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Microsoft ResX Schema
Version 2.0
The primary goals of this format is to allow a simple XML format
that is mostly human readable. The generation and parsing of the
various data types are done through the TypeConverter classes
associated with the data types.
Example:
... ado.net/XML headers & schema ...
<resheader name="resmimetype">text/microsoft-resx</resheader>
<resheader name="version">2.0</resheader>
<resheader name="reader">System.Resources.ResXResourceReader, System.Windows.Forms, ...</resheader>
<resheader name="writer">System.Resources.ResXResourceWriter, System.Windows.Forms, ...</resheader>
<data name="Name1"><value>this is my long string</value><comment>this is a comment</comment></data>
<data name="Color1" type="System.Drawing.Color, System.Drawing">Blue</data>
<data name="Bitmap1" mimetype="application/x-microsoft.net.object.binary.base64">
<value>[base64 mime encoded serialized .NET Framework object]</value>
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<data name="Icon1" type="System.Drawing.Icon, System.Drawing" mimetype="application/x-microsoft.net.object.bytearray.base64">
<value>[base64 mime encoded string representing a byte array form of the .NET Framework object]</value>
<comment>This is a comment</comment>
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Each data row contains a name, and value. The row also contains a
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read any of the formats listed below.
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value : The object must be serialized with
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<xsd:schema id="root" xmlns="" xmlns:xsd="http://www.w3.org/2001/XMLSchema" xmlns:msdata="urn:schemas-microsoft-com:xml-msdata">
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<data name="ContrastProcessor_Name" xml:space="preserve">
<value>对比度调整</value>
</data>
<data name="ContrastProcessor_Description" xml:space="preserve">
<value>调整图像的对比度和亮度</value>
</data>
<data name="ContrastProcessor_Contrast" xml:space="preserve">
<value>对比度</value>
</data>
<data name="ContrastProcessor_Contrast_Desc" xml:space="preserve">
<value>对比度增益,1.0为原始对比度</value>
</data>
<data name="ContrastProcessor_Brightness" xml:space="preserve">
<value>亮度</value>
</data>
<data name="ContrastProcessor_Brightness_Desc" xml:space="preserve">
<value>亮度偏移量</value>
</data>
<data name="ContrastProcessor_AutoContrast" xml:space="preserve">
<value>自动对比度</value>
</data>
<data name="ContrastProcessor_AutoContrast_Desc" xml:space="preserve">
<value>自动拉伸对比度到全范围</value>
</data>
<data name="ContrastProcessor_UseCLAHE" xml:space="preserve">
<value>使用CLAHE</value>
</data>
<data name="ContrastProcessor_UseCLAHE_Desc" xml:space="preserve">
<value>使用限制对比度自适应直方图均衡化</value>
</data>
<data name="ContrastProcessor_ClipLimit" xml:space="preserve">
<value>CLAHE裁剪限制</value>
</data>
<data name="ContrastProcessor_ClipLimit_Desc" xml:space="preserve">
<value>CLAHE的对比度限制阈值</value>
</data>
<data name="BandPassFilterProcessor_Name" xml:space="preserve">
<value>带通滤波器</value>
</data>
<data name="BandPassFilterProcessor_Description" xml:space="preserve">
<value>保留指定频率范围内的图像信息</value>
</data>
<data name="BandPassFilterProcessor_LowCutoff" xml:space="preserve">
<value>低频截止半径</value>
</data>
<data name="BandPassFilterProcessor_LowCutoff_Desc" xml:space="preserve">
<value>低于此频率的成分将被去除</value>
</data>
<data name="BandPassFilterProcessor_HighCutoff" xml:space="preserve">
<value>高频截止半径</value>
</data>
<data name="BandPassFilterProcessor_HighCutoff_Desc" xml:space="preserve">
<value>高于此频率的成分将被去除</value>
</data>
<data name="BandPassFilterProcessor_FilterType" xml:space="preserve">
<value>滤波器类型</value>
</data>
<data name="BandPassFilterProcessor_FilterType_Desc" xml:space="preserve">
<value>滤波器的过渡特性</value>
</data>
<data name="BandPassFilterProcessor_Order" xml:space="preserve">
<value>巴特沃斯阶数</value>
</data>
<data name="BandPassFilterProcessor_Order_Desc" xml:space="preserve">
<value>巴特沃斯滤波器的阶数</value>
</data>
<data name="ContourProcessor_Name" xml:space="preserve">
<value>轮廓查找</value>
</data>
<data name="ContourProcessor_Description" xml:space="preserve">
<value>检测图像中的轮廓并输出轮廓信息</value>
</data>
<data name="ContourProcessor_TargetColor" xml:space="preserve">
<value>目标颜色</value>
</data>
<data name="ContourProcessor_TargetColor_Desc" xml:space="preserve">
<value>选择要查找的区域颜色(白色或黑色)</value>
</data>
<data name="ContourProcessor_UseThreshold" xml:space="preserve">
<value>启用阈值分割</value>
</data>
<data name="ContourProcessor_UseThreshold_Desc" xml:space="preserve">
