EDBT 2026 Demo / reviewers in the wild / expert
Xin Lin 0002
dblp:50/3323-2
· DBLP profile ↗
13ranked-venue papers
2as first author
11since 2021 · last 2024
—ORCID · conflict
Domains — the database's venue-derived domains; a paper can count in several
Applied, interdisciplinary, general and emerging computing · 13 · 2 first-author · 11 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2024 | STAP Performance Analysis Using Different Receiving Antenna Weighting Manners in Space-Based Early Warning Radar SystemsabstractIn this paper, the influence of different receiving array element weighting manners on the space-time adaptive processing (STAP) technique is analyzed. Firstly, the element-based echo signal in a space-borne early warning radar (SBEWR) system is established, and then the STAP procedure by utilizing two alternative receiving array element weighting models are introduced. After that, the antenna patterns with respect to two weighting manners are discussed and the target output signal-to-clutter-plus-noise ratio (SCNR) after STAP are evaluated. The numerical results show that the subarray element weighting manner obtains a better STAP performance without channel mismatch compensation while a slightly inferior STAP performance with channel mismatch compensation compared with the whole antenna weighting manner. Lingyu Wang 0004, Xin Lin 0002, Haojuan Yuan, Penghui Huang, Changhong He, Muyang Zhan, Fengyuan Hu |
IGARSS | 3 |
| 2023 | An Optimal Beam Design Algorithm for Space-Based Early Warning Radar SystemsabstractTo achieve tight beam coverage and obtain the optimal target detection performance for a space-based early warning radar (SBEWR) system, the reasonable radar beam design is prerequisite. In this paper, an optimal beam position design algorithm in a SBEWR system is proposed, where the beam position overlap rate (BPOR) choice is reasonably designed. In the proposed algorithm, the maximum signal-to-clutter and noise ratio (SCNR) of the targets located at the beam position edge is chosen as the criterion for the BPOR optimization design. The BPOR designment result provides important guidance and references for beam filling designment and guarantee the effective target detection capability of a SBEWR system. Jiangyuan Chen, Penghui Huang, Xin Lin 0002, Donghong Wang, Peili Xi, Yongyan Sun, Guozhong Chen, Xingzhao Liu |
IGARSS | 3 |
| 2023 | Approach for Along-Track Baseline Distribution Design in a Multi-Satellite Distributed Space-Based Radar SystemabstractDue to existence of the long along-track baseline (ATB) between the satellites in a distributed space-based early warning radar (DSBEWR) system, a large number of grating lobes appear in radar returns, causing the noncontinuous detection phenomenon of an aerial moving target (AMT). To solve this problem, in this paper, a novel approach for ATB distribution design in a muti-satellite DSBEWR system is proposed. In the proposed algorithm, to reduce the amount of spatial ambiguity points located at the main-lobe region, the main-lobe gain of the received antenna pattern in the azimuth dimension is designed to be maximum via the non-uniformly intersatellite ATB designment. The effectiveness of the proposed method is verified by the simulated multi-channel radar data in a DSBEWR system. Jiangyuan Chen, Penghui Huang, Peili Xi, Xin Lin 0002, Lihuan Huo, Yongyan Sun, Guozhong Chen, Xingzhao Liu |
IGARSS | 4 |
| 2023 | Air Moving Target Indication in Nadir Region for Spaceborne Surveillance Radar SystemsabstractFor air moving target indication in nadir region, due to the fact that a spaceborne radar beam can illuminate the top of fuselage, the target radar cross section is usually high, which is beneficial for the detection of a low-observable target. However, due to the short slant range, specular reflection effect, and relatively low radar ground resolution, the power of clutter component from nadir region is comparatively high, leading to the insufficient clutter suppression and the degradation of target detection performance. Fortunately, when an air moving target is adequately high, the target echo is able to be separated from the main clutter echoes due to a shorter time delay, making it possible to be only mixed with low-power ambiguous clutter echoes. Based on these considerations, this paper analyzes the performance of air moving target indication in nadir region for a spaceborne surveillance radar system. It analyzes the target minimum detectable velocities with different target heights and beam center elevation angles. Also, an effective sample selection method based on adaptive range segmentation is proposed to solve the power heterogeneity issue between the main clutter area and the range ambiguous clutter area. As a conclusion, the larger the elevation angle of an air moving target is, the higher the minimum target detectable height is. Zihao Zou, Penghui Huang, Xin Lin 0002, Xiang-Gen Xia 0001, Peili Xi, Yongyan Sun, Xingzhao Liu |
IEEE Geosci. Remote. Sens. Lett. | 3 |
