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HLS Based Approach to Develop an Implementable HDR Algorithm

DOI:10.3390/electronics7110332 期刊:Electronics 出版年份:2018 更新时间:2025-09-23 15:22:29
摘要: Hardware suitability of an algorithm can only be verified when the algorithm is actually implemented in the hardware. By hardware, we indicate system on chip (SoC) where both processor and field-programmable gate array (FPGA) are available. Our goal is to develop a simple algorithm that can be implemented on hardware where high-level synthesis (HLS) will reduce the tiresome work of manual hardware description language (HDL) optimization. We propose an algorithm to achieve high dynamic range (HDR) image from a single low dynamic range (LDR) image. We use highlight removal technique for this purpose. Our target is to develop parameter free simple algorithm that can be easily implemented on hardware. For this purpose, we use statistical information of the image. While software development is verified with state of the art, the HLS approach confirms that the proposed algorithm is implementable to hardware. The performance of the algorithm is measured using four no-reference metrics. According to the measurement of the structural similarity (SSIM) index metric and peak signal-to-noise ratio (PSNR), hardware simulated output is at least 98.87 percent and 39.90 dB similar to the software simulated output. Our approach is novel and effective in the development of hardware implementable HDR algorithm from a single LDR image using the HLS tool.
作者: Rappy Saha,Partha Pratim Banik,Ki-Doo Kim
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To develop a simple, parameter-free algorithm for generating HDR images from a single LDR image using highlight removal, and to verify its hardware implementability using HLS tools.

The proposed parameter-free algorithm effectively generates HDR images from single LDR images using highlight removal, with improved quality and processing speed compared to existing methods. HLS-based implementation confirms hardware feasibility, achieving high similarity between software and hardware outputs (SSIM ≥98.87%, PSNR ≥39.90 dB). Future work includes complete SoC implementation and further optimizations.

The algorithm assumes that highlight areas are not fully saturated and surfaces are inhomogeneous. It may not perform well with fully saturated highlights or homogeneous surfaces. The HLS implementation is optimized for specific FPGA resources and may require adjustments for other hardware. The study focuses on PL side development; full SoC implementation is not completed.

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