<value>在查找轮廓前先进行二值化处理</value>
</data>
<data name="ContourProcessor_ThresholdValue" xml:space="preserve">
<value>阈值</value>
</data>
<data name="ContourProcessor_ThresholdValue_Desc" xml:space="preserve">
<value>二值化的阈值(0-255</value>
</data>
<data name="ContourProcessor_UseOtsu" xml:space="preserve">
<value>使用Otsu自动阈值</value>
</data>
<data name="ContourProcessor_UseOtsu_Desc" xml:space="preserve">
<value>自动计算最佳阈值</value>
</data>
<data name="ContourProcessor_MinArea" xml:space="preserve">
<value>最小面积</value>
</data>
<data name="ContourProcessor_MinArea_Desc" xml:space="preserve">
<value>过滤小于此面积的轮廓</value>
</data>
<data name="ContourProcessor_MaxArea" xml:space="preserve">
<value>最大面积</value>
</data>
<data name="ContourProcessor_MaxArea_Desc" xml:space="preserve">
<value>过滤大于此面积的轮廓</value>
</data>
<data name="ContourProcessor_Thickness" xml:space="preserve">
<value>线条粗细</value>
</data>
<data name="ContourProcessor_Thickness_Desc" xml:space="preserve">
<value>绘制轮廓的线条粗细</value>
</data>
<data name="DivisionProcessor_Name" xml:space="preserve">
<value>除法运算</value>
</data>
<data name="DivisionProcessor_Description" xml:space="preserve">
<value>对图像进行除法运算,可用于背景校正和归一化</value>
</data>
<data name="DivisionProcessor_Divisor" xml:space="preserve">
<value>除数</value>
</data>
<data name="DivisionProcessor_Divisor_Desc" xml:space="preserve">
<value>图像每个像素值将除以此数值</value>
</data>
<data name="DivisionProcessor_Scale" xml:space="preserve">
<value>缩放因子</value>
</data>
<data name="DivisionProcessor_Scale_Desc" xml:space="preserve">
<value>除法结果乘以此缩放因子</value>
</data>
<data name="DivisionProcessor_Normalize" xml:space="preserve">
<value>归一化输出</value>
</data>
<data name="DivisionProcessor_Normalize_Desc" xml:space="preserve">
<value>将结果归一化到0-255范围</value>
</data>
<data name="GammaProcessor_Name" xml:space="preserve">
<value>Gamma校正</value>
</data>
<data name="GammaProcessor_Description" xml:space="preserve">
<value>通过Gamma值调节图像的亮暗程度</value>
</data>
<data name="GammaProcessor_Gamma" xml:space="preserve">
<value>Gamma值</value>
</data>
<data name="GammaProcessor_Gamma_Desc" xml:space="preserve">
<value>Gamma值,小于1图像变暗,大于1图像变亮</value>
</data>
<data name="GammaProcessor_Gain" xml:space="preserve">
<value>增益</value>
</data>
<data name="GammaProcessor_Gain_Desc" xml:space="preserve">
<value>输出增益系数</value>
</data>
<data name="GaussianBlurProcessor_Name" xml:space="preserve">
<value>高斯模糊</value>
</data>
<data name="GaussianBlurProcessor_Description" xml:space="preserve">
<value>使用高斯核对图像进行平滑处理</value>
</data>
<data name="GaussianBlurProcessor_KernelSize" xml:space="preserve">
<value>核大小</value>
</data>
<data name="GaussianBlurProcessor_KernelSize_Desc" xml:space="preserve">
<value>高斯核的大小,必须为奇数</value>
</data>
<data name="GaussianBlurProcessor_Sigma" xml:space="preserve">
<value>标准差</value>
</data>
<data name="GaussianBlurProcessor_Sigma_Desc" xml:space="preserve">
<value>高斯核的标准差,控制模糊程度</value>
</data>
<data name="MorphologyProcessor_Name" xml:space="preserve">
<value>形态学处理</value>
</data>
<data name="MorphologyProcessor_Description" xml:space="preserve">
<value>执行形态学操作(腐蚀、膨胀、开运算、闭运算)</value>
</data>
<data name="MorphologyProcessor_Operation" xml:space="preserve">
<value>操作类型</value>
</data>
<data name="MorphologyProcessor_Operation_Desc" xml:space="preserve">
<value>选择形态学操作类型</value>
</data>
<data name="MorphologyProcessor_KernelSize" xml:space="preserve">
<value>核大小</value>
</data>
<data name="MorphologyProcessor_KernelSize_Desc" xml:space="preserve">
<value>结构元素的大小</value>
</data>
<data name="MorphologyProcessor_Iterations" xml:space="preserve">
<value>迭代次数</value>
</data>
<data name="MorphologyProcessor_Iterations_Desc" xml:space="preserve">
<value>形态学操作重复执行的次数</value>
</data>
<data name="ShockFilterProcessor_Name" xml:space="preserve">
<value>冲击滤波</value>
</data>
<data name="ShockFilterProcessor_Description" xml:space="preserve">
<value>边缘增强和去噪</value>
</data>
<data name="ShockFilterProcessor_Iterations" xml:space="preserve">
<value>迭代次数</value>
</data>
<data name="ShockFilterProcessor_Iterations_Desc" xml:space="preserve">
<value>滤波迭代次数</value>
</data>
<data name="ShockFilterProcessor_Theta" xml:space="preserve">
<value>阈值</value>
</data>
<data name="ShockFilterProcessor_Theta_Desc" xml:space="preserve">
<value>边缘检测阈值</value>
</data>
<data name="ShockFilterProcessor_Dt" xml:space="preserve">
<value>时间步长</value>
</data>
<data name="ShockFilterProcessor_Dt_Desc" xml:space="preserve">
<value>演化时间步长</value>
</data>
<data name="ThresholdProcessor_Name" xml:space="preserve">
<value>阈值分割</value>
</data>
<data name="ThresholdProcessor_Description" xml:space="preserve">
<value>对图像进行二值化处理</value>