| 2023 | Ground Moving Target Indication and Relocation in Spaceborne MIMO-SAR SystemsabstractMultiple-input–multiple-output (MIMO) technique has recently received great attention due to its promising prospect for ground moving target indication (GMTI) applications in a synthetic aperture radar (SAR) system. In this article, an SAR-GMTI processing technique in an MIMO-SAR system with dual-channel configuration is proposed. In the proposed method, up and down chirps are adopted as the transmitted waveforms. Then, the baseline estimation and clutter rejection are simultaneously accomplished in the raw Doppler data domain, after which two separated range-compressed echo signals corresponding to two transmitters can be obtained without the influence of cross-correlated interferences of the clutters. Subsequently, a ground moving target can be detected, clustered, finely refocused based on the Doppler chirp parameter estimation, and accurately relocated by using the along-track interferometry (ATI) processing technique. Simulated experiments are implemented to validate and evaluate the feasibility of the proposed method. Lingyu Wang 0004, Penghui Huang, Xin Lin 0002, Xiang-Gen Xia 0001, Junli Chen, Peili Xi, Xingzhao Liu |
IEEE Trans. Geosci. Remote. Sens. | 3 |
| 2022 | Approach for Linear Time Synchronization Error Estimation and Calibration in a Distributed Space-Borne Early Warning RadarabstractDue to the existence of the time synchronization error, the correlation coefficient between the main satellite and auxiliary satellite severely declines, thus deteriorating the clutter suppression ability and aerial moving target indication (AMTI) performance in a distributed space-based early warning radar (DSBEWR) system. In this paper, a novel algorithm is proposed to estimate and calibrate the linear time synchronization error. In the proposed algorithm, the rough linear time synchronization error range is firstly estimated according to the Doppler offset between the same spatial channel in the main satellite and the auxiliary satellite. After obtaining the searched rough error range, the linear time synchronization error can be accurately obtained by finding the max correlation coefficient between the main satellite and auxiliary satellite after performing time synchronization error compensation. The effectiveness of the proposed method is verified by the simulated multi-channel radar data in a DSBEWR system. Jiangyuan Chen, Xin Lin 0002, Penghui Huang, Yanyang Liu, Peili Xi, Guozhong Chen, Xingzhao Liu |
IGARSS | 2 |
| 2022 | Approach for Spatial Ambiguity Suppression in a Distributed Space-Based Early Warning Radar SystemabstractDue to existence of the long along-track baseline (ATB) in a distributed space-based early warning radar (DSBEWR) system, a large number of grating lobes appears in both main-lobe and side-lobe clutter regions, causing the discontinuously detectable phenomenon of an aerial moving target (AMT). To solve this problem, in this paper, a novel spatial ambiguity suppression algorithm is proposed. In the proposed algorithm, based on the prior information provided by the system parameters and the signal processing results from the single satellite radar data, after performing the multi-channel clutter rejection, the spatial ambiguity can be eliminated via the joint processing of residual clutter signals corresponding to the single satellite and the muti-satellites. Simulated processing results are provided to validate the effectiveness of the proposed method. Jiangyuan Chen, Xin Lin 0002, Penghui Huang, Peili Xi, Guozhong Chen, Lihuan Huo, Xingzhao Liu |
IGARSS | 2 |
| 2022 | A Modified Omega-K Algorithm Based on a Range Equivalent Model for Geo Spaceborne-Airborne BISAR ImagingabstractGeosynchronous spaceborne-airborne bistatic synthetic aperture radar (GEO-BiSAR) has the advantages of wide beam coverage, long exposure time, and superior system flexibility. However, it is a challenge for GEO-BiSAR to efficiently acquire SAR images both with high resolution and wide swath due to the severe range and azimuth spatial variances. To deal with this issue, a modified Omega-K method is proposed in this paper. In the proposed algorithm, an equivalent range model associated with GEO-BiSAR configuration is built, where the equivalent parameters of the airborne radar receiver absorb the phase parameters corresponding to the GEO transmitter. Then, the Stolt interpolation is performed to realize the range-azimuth decoupling, achieving the linearization between range and frequency variables. Finally, a well-focused SAR image could be obtained after residual spatial variance error compensation. Simulations are presented to demonstrate the effectiveness of the proposed method. Yiyu Guo, Penghui Huang, Peili Xi, Xingzhao Liu, Guisheng Liao, Guozhong Chen, Yanyang Liu, Xin Lin 0002 |
IGARSS | 8 |
