面向城市工地遥感场景的自适应颜色迁移网络

    Adaptive Color Transfer Network for Remote Sensing Scenarios of Urban Consruction Sites

    • 针对多时相遥感图像颜色偏差影响城市工地变化检测精度的问题,文章提出一种自适应颜色迁移循环一致性对抗网络(Adaptive Color Transfer Cycle-Consistent Adversarial Network,ACT-CycleGAN)。该方法在双输入U-Net生成器中引入动态特征映射模块(Dynamic Feature Mapping Module,DFMM)以提取颜色风格引导特征,通过自适应颜色迁移提升跨时相图像的色彩一致性;同时设计内容损失函数,以多层特征约束保证地物结构和纹理细节的稳定性;并结合感知损失函数缓解内容约束带来的颜色失真。实验结果表明,与现有主流颜色迁移方法相比,改进后的模型在自制数据集上的SSIM和FSIM上分别提高了4.62%和2.73%,ΔE00与FID分别降低了0.11583.3832;最后在城市工地场景的变化检测实验中,图像迁移处理后各项指标均有提升。该方法能够有效校正遥感影像间的颜色偏差,通过统一输入图像色调减少变化检测中的误检与漏检,充分验证了其在城市工地变化检测中的应用价值。

       

      Abstract: To address the negative impact of color bias in multi-temporal remote sensing images on the accuracy of urban construction site change detection, an Adaptive Color Transfer Cycle-Consistent Adversarial Network (ACT-CycleGAN) is proposed. In the proposed framework, a Dynamic Feature Mapping Module (DFMM) is embedded within a dual-input U-Net generator to extract color-style guidance features, enabling adaptive color transfer to enhance cross-temporal color consistency. Furthermore, a content loss function is designed to constrain multi-level features, thereby preserving the structural and textural stability of ground objects, while an additional perceptual loss mitigates color distortion caused by strict content constraints. Experimental results demonstrate that, compared with existing mainstream color transfer algorithms, the proposed method achieves 4.62% improvement in SSIM and 2.73% in FSIM, while reducing ΔE00 and FID by 0.1158 and 3.3832, respectively. Finally, in change detection experiments targeting urban construction site scenes, all evaluation metrics shows improvement after image transfer processing. This method effectively corrects color discrepancies between multi-temporal remote sensing images, thereby harmonizing the tonal characteristics of the inputs and reducing both false alarms and missed detections in change detection tasks. The results verify its high practical value for change monitoring in urban construction sites.

       

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