</data>
<data name="ThresholdProcessor_Threshold" xml:space="preserve">
<value>阈值</value>
</data>
<data name="ThresholdProcessor_Threshold_Desc" xml:space="preserve">
<value>二值化阈值,像素值大于此值将被设为最大值</value>
</data>
<data name="ThresholdProcessor_MaxValue" xml:space="preserve">
<value>最大值</value>
</data>
<data name="ThresholdProcessor_MaxValue_Desc" xml:space="preserve">
<value>超过阈值的像素将被设置为此值</value>
</data>
<data name="ThresholdProcessor_UseOtsu" xml:space="preserve">
<value>使用Otsu自动阈值</value>
</data>
<data name="ThresholdProcessor_UseOtsu_Desc" xml:space="preserve">
<value>启用后将自动计算最佳阈值</value>
</data>
<data name="FilterProcessor_Name" xml:space="preserve">
<value>综合筛选器</value>
</data>
<data name="FilterProcessor_Description" xml:space="preserve">
<value>集成多种滤波方法</value>
</data>
<data name="FilterProcessor_FilterType" xml:space="preserve">
<value>类型</value>
</data>
<data name="FilterProcessor_FilterType_Desc" xml:space="preserve">
<value>选择滤波方式</value>
</data>
<data name="FilterProcessor_KernelSize" xml:space="preserve">
<value>核大小</value>
</data>
<data name="FilterProcessor_KernelSize_Desc" xml:space="preserve">
<value>滤波器卷积核大小(必须为奇数)</value>
</data>
<data name="FilterProcessor_Sigma" xml:space="preserve">
<value>Sigma</value>
</data>
<data name="FilterProcessor_Sigma_Desc" xml:space="preserve">
<value>高斯 / 双边滤波器的标准差</value>
</data>
<data name="FilterProcessor_D0" xml:space="preserve">
<value>截止频率</value>
</data>
<data name="FilterProcessor_D0_Desc" xml:space="preserve">
<value>频域滤波的截止频率</value>
</data>
<data name="FilterProcessor_LowCutoff" xml:space="preserve">
<value>低截止半径</value>
</data>
<data name="FilterProcessor_LowCutoff_Desc" xml:space="preserve">
<value>低于该频率的分量将被移除</value>
</data>
<data name="FilterProcessor_HighCutoff" xml:space="preserve">
<value>高截止半径</value>
</data>
<data name="FilterProcessor_HighCutoff_Desc" xml:space="preserve">
<value>高于此频率的分量将被移除</value>
</data>
<data name="FilterProcessor_BandPassFilterType" xml:space="preserve">
<value>类型</value>
</data>
<data name="FilterProcessor_BandPassFilterType_Desc" xml:space="preserve">
<value>过镀特性</value>
</data>
<data name="FilterProcessor_Order" xml:space="preserve">
<value>巴特沃斯阶数</value>
</data>
<data name="FilterProcessor_Order_Desc" xml:space="preserve">
<value>巴特沃斯滤波器阶数</value>
</data>
<data name="FilterProcessor_Gaussian_Name" xml:space="preserve">
<value>高斯滤波器</value>
</data>
<data name="FilterProcessor_Gaussian_Desc" xml:space="preserve">
<value>在保留边缘细节的同时平滑图像并降低高斯噪声</value>
</data>
<data name="FilterProcessor_Median_Name" xml:space="preserve">
<value>中值滤波器</value>
</data>
<data name="FilterProcessor_Median_Desc" xml:space="preserve">
<value>有效去除椒盐噪声</value>
</data>
<data name="FilterProcessor_Mean_Name" xml:space="preserve">
<value>均值滤波器</value>
</data>
<data name="FilterProcessor_Mean_Desc" xml:space="preserve">
<value>简单平均平滑滤波器</value>
</data>
<data name="FilterProcessor_Bilateral_Name" xml:space="preserve">
<value>双边滤波器</value>
</data>
<data name="FilterProcessor_Bilateral_Desc" xml:space="preserve">
<value>边缘保持平滑滤波器</value>
</data>
<data name="FilterProcessor_LowPass_Name" xml:space="preserve">
<value>低通滤波器</value>
</data>
<data name="FilterProcessor_LowPass_Desc" xml:space="preserve">
<value>在频域中去除高频噪声</value>
</data>
<data name="FilterProcessor_HighPass_Name" xml:space="preserve">
<value>高通滤波器</value>
</data>
<data name="FilterProcessor_HighPass_Desc" xml:space="preserve">
<value>频域边缘增强</value>
</data>
<data name="FilterProcessor_BandPass_Name" xml:space="preserve">
<value>带通滤波器</value>
</data>
<data name="FilterProcessor_BandPass_Desc" xml:space="preserve">
<value>频率范围</value>
</data>
<data name="MedianFilterProcessor_Name" xml:space="preserve">
<value>中值滤波</value>
</data>
<data name="MedianFilterProcessor_Description" xml:space="preserve">
<value>有效去除椒盐噪声</value>
</data>
<data name="MedianFilterProcessor_KernelSize" xml:space="preserve">
<value>核大小</value>
</data>
<data name="MedianFilterProcessor_KernelSize_Desc" xml:space="preserve">
<value>滤波器核的大小(必须为奇数)</value>
</data>
<data name="MeanFilterProcessor_Name" xml:space="preserve">
<value>均值滤波</value>
</data>
<data name="MeanFilterProcessor_Description" xml:space="preserve">
<value>简单的平均平滑滤波器</value>
</data>
<data name="MeanFilterProcessor_KernelSize" xml:space="preserve">
<value>核大小</value>
</data>
<data name="MeanFilterProcessor_KernelSize_Desc" xml:space="preserve">
<value>滤波器核的大小(必须为奇数)</value>
</data>
<data name="BilateralFilterProcessor_Name" xml:space="preserve">
<value>双边滤波</value>
</data>
<data name="BilateralFilterProcessor_Description" xml:space="preserve">
<value>保持边缘清晰的平滑滤波器</value>