| 2022 | A Novel Signal Restoration Method for Staggered-SAR SystemabstractBy transmitting the constant pulse repetition interval (PRI) sequence, the traditional synthetic aperture radar (SAR) system will suffer from the loss of coverage in elevation. Thus a staggered-SAR system is developed in recent years, which employs the continuously PRI-varied sequence, making the blind ranges locate at different regions in different receive instant. However, the nonuniformly sampled signal will cause ambiguities in the SAR imaging result. To deal with this issue, in this paper, a novel signal restoration method based on kernel regression is proposed to resample the nonuniform signal. Real-measured spaceborne SAR data is used to validate the proposed method. He Huang 0009, Xin Lin 0002, Penghui Huang, Huaitao Fan, Yanyang Liu, Peili Xi, Xingzhao Liu, Guozhong Chen |
IGARSS | 2 |
| 2022 | A Novel Reconstruction Method for HRWS-TOPS SAR ImagingabstractNext-generation SAR imaging system demands wide-swath and high resolution to observe Earth's surface, promoting the development of the high-resolution and wide-swath (HRWS) synthetic aperture radar (SAR) system working in terrain observation by progressive scans (TOPS). However, Doppler ambiguities will occur in this system, causing the imaging performance severely degrading. To address this issue, in this paper, a novel Doppler ambiguous suppression method for an HRWS-TOPS SAR system based on the orthogonal projection subspace is developed. The effectiveness of the proposed method is verified by both the simulated and real SAR data. He Huang 0009, Xin Lin 0002, Penghui Huang, Huaitao Fan, Yanyang Liu, Peili Xi, Xingzhao Liu, Guozhong Chen |
IGARSS | 2 |
| 2022 | Sea Clutter Suppression Based on Short-Time Fourier Transform in an Airborne Radar SystemabstractThe marine moving target detection is a very attractive research field in recent years. However, due to the existence of sea clutter with complex internal motion, the traditional space-time adaptive processing (STAP) methods may not obtain good processing performance. In this paper, the multichannel sea clutter is modeled and the time-varying and space-varying properties of sea clutter are analyzed. In addition, the time-frequency distribution characteristics of sea clutter are analyzed. Finally, a multichannel sea clutter suppression method based on short-time Fourier transform is proposed. The simulation results show that the proposed method can achieve better sea clutter suppression performance than that of the traditional STAP method. Hao Yang 0014, Penghui Huang, Peili Xi, Xin Lin 0002, Yongyan Sun, Guozhong Chen, Yanyang Lui, Xingzhao Liu |
IGARSS | 4 |
| 2014 | A novel concept of plane grid resolution for high-resolution SAR imaging systemsabstractSynthetic aperture radar (SAR) is an active microwave sensor which is able to produce high-resolution images with day and night capability. Traditionally, the image quality assessment of the SAR system is described by the response function of an isolated point target. However, some man-made targets which are placed together can not be distinguished clearly. As the point target has the characteristic of the isotropic scattering, the retrieval capability for target structure details and contours by using the point target assessment method cannot be assessed accurately in a practical scene. In this paper, a new image quality assessment method (especially for plane targets) is proposed to solve this problem. The definitions of the plane grid and the plane grid resolution are given to support. After giving the scene construction of the Test Field used for measuring the plane grid resolution (PGR), a corresponding algorithm is also proposed. Experiment results show that the proposed assessment method describes the SAR image quality for man-made targets more accurate than the traditional assessment method in a practical scene. Xin Lin 0002, Kaizhi Wang, Xingzhao Liu |
IGARSS | 1 |
| 2013 | A new MTF-based image quality assessment for high-resolution SAR SensorsabstractSynthetic aperture radar (SAR) is an active microwave sensor which is able to produce high-resolution images of the earth surface, with all-weather day and night capability. Conventionally, SAR image quality assessment is typically done by evaluating the signal of the corner reflectors which are positioned in the scenery, and a specialist is needed to extract some characteristic parameters (e.g. the 3-dB impulse response width, the PSLR and the ISLR) to assess the SAR image quality. But it is still an unsolved problem that whether the SAR image quality assessment based on current parameters can predict the reliable probabilities of target recognition from the high-resolution SAR images. For EO sensors (Electro Optical sensors), the image assessment is assessed by the evaluation of MTF (Modulation Transfer Function), with non-specialists. In this paper, a new concept for SAR image quality assessment is proposed to solve this problem. The definitions of spatial frequency and MTF are given to support the new concept. After giving the scene construction of a TEST Field used for measuring MTF, an MTF measuring algorithm is proposed. Experiment results show that the proposed assessment method can describe SAR image quality more accurately and effectively than traditional PSF assessment method. Xin Lin 0002, Kaizhi Wang, Xingzhao Liu |
IGARSS | 1 |