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Analysis method of noise power spectrum for medical monochrome liquid crystal displays

机译:医用单色液晶显示器的噪声功率谱分析方法

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We investigated methods of analyzing the noise power spectrum (NPS) measurement for medical liquid crystal displays (LCDs). Uniform images displayed on the LCDs were imaged with a high-performance digital camera equipped with a close-up lens, and then the NPSs were calculated from the image data by means of several analysis methods. In a method using the 2D fast Fourier transform (FFT) with a 256 × 256 pixels data segment (basic method), we examined the efficacy of a background trend correction (BTC) and a Hanning windowing process used for reducing the spectral estimation errors in the Fourier analysis. To improve the frequency resolution of the basic method, we examined two 2D FFT methods by using 512 × 512 and 1024 × 1024 pixel segments. In addition, we studied a 1D FFT method with 1024-point 1D noise profiles (1D method). In these three methods, the BTC by a second-order polynomial fit and Hanning windowing were commonly applied. A 3-mega-pixel (MP) and a 5-MP monochrome LCD were employed for evaluating the respective methods. Also, a prototype 5-MP LCD equipped with a new anti-reflection surface-coated panel was compared with the conventional 5-MP LCD. The Hanning windowing process was indispensable for avoiding the spectral leakage errors caused by the pixel structures of the LCD. Sufficient frequency resolution was obtained by the 2D FFT method with the 1024 × 1024 pixels segments and the 1D method. The method which provided the most reliable NPSs was the 1D method, with which the BTC was achieved successfully.
机译:我们研究了分析医疗液晶显示器(LCD)的噪声功率谱(NPS)测量的方法。使用配备有近摄镜头的高性能数码相机对LCD上显示的均匀图像进行成像,然后通过多种分析方法从图像数据中计算出NPS。在使用带有256×256像素数据段的2D快速傅里叶变换(FFT)的方法(基本方法)中,我们检查了背景趋势校正(BTC)和用于减少光谱估计误差的汉宁加窗处理的功效傅立叶分析。为了提高基本方法的频率分辨率,我们使用512×512和1024×1024像素段检查了两种2D FFT方法。此外,我们研究了具有1024点1D噪声轮廓的1D FFT方法(1D方法)。在这三种方法中,通常采用基于二阶多项式拟合的BTC和Hanning窗。使用3兆像素(MP)和5 MP单色LCD评估相应方法。此外,将配备新型防反射表面涂层面板的原型5-MP LCD与常规5-MP LCD进行了比较。为了避免由LCD的像素结构引起的光谱泄漏误差,Hanning加窗处理是必不可少的。通过具有1024×1024像素段的2D FFT方法和1D方法可以获得足够的频率分辨率。提供最可靠NPS的方法是一维方法,成功地实现了BTC。

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