</data>
<data name="BilateralFilterProcessor_Diameter" xml:space="preserve">
<value>直径</value>
</data>
<data name="BilateralFilterProcessor_Diameter_Desc" xml:space="preserve">
<value>每个像素邻域的直径</value>
</data>
<data name="BilateralFilterProcessor_SigmaColor" xml:space="preserve">
<value>颜色空间标准差</value>
</data>
<data name="BilateralFilterProcessor_SigmaColor_Desc" xml:space="preserve">
<value>颜色空间中的滤波器标准差</value>
</data>
<data name="BilateralFilterProcessor_SigmaSpace" xml:space="preserve">
<value>坐标空间标准差</value>
</data>
<data name="BilateralFilterProcessor_SigmaSpace_Desc" xml:space="preserve">
<value>坐标空间中的滤波器标准差</value>
</data>
<data name="LowPassFilterProcessor_Name" xml:space="preserve">
<value>低通滤波</value>
</data>
<data name="LowPassFilterProcessor_Description" xml:space="preserve">
<value>在频域中去除高频噪声</value>
</data>
<data name="LowPassFilterProcessor_CutoffFrequency" xml:space="preserve">
<value>截止频率</value>
</data>
<data name="LowPassFilterProcessor_CutoffFrequency_Desc" xml:space="preserve">
<value>低通滤波器的截止频率</value>
</data>
<data name="HighPassFilterProcessor_Name" xml:space="preserve">
<value>高通滤波</value>
</data>
<data name="HighPassFilterProcessor_Description" xml:space="preserve">
<value>在频域中进行边缘增强</value>
</data>
<data name="HighPassFilterProcessor_CutoffFrequency" xml:space="preserve">
<value>截止频率</value>
</data>
<data name="HighPassFilterProcessor_CutoffFrequency_Desc" xml:space="preserve">
<value>高通滤波器的截止频率</value>
</data>
<data name="GrayscaleProcessor_Name" xml:space="preserve">
<value>灰度转换</value>
</data>
<data name="GrayscaleProcessor_Description" xml:space="preserve">
<value>将图像转换为灰度图</value>
</data>
<data name="GrayscaleProcessor_Method" xml:space="preserve">
<value>转换方法</value>
</data>
<data name="GrayscaleProcessor_Method_Desc" xml:space="preserve">
<value>灰度转换的方法</value>
</data>
<data name="SharpenProcessor_Name" xml:space="preserve">
<value>锐化</value>
</data>
<data name="SharpenProcessor_Description" xml:space="preserve">
<value>增强图像边缘和细节</value>
</data>
<data name="SharpenProcessor_Method" xml:space="preserve">
<value>锐化方法</value>
</data>
<data name="SharpenProcessor_Method_Desc" xml:space="preserve">
<value>选择锐化算法</value>
</data>
<data name="SharpenProcessor_Strength" xml:space="preserve">
<value>锐化强度</value>
</data>
<data name="SharpenProcessor_Strength_Desc" xml:space="preserve">
<value>锐化效果的强度</value>
</data>
<data name="SharpenProcessor_KernelSize" xml:space="preserve">
<value>核大小</value>
</data>
<data name="SharpenProcessor_KernelSize_Desc" xml:space="preserve">
<value>锐化核的大小(奇数)</value>
</data>
<data name="HistogramEqualizationProcessor_Name" xml:space="preserve">
<value>直方图均衡化</value>
</data>
<data name="HistogramEqualizationProcessor_Description" xml:space="preserve">
<value>增强图像对比度</value>
</data>
<data name="HistogramEqualizationProcessor_Method" xml:space="preserve">
<value>均衡化方法</value>
</data>
<data name="HistogramEqualizationProcessor_Method_Desc" xml:space="preserve">
<value>选择直方图均衡化算法</value>
</data>
<data name="HistogramEqualizationProcessor_ClipLimit" xml:space="preserve">
<value>裁剪限制</value>
</data>
<data name="HistogramEqualizationProcessor_ClipLimit_Desc" xml:space="preserve">
<value>CLAHE的对比度限制阈值</value>
</data>
<data name="HistogramEqualizationProcessor_TileSize" xml:space="preserve">
<value>分块大小</value>
</data>
<data name="HistogramEqualizationProcessor_TileSize_Desc" xml:space="preserve">
<value>CLAHE的分块大小</value>
</data>
<data name="SobelEdgeProcessor_Name" xml:space="preserve">
<value>Sobel边缘检测</value>
</data>
<data name="SobelEdgeProcessor_Description" xml:space="preserve">
<value>使用Sobel算子检测图像边缘</value>
</data>
<data name="SobelEdgeProcessor_Direction" xml:space="preserve">
<value>检测方向</value>
</data>
<data name="SobelEdgeProcessor_Direction_Desc" xml:space="preserve">
<value>选择边缘检测方向</value>
</data>
<data name="SobelEdgeProcessor_KernelSize" xml:space="preserve">
<value>核大小</value>
</data>
<data name="SobelEdgeProcessor_KernelSize_Desc" xml:space="preserve">
<value>Sobel算子的核大小(奇数)</value>
</data>
<data name="SobelEdgeProcessor_Scale" xml:space="preserve">
<value>缩放系数</value>
</data>
<data name="SobelEdgeProcessor_Scale_Desc" xml:space="preserve">
<value>边缘强度的缩放系数</value>
</data>
<data name="KirschEdgeProcessor_Name" xml:space="preserve">
<value>Kirsch边缘检测</value>
</data>
<data name="KirschEdgeProcessor_Description" xml:space="preserve">
<value>使用Kirsch算子检测图像边缘</value>
</data>
<data name="KirschEdgeProcessor_Threshold" xml:space="preserve">
<value>阈值</value>
</data>
<data name="KirschEdgeProcessor_Threshold_Desc" xml:space="preserve">
<value>边缘检测阈值</value>
</data>
