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Dongryul Park

Publications and source records attributed to Dongryul Park.

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Multi-Modal Conditioned High-Resolution Transformer for Urban Electromagnetic Field Map Prediction Download PDF

Predicting electromagnetic field (EMF) strength in urban environments is essential for cellular network planning but computationally expensive with physics-based simulators. We propose a multi-conditioned dense prediction framework that generates 500 500 EMF maps from building layout images and antenna configurations. Our architecture uses a High-Resolution Transformer (HRFormer) backbone with two complementary conditioning mechanisms: Feature-wise Linear Modulation (FiLM) injects scalar antenna parameters into all backbone stages, while cross-attention fuses 1-D radiation pattern tokens with spatial features at the deepest stage. We further introduce transmitter-relative spatial channels encoding distance, proximity, and bearing from the antenna, enabling coordinate-consistent test-time augmentation (TTA) that reduces test MAE by 6.3%. To address the prediction difficulty imbalance across EMF maps, we design a composite loss combining masked L1, multi-scale structural similarity (MS-SSIM), and a focal L1 term that upweights high-signal pixels, outperforming individual loss components in all metrics. Our best model achieves a test MAE of 0.0461, a 25.2% improvement over a plain UNet baseline and 31.8% over an HRFormer-only baseline.Do-

cs.CV

Implementation of Noise-Shaped Signaling System through Software-Defined Radio

As developments of electromagnetic weapons, Electronic Warfare (EW) has been rising as the future form of war. Especially in wireless communications, the high security defense systems, such as Low Probability of Detection (LPD), Low Probability of Interception (LPI), or Low Prob-ability of Exploitation (LPE) communication algorithms, are studied to prevent the military force loss. One of the LPD, LPI, and LPE communication algorithm, physical-layer security, has been discussed and studied. We propose a noise signaling system, a type of physical-layer secu-rity, which modifies conventionally modulated I/Q data into a noise-like shape. For presenting the possibility of realistic implementation, we use Software-Defined Radio (SDR). Since there are certain limitations of hardware, we present the limitations, requirements, and preferences of practical implementation of noise signaling system, and the proposed system is ring-shaped signaling. We present the ring-shaped signaling system algorithm, SDR implementation meth-odology, and performance evaluations of the system by the metrics of Bit Error Rate (BER) and Probability of Modulation Identification (PMI), which we obtain by Convolutional Neural Net-work (CNN) algorithm. We conclude that the ring-shaped signaling system can perform a high LPI/LPE communication function due to the eavesdropper cannot obtain the correct used modu-lation scheme information, and the performance can vary by the configurations of the I/Q data modifying factors.

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