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Ruichao Liu

Publications and source records attributed to Ruichao Liu.

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Optimally Bridging Semantics and Data: Generative Semantic Communication via Schr\"odinger Bridge

Generative Semantic Communication (GSC) is a promising solution for image transmission over narrow-band and high-noise channels. However, existing GSC methods rely on long, indirect transport trajectories from a Gaussian to an image distribution guided by semantics, causing severe hallucination and high computational cost. To address this, we propose a general framework named Schr\"odinger Bridge-based GSC (SBGSC). By leveraging the Schr\"odinger Bridge (SB) to construct optimal transport trajectories between arbitrary distributions, SBGSC breaks Gaussian limitations and enables direct generative decoding from semantics to images. Within this framework, we design Diffusion SB-based GSC (DSBGSC). DSBGSC reconstructs the nonlinear drift term of diffusion models using Schr\"odinger potentials, achieving direct optimal distribution transport to reduce hallucinations and computational overhead. To further accelerate generation, we propose a self-consistency-based objective guiding the model to learn a nonlinear velocity field pointing directly toward the image, bypassing Markovian noise prediction to significantly reduce sampling steps. Simulation results demonstrate that DSBGSC outperforms state-of-the-art GSC methods, improving FID by at least 38% and SSIM by 49.3%, while accelerating inference speed by over 8 times.

eess.IV

Closed-Form Analytical Solution for Effective Resistance in Finite 2D Anisotropic Resistor Grids via Jacobi Theta Functions

Computing the effective resistance between nodes in finite discrete resistor grids is a classical problem in circuit analysis with applications in VLSI power delivery network analysis, graph theory, and network science. Recent advances, particularly the infinity mirror technique, provide an elegant physical interpretation for boundary conditions in finite grids. Building upon this foundation, this paper presents a closed-form analytical expression that avoids numerical truncation or polynomial fitting. Our theoretical development proceeds in two steps. First, we derive an exact analytical primitive for the singular integral term $R_2$ within the integral operator $\Omega_\alpha$. Second, we transform the doubly infinite mirror series into a compact expression using the Jacobi theta function $\vartheta_1$. This transformation achieves machine precision with only a few terms. However, under high anisotropy, the pure analytical approximation exhibits a distinct "cross-shaped" residual error. To address this, we introduce a hybrid engineering remediation: a dynamic numerical cache that performs localized grid integration (LGI), combining $O(1)$ speed with exact near-field accuracy. Numerical experiments demonstrate mean relative errors below 0.04% compared to SPICE simulations, eliminating axis-localized error artifacts. To facilitate further research, the implementation of our proposed 2D resistor grid calculator is available at: https://github.com/SeaTheDestiny/2D-Resistor-Grid-Calculator.git.

eess.SP

An experimental study of using artificial reefs as scour protection around an offshore wind monopile

Artificial reefs (ARs) are man-made structures deployed on the seabed to support benthic marine ecosystems. Their presence significantly damps the local flow and therefore can be used for scour protection of offshore wind monopiles. Although the concept appears feasible, the underlying flow-sediment process is very complex and has yet been systematically investigated. To fill in this gap, a set of fixed-bed flume tests were conducted to reveal the hydrodynamic details of two typical AR shapes (cubic and hemisphere) tightly placed around a monopile in a 3x3 pattern. In parallel, a set of live-bed tests were conducted to demonstrate the AR's efficiency in scour protection. The cubic ARs almost eliminate the downward flow on the upstream side of the monopile and reduces the wake flow by 50-80%. The hemisphere ARs also significantly weaken the wake flow but guide descending flow in front of the monopile. While cubic ARs decrease upstream and downstream scour depth by up to 100%, their edge scour can lead to ARs displacement and hence reduce scour protection. The hemisphere ARs provided less scour reduction, but also less edge scour, making them more adaptive to morphology changes. Based on these findings, an optimized AR layout was proposed.

physics.flu-dyn