<data name="KirschEdgeProcessor_Scale" xml:space="preserve">
<value>缩放系数</value>
</data>
<data name="KirschEdgeProcessor_Scale_Desc" xml:space="preserve">
<value>边缘强度的缩放系数</value>
</data>
<data name="HorizontalEdgeProcessor_Name" xml:space="preserve">
<value>水平边缘检测</value>
</data>
<data name="HorizontalEdgeProcessor_Description" xml:space="preserve">
<value>专门检测水平方向的边缘</value>
</data>
<data name="HorizontalEdgeProcessor_Method" xml:space="preserve">
<value>检测方法</value>
</data>
<data name="HorizontalEdgeProcessor_Method_Desc" xml:space="preserve">
<value>选择水平边缘检测算法</value>
</data>
<data name="HorizontalEdgeProcessor_Sensitivity" xml:space="preserve">
<value>灵敏度</value>
</data>
<data name="HorizontalEdgeProcessor_Sensitivity_Desc" xml:space="preserve">
<value>边缘检测的灵敏度</value>
</data>
<data name="HorizontalEdgeProcessor_Threshold" xml:space="preserve">
<value>阈值</value>
</data>
<data name="HorizontalEdgeProcessor_Threshold_Desc" xml:space="preserve">
<value>边缘检测阈值</value>
</data>
<data name="RetinexProcessor_Name" xml:space="preserve">
<value>Retinex阴影校正</value>
</data>
<data name="RetinexProcessor_Description" xml:space="preserve">
<value>基于Retinex的多尺度阴影校正和光照均衡</value>
</data>
<data name="RetinexProcessor_Method" xml:space="preserve">
<value>处理方法</value>
</data>
<data name="RetinexProcessor_Method_Desc" xml:space="preserve">
<value>选择Retinex算法类型</value>
</data>
<data name="RetinexProcessor_Sigma1" xml:space="preserve">
<value>尺度1 (小)</value>
</data>
<data name="RetinexProcessor_Sigma1_Desc" xml:space="preserve">
<value>小尺度高斯核标准差,用于细节增强</value>
</data>
<data name="RetinexProcessor_Sigma2" xml:space="preserve">
<value>尺度2 (中)</value>
</data>
<data name="RetinexProcessor_Sigma2_Desc" xml:space="preserve">
<value>中尺度高斯核标准差,用于局部光照校正</value>
</data>
<data name="RetinexProcessor_Sigma3" xml:space="preserve">
<value>尺度3 (大)</value>
</data>
<data name="RetinexProcessor_Sigma3_Desc" xml:space="preserve">
<value>大尺度高斯核标准差,用于全局光照校正</value>
</data>
<data name="RetinexProcessor_Gain" xml:space="preserve">
<value>增益</value>
</data>
<data name="RetinexProcessor_Gain_Desc" xml:space="preserve">
<value>输出增益系数</value>
</data>
<data name="RetinexProcessor_Offset" xml:space="preserve">
<value>偏移</value>
</data>
<data name="RetinexProcessor_Offset_Desc" xml:space="preserve">
<value>输出偏移量</value>
</data>
<data name="HDREnhancementProcessor_Name" xml:space="preserve">
<value>高动态范围增强</value>
</data>
<data name="HDREnhancementProcessor_Description" xml:space="preserve">
<value>基于色调映射的高动态范围图像增强</value>
</data>
<data name="HDREnhancementProcessor_Method" xml:space="preserve">
<value>色调映射方法</value>
</data>
<data name="HDREnhancementProcessor_Method_Desc" xml:space="preserve">
<value>选择HDR色调映射算法:局部色调映射、自适应对数映射、Drago映射、双边滤波色调映射</value>
</data>
<data name="HDREnhancementProcessor_Gamma" xml:space="preserve">
<value>Gamma值</value>
</data>
<data name="HDREnhancementProcessor_Gamma_Desc" xml:space="preserve">
<value>Gamma校正值,用于调整输出亮度</value>
</data>
<data name="HDREnhancementProcessor_Saturation" xml:space="preserve">
<value>饱和度</value>
</data>
<data name="HDREnhancementProcessor_Saturation_Desc" xml:space="preserve">
<value>对比度饱和系数,用于局部色调映射方法</value>
</data>
<data name="HDREnhancementProcessor_DetailBoost" xml:space="preserve">
<value>细节增强</value>
</data>
<data name="HDREnhancementProcessor_DetailBoost_Desc" xml:space="preserve">
<value>细节增强系数,值越大细节越丰富</value>
</data>
<data name="HDREnhancementProcessor_SigmaSpace" xml:space="preserve">
<value>空间标准差</value>
</data>
<data name="HDREnhancementProcessor_SigmaSpace_Desc" xml:space="preserve">
<value>基础层提取的空间标准差,控制平滑范围</value>
</data>
<data name="HDREnhancementProcessor_SigmaColor" xml:space="preserve">
<value>颜色标准差</value>
</data>
<data name="HDREnhancementProcessor_SigmaColor_Desc" xml:space="preserve">
<value>双边滤波色调映射的颜色标准差,控制保边效果</value>
</data>
<data name="HDREnhancementProcessor_Bias" xml:space="preserve">
<value>偏置</value>
</data>
<data name="HDREnhancementProcessor_Bias_Desc" xml:space="preserve">
<value>自适应对数映射和Drago映射的偏置参数,控制暗部/亮部平衡</value>
</data>
<data name="MirrorProcessor_Name" xml:space="preserve">
<value>镜像</value>
</data>
<data name="MirrorProcessor_Description" xml:space="preserve">
<value>对图像进行水平、垂直或对角镜像翻转</value>
</data>
<data name="MirrorProcessor_Direction" xml:space="preserve">
<value>翻转方向</value>
</data>
<data name="MirrorProcessor_Direction_Desc" xml:space="preserve">
<value>翻转方向:Horizontal(水平/左右翻转)、Vertical(垂直/上下翻转)、Both(对角翻转/旋转180°)</value>
</data>
<data name="RotateProcessor_Name" xml:space="preserve">
<value>图像旋转</value>
</data>
<data name="RotateProcessor_Description" xml:space="preserve">
