-mean-squared error (RMSE) and the maximum absolute error.
@article{ART002889741}, author={Seokhyang Cho}, title={An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array}, journal={Journal of The Korea Society of Computer and Information}, issn={1598-849X}, year={2022}, volume={27}, number={10}, pages={89-94}, doi={10.9708/jksci.2022.27.10.089}
TY - JOUR AU - Seokhyang Cho TI - An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array JO - Journal of The Korea Society of Computer and Information PY - 2022 VL - 27 IS - 10 PB - The Korean Society Of Computer And Information SP - 89 EP - 94 SN - 1598-849X AB - This paper proposes a computationally efficient 2-D direction-of-arrival (DoA) estimation method with a uniform rectangular array (URA). This method is called the direct signal-based method in the sense that it is based directly on the phase relationships among the signals arriving at each antenna of an antenna array rather than their correlation matrix. According to the simulation results, it has be shown that the direct signal-based method, with much less computations than any existing methods, yields the performance comparable to that of the MUSIC (MUltiple SIgnal Classification) method in terms of the root-mean-squared error (RMSE) and the maximum absolute error. KW - Direction signal-based method;Direction of arrival;Uniform rectangular array;MUSIC DO - 10.9708/jksci.2022.27.10.089 ER -
Seokhyang Cho. (2022). An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array. Journal of The Korea Society of Computer and Information, 27(10), 89-94.
Seokhyang Cho. 2022, "An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array", Journal of The Korea Society of Computer and Information, vol.27, no.10 pp.89-94. Available from: doi:10.9708/jksci.2022.27.10.089
Seokhyang Cho "An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array" Journal of The Korea Society of Computer and Information 27.10 pp.89-94 (2022) : 89.
Seokhyang Cho. An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array. 2022; 27(10), 89-94. Available from: doi:10.9708/jksci.2022.27.10.089
Seokhyang Cho. "An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array" Journal of The Korea Society of Computer and Information 27, no.10 (2022) : 89-94.doi: 10.9708/jksci.2022.27.10.089
Seokhyang Cho. An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array. Journal of The Korea Society of Computer and Information, 27(10), 89-94. doi: 10.9708/jksci.2022.27.10.089
Seokhyang Cho. An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array. Journal of The Korea Society of Computer and Information. 2022; 27(10) 89-94. doi: 10.9708/jksci.2022.27.10.089
Seokhyang Cho. An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array. 2022; 27(10), 89-94. Available from: doi:10.9708/jksci.2022.27.10.089
Seokhyang Cho. "An Efficient Direct Signal-Based Direction of Arrival Estimation Using Uniform Rectangular Array" Journal of The Korea Society of Computer and Information 27, no.10 (2022) : 89-94.doi: 10.9708/jksci.2022.27.10.089