![]() Image processing technology (image greyscale and image similarity comparison) was employed to determine the image algorithm suitable for contour map pre-processing and the best time period for VSWC monitoring. #Color2gray matlab software#In this study, a cotton field under mulched drip irrigation in 2018 was utilised as the research subject, 5TE sensors were arranged on the soil profile of the cotton field using the "grid method", and Voxler and Surfer software was used to model the VSWC data and draw contour maps. Based on image technology, we simulated the optimal frequency of the sensors to automatically collect VSWC data, thereby solving the problems of data redundancy and data analysis difficulties in real-time monitoring. Image technology is commonly used in agricultural information technology. Accurate and real-time determination of the VSWC is important for crop drought stress diagnosis and smart irrigation. Volumetric soil water content (VSWC) monitoring is an important aspect of environmental monitoring of farmland. Third, we demonstrate that an effective luminance distribution can be achieved using our algorithm using global and local tone mapping applications. Quantified using the objective metrics (E-score and C2G-SSIM) and subjective user studies (decolorization and tone mapping). Second, our optimal color conversion method produces luminance in images that are comparable to other state-of-the-art methods that we First, we implement a high-speed color processing method using exact pixel-by-pixel processing, and we report a 5.7× speed up compared with other new algorithms. In this proposed color-to-gray conversion model, we implement a weighted blending function to combine red (perceived warm) and blue (perceived cool) channels. This phenomenon creates a perception of warm colors “advancing” toward the eye, whereas the cool colors to be “receding” away. ![]() Rays corresponding to cooler colors (such as blue, green) to converge before the warmer colors (such as red and orange). Chromatic aberration results from differential refraction of light depending on its wavelength. ![]() We propose a lightweight and high-speed image decolorization method based on human perception of color temperatures. However, some image information is lost when converting from color to grayscale. Grayscale images are fundamental to many image processing applications, such as data compression, feature extraction, printing, and tone mapping. ![]()
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