<value>按任意角度旋转图像,支持画布自适应扩展</value>
</data>
<data name="RotateProcessor_Angle" xml:space="preserve">
<value>旋转角度</value>
</data>
<data name="RotateProcessor_Angle_Desc" xml:space="preserve">
<value>旋转角度(度),正值为逆时针旋转</value>
</data>
<data name="RotateProcessor_ExpandCanvas" xml:space="preserve">
<value>扩展画布</value>
</data>
<data name="RotateProcessor_ExpandCanvas_Desc" xml:space="preserve">
<value>扩展画布以容纳完整旋转图像,否则裁剪为原始尺寸</value>
</data>
<data name="RotateProcessor_BackgroundValue" xml:space="preserve">
<value>背景灰度</value>
</data>
<data name="RotateProcessor_BackgroundValue_Desc" xml:space="preserve">
<value>旋转后空白区域的填充灰度值(0-255)</value>
</data>
<data name="RotateProcessor_Interpolation" xml:space="preserve">
<value>插值方法</value>
</data>
<data name="RotateProcessor_Interpolation_Desc" xml:space="preserve">
<value>插值方法:Nearest(最近邻/快速)、Bilinear(双线性/平滑)、Bicubic(双三次/高质量)</value>
</data>
<data name="PseudoColorProcessor_Name" xml:space="preserve">
<value>伪色彩渲染</value>
</data>
<data name="PseudoColorProcessor_Description" xml:space="preserve">
<value>将灰度图像通过色彩映射表渲染为彩色图像</value>
</data>
<data name="PseudoColorProcessor_ColorMap" xml:space="preserve">
<value>色彩映射表</value>
</data>
<data name="PseudoColorProcessor_ColorMap_Desc" xml:space="preserve">
<value>选择用于渲染的色彩映射表</value>
</data>
<data name="PseudoColorProcessor_MinValue" xml:space="preserve">
<value>最小灰度值</value>
</data>
<data name="PseudoColorProcessor_MinValue_Desc" xml:space="preserve">
<value>低于此值的灰度将被裁剪到最小色彩</value>
</data>
<data name="PseudoColorProcessor_MaxValue" xml:space="preserve">
<value>最大灰度值</value>
</data>
<data name="PseudoColorProcessor_MaxValue_Desc" xml:space="preserve">
<value>高于此值的灰度将被裁剪到最大色彩</value>
</data>
<data name="PseudoColorProcessor_InvertMap" xml:space="preserve">
<value>反转色彩映射</value>
</data>
<data name="PseudoColorProcessor_InvertMap_Desc" xml:space="preserve">
<value>反转色彩映射方向</value>
</data>
<!-- FilmEffectProcessor -->
<data name="FilmEffectProcessor_Name" xml:space="preserve">
<value>电子胶片效果</value>
</data>
<data name="FilmEffectProcessor_Description" xml:space="preserve">
<value>模拟传统X射线胶片显示效果,支持窗宽窗位和特性曲线调整</value>
</data>
<data name="FilmEffectProcessor_WindowCenter" xml:space="preserve">
<value>窗位</value>
</data>
<data name="FilmEffectProcessor_WindowCenter_Desc" xml:space="preserve">
<value>显示窗口的中心灰度值(Window Level</value>
</data>
<data name="FilmEffectProcessor_WindowWidth" xml:space="preserve">
<value>窗宽</value>
</data>
<data name="FilmEffectProcessor_WindowWidth_Desc" xml:space="preserve">
<value>显示窗口的宽度,控制可见灰度范围</value>
</data>
<data name="FilmEffectProcessor_Invert" xml:space="preserve">
<value>反转(负片)</value>
</data>
<data name="FilmEffectProcessor_Invert_Desc" xml:space="preserve">
<value>反转图像为负片效果</value>
</data>
<data name="FilmEffectProcessor_Curve" xml:space="preserve">
<value>特性曲线</value>
</data>
<data name="FilmEffectProcessor_Curve_Desc" xml:space="preserve">
<value>胶片特性曲线:Linear(线性)、SigmoidS曲线)、Logarithmic(对数)、Exponential(指数)</value>
</data>
<data name="FilmEffectProcessor_CurveStrength" xml:space="preserve">
<value>曲线强度</value>
</data>
<data name="FilmEffectProcessor_CurveStrength_Desc" xml:space="preserve">
<value>特性曲线的效果强度</value>
</data>
<data name="FilmEffectProcessor_EdgeEnhance" xml:space="preserve">
<value>边缘增强</value>
</data>
<data name="FilmEffectProcessor_EdgeEnhance_Desc" xml:space="preserve">
<value>边缘增强强度,模拟胶片锐化效果,0为关闭</value>
</data>
<!-- SubPixelZoomProcessor -->
<data name="SubPixelZoomProcessor_Name" xml:space="preserve">
<value>亚像素放大</value>
</data>
<data name="SubPixelZoomProcessor_Description" xml:space="preserve">
<value>通过高质量插值实现图像的亚像素级放大</value>
</data>
<data name="SubPixelZoomProcessor_ScaleFactor" xml:space="preserve">
<value>放大倍率</value>
</data>
<data name="SubPixelZoomProcessor_ScaleFactor_Desc" xml:space="preserve">
<value>放大倍率,支持小数(如1.5、2.3</value>
</data>
<data name="SubPixelZoomProcessor_Interpolation" xml:space="preserve">
<value>插值方法</value>
</data>
<data name="SubPixelZoomProcessor_Interpolation_Desc" xml:space="preserve">
<value>插值方法:Nearest(最近邻)、Bilinear(双线性)、Bicubic(双三次)、Lanczos(最高质量)</value>
</data>
<data name="SubPixelZoomProcessor_SharpenAfter" xml:space="preserve">
<value>放大后锐化</value>
</data>
<data name="SubPixelZoomProcessor_SharpenAfter_Desc" xml:space="preserve">
<value>放大后进行锐化补偿,抵消插值产生的模糊</value>
</data>
<data name="SubPixelZoomProcessor_SharpenStrength" xml:space="preserve">
<value>锐化强度</value>
</data>
<data name="SubPixelZoomProcessor_SharpenStrength_Desc" xml:space="preserve">
<value>放大后锐化的强度</value>
</data>
<!-- SuperResolutionProcessor -->
<data name="SuperResolutionProcessor_Name" xml:space="preserve">
