在光学模拟电路中实现图像修复,克服动态除法与噪声难题
Optimization-Based Image Restoration under Implementation Constraints in Optical Analog Circuits
- 用ADMM和PDS设计无动态除法的光学电路结构
- 考虑放大器噪声后仍实现高PSNR与SSIM去噪效果
- 适合低延迟低功耗图像处理场景研究者参考
光学模拟电路因其低延迟、低功耗潜力,成为信号处理任务的有前途替代方案。但其在实现迭代算法时面临挑战,尤其是涉及动态变量的除法操作难以实现,且光学放大器引入加性噪声。本文研究在光学模拟电路中实现基于总变差正则化的图像修复算法的可行性。具体设计了广义交替方向乘子法(ADMM)和原对偶分裂(PDS)的电路结构,避免动态变量间的除法操作,并纳入光学放大器带来的加性噪声影响。仿真结果表明,即使考虑放大器噪声,仍可在峰值信噪比(PSNR)和结构相似性指数(SSIM)上实现有效去噪。
原文摘要 · Abstract (English)
Optical analog circuits have attracted attention as promising alternatives to traditional electronic circuits for signal processing tasks due to their potential for low-latency and low-power computations. However, implementing iterative algorithms on such circuits presents challenges, particularly due to the difficulty of performing division operations involving dynamically changing variables and the additive noise introduced by optical amplifiers. In this study, we investigate the feasibility of implementing image restoration algorithms using total variation regularization on optical analog circuits. Specifically, we design the circuit structures for the image restoration with widely used alternating direction method of multipliers (ADMM) and primal dual splitting (PDS). Our design avoids division operations involving dynamic variables and incorporate the impact of additive noise introduced by optical amplifiers. Simulation results show that the effective denoising can be achieved in terms of peak signal to noise ratio (PSNR) and structural similarity index measure (SSIM) even when the circuit noise at the amplifiers is taken into account.
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