<value>超分辨率重建 (AI)</value>
</data>
<data name="SuperResolutionProcessor_Description" xml:space="preserve">
<value>基于深度学习的超分辨率重建,使用EDSR/FSRCNN模型</value>
</data>
<data name="SuperResolutionProcessor_Model" xml:space="preserve">
<value>模型</value>
</data>
<data name="SuperResolutionProcessor_Model_Desc" xml:space="preserve">
<value>超分辨率模型:EDSR(高质量/较慢)或 FSRCNN(快速/轻量)</value>
</data>
<data name="SuperResolutionProcessor_Scale" xml:space="preserve">
<value>放大倍率</value>
</data>
<data name="SuperResolutionProcessor_Scale_Desc" xml:space="preserve">
<value>放大倍率:2x、3x 或 4x</value>
</data>
<!-- ColorLayerProcessor -->
<data name="ColorLayerProcessor_Name" xml:space="preserve">
<value>色彩分层</value>
</data>
<data name="ColorLayerProcessor_Description" xml:space="preserve">
<value>将灰度图像按亮度区间分为多个层级</value>
</data>
<data name="ColorLayerProcessor_Layers" xml:space="preserve">
<value>分层数</value>
</data>
<data name="ColorLayerProcessor_Layers_Desc" xml:space="preserve">
<value>灰度分层数量(2-16</value>
</data>
<data name="ColorLayerProcessor_Method" xml:space="preserve">
<value>分层方法</value>
</data>
<data name="ColorLayerProcessor_Method_Desc" xml:space="preserve">
<value>分层方法:Uniform(均匀等分)或 Otsu(自适应)</value>
</data>
<data name="ColorLayerProcessor_OutputMode" xml:space="preserve">
<value>输出模式</value>
</data>
<data name="ColorLayerProcessor_OutputMode_Desc" xml:space="preserve">
<value>输出映射:EqualSpaced(等间距灰度)或 MidValue(区间中值)</value>
</data>
<data name="ColorLayerProcessor_TargetLayer" xml:space="preserve">
<value>目标层</value>
</data>
<data name="ColorLayerProcessor_TargetLayer_Desc" xml:space="preserve">
<value>0 = 显示全部层,1~N = 只显示指定层(白色),其余为黑色</value>
</data>
<!-- HierarchicalEnhancementProcessor -->
<data name="HierarchicalEnhancementProcessor_Name" xml:space="preserve">
<value>层次增强</value>
</data>
<data name="HierarchicalEnhancementProcessor_Description" xml:space="preserve">
<value>基于拉普拉斯金字塔分解,对不同尺度的图像细节独立增强</value>
</data>
<data name="HierarchicalEnhancementProcessor_Levels" xml:space="preserve">
<value>金字塔层数</value>
</data>
<data name="HierarchicalEnhancementProcessor_Levels_Desc" xml:space="preserve">
<value>金字塔分解层数(2-8),层数越多分解越精细</value>
</data>
<data name="HierarchicalEnhancementProcessor_FineGain" xml:space="preserve">
<value>精细细节增益</value>
</data>
<data name="HierarchicalEnhancementProcessor_FineGain_Desc" xml:space="preserve">
<value>最精细层(边缘、纹理)的增益。1.0=原始,&gt;1=增强,&lt;1=抑制</value>
</data>
<data name="HierarchicalEnhancementProcessor_MediumGain" xml:space="preserve">
<value>中等细节增益</value>
</data>
<data name="HierarchicalEnhancementProcessor_MediumGain_Desc" xml:space="preserve">
<value>中等尺度细节的增益。1.0=原始,&gt;1=增强,&lt;1=抑制</value>
</data>
<data name="HierarchicalEnhancementProcessor_CoarseGain" xml:space="preserve">
<value>粗糙细节增益</value>
</data>
<data name="HierarchicalEnhancementProcessor_CoarseGain_Desc" xml:space="preserve">
<value>粗尺度细节(大结构)的增益。1.0=原始,&gt;1=增强,&lt;1=抑制</value>
</data>
<data name="HierarchicalEnhancementProcessor_BaseGain" xml:space="preserve">
<value>基础层增益</value>
</data>
<data name="HierarchicalEnhancementProcessor_BaseGain_Desc" xml:space="preserve">
<value>基础层(最低频)增益,控制整体亮度</value>
</data>
<data name="HierarchicalEnhancementProcessor_ClipLimit" xml:space="preserve">
<value>裁剪限制</value>
</data>
<data name="HierarchicalEnhancementProcessor_ClipLimit_Desc" xml:space="preserve">
<value>限制细节幅度,防止过增强产生伪影。0=不限制</value>
</data>
<!-- HistogramOverlayProcessor -->
<data name="HistogramOverlayProcessor_Name" xml:space="preserve">
<value>直方图叠加</value>
</data>
<data name="HistogramOverlayProcessor_Description" xml:space="preserve">
<value>计算灰度直方图,以蓝色柱状图叠加到图像左上角,并输出统计表格</value>
</data>
<!-- EllipseDetectionProcessor -->
<data name="EllipseDetectionProcessor_Name" xml:space="preserve">
<value>椭圆检测</value>
</data>
<data name="EllipseDetectionProcessor_Description" xml:space="preserve">
<value>基于轮廓分析和椭圆拟合检测图像中的椭圆</value>
</data>
<data name="EllipseDetectionProcessor_MinThreshold" xml:space="preserve">
<value>最小阈值</value>
</data>
<data name="EllipseDetectionProcessor_MinThreshold_Desc" xml:space="preserve">
<value>双阈值分割的最小阈值(0-255</value>
</data>
<data name="EllipseDetectionProcessor_MaxThreshold" xml:space="preserve">
<value>最大阈值</value>
</data>
<data name="EllipseDetectionProcessor_MaxThreshold_Desc" xml:space="preserve">
<value>双阈值分割的最大阈值(0-255</value>
</data>
<data name="EllipseDetectionProcessor_UseOtsu" xml:space="preserve">
<value>使用Otsu自动阈值</value>
</data>
<data name="EllipseDetectionProcessor_UseOtsu_Desc" xml:space="preserve">
<value>启用后将自动计算最佳阈值</value>
</data>
<data name="EllipseDetectionProcessor_MinContourPoints" xml:space="preserve">
<value>最小轮廓点数</value>
</data>
<data name="EllipseDetectionProcessor_MinContourPoints_Desc" xml:space="preserve">
<value>椭圆拟合所需的最小轮廓点数</value>
</data>
<data name="EllipseDetectionProcessor_MinArea" xml:space="preserve">
<value>最小面积</value>
</data>
<data name="EllipseDetectionProcessor_MinArea_Desc" xml:space="preserve">
<value>过滤小于此面积的椭圆</value>
</data>
<data name="EllipseDetectionProcessor_MaxArea" xml:space="preserve">
<value>最大面积</value>
</data>
<data name="EllipseDetectionProcessor_MaxArea_Desc" xml:space="preserve">
<value>过滤大于此面积的椭圆</value>
</data>
<data name="EllipseDetectionProcessor_MaxEccentricity" xml:space="preserve">
<value>最大离心率</value>
</data>
<data name="EllipseDetectionProcessor_MaxEccentricity_Desc" xml:space="preserve">
<value>最大离心率(0=圆,接近1=扁椭圆)</value>
</data>
<data name="EllipseDetectionProcessor_MaxFitError" xml:space="preserve">
<value>最大拟合误差</value>
</data>
<data name="EllipseDetectionProcessor_MaxFitError_Desc" xml:space="preserve">
<value>最大拟合误差(像素)</value>
</data>
<data name="EllipseDetectionProcessor_Thickness" xml:space="preserve">
<value>线条粗细</value>
</data>
<data name="EllipseDetectionProcessor_Thickness_Desc" xml:space="preserve">
<value>绘制椭圆的线条粗细</value>
</data>
<!-- LineMeasurementProcessor -->
<data name="LineMeasurementProcessor_Name" xml:space="preserve">
<value>直线测量</value>
</data>
<data name="LineMeasurementProcessor_Description" xml:space="preserve">
<value>测量图像中两点之间的距离</value>
</data>
<data name="LineMeasurementProcessor_X1" xml:space="preserve">
<value>点1 X坐标</value>
</data>
<data name="LineMeasurementProcessor_X1_Desc" xml:space="preserve">
<value>第一个点的X坐标(像素)</value>
</data>
<data name="LineMeasurementProcessor_Y1" xml:space="preserve">
<value>点1 Y坐标</value>
</data>
<data name="LineMeasurementProcessor_Y1_Desc" xml:space="preserve">
<value>第一个点的Y坐标(像素)</value>
</data>
<data name="LineMeasurementProcessor_X2" xml:space="preserve">
<value>点2 X坐标</value>
</data>
<data name="LineMeasurementProcessor_X2_Desc" xml:space="preserve">
<value>第二个点的X坐标(像素)</value>
</data>
<data name="LineMeasurementProcessor_Y2" xml:space="preserve">
<value>点2 Y坐标</value>
</data>
<data name="LineMeasurementProcessor_Y2_Desc" xml:space="preserve">
<value>第二个点的Y坐标(像素)</value>
</data>
<data name="LineMeasurementProcessor_PixelSize" xml:space="preserve">
<value>像素尺寸</value>
</data>
<data name="LineMeasurementProcessor_PixelSize_Desc" xml:space="preserve">
<value>每像素对应的物理尺寸,用于标定测量</value>
</data>
<data name="LineMeasurementProcessor_Unit" xml:space="preserve">
<value>单位</value>
</data>
<data name="LineMeasurementProcessor_Unit_Desc" xml:space="preserve">
<value>测量单位:px(像素)、mm、μm、cm</value>
</data>
<data name="LineMeasurementProcessor_Thickness" xml:space="preserve">
<value>线条粗细</value>
</data>
<data name="LineMeasurementProcessor_Thickness_Desc" xml:space="preserve">
<value>测量线的线条粗细</value>
</data>
<data name="LineMeasurementProcessor_ShowLabel" xml:space="preserve">
<value>显示标注</value>
</data>
<data name="LineMeasurementProcessor_ShowLabel_Desc" xml:space="preserve">
<value>在测量线上显示距离标注</value>
</data>
<!-- FillRateProcessor -->
<data name="FillRateProcessor_Name" xml:space="preserve">
<value>通孔填锡率</value>
</data>
<data name="FillRateProcessor_Description" xml:space="preserve">
<value>基于四椭圆倾斜投影几何法测量通孔填锡率</value>
</data>
<data name="FillRateProcessor_THTLimit" xml:space="preserve">
<value>THT 限值 (%)</value>
</data>
<data name="FillRateProcessor_THTLimit_Desc" xml:space="preserve">
<value>最低合格填锡率(默认75%,参考IPC-610)</value>
</data>
<data name="FillRateProcessor_Thickness" xml:space="preserve">
<value>线条粗细</value>
</data>
<data name="FillRateProcessor_Thickness_Desc" xml:space="preserve">
<value>ROI椭圆线条粗细</value>
</data>
<!-- BgaVoidRateProcessor -->
<data name="BgaVoidRateProcessor_Name" xml:space="preserve">
<value>BGA空洞率检测(自动)</value>
</data>
<data name="BgaVoidRateProcessor_Description" xml:space="preserve">
<value>自动检测BGA焊球并测量空洞率(两步法:定位焊球 → 检测气泡)</value>
</data>
<data name="BgaVoidRateProcessor_BgaMinArea" xml:space="preserve">
<value>焊球最小面积</value>
</data>
<data name="BgaVoidRateProcessor_BgaMinArea_Desc" xml:space="preserve">
<value>识别为BGA焊球的最小像素面积</value>
</data>
<data name="BgaVoidRateProcessor_RoiMode" xml:space="preserve">
<value>ROI模式</value>
</data>
<data name="BgaVoidRateProcessor_RoiMode_Desc" xml:space="preserve">
<value>None: 全图检测; Polygon: 多边形ROI(需先绘制ROI</value>
</data>
<data name="BgaVoidRateProcessor_BgaMaxArea" xml:space="preserve">
<value>焊球最大面积</value>
</data>
<data name="BgaVoidRateProcessor_BgaMaxArea_Desc" xml:space="preserve">
<value>识别为BGA焊球的最大像素面积</value>
</data>
<data name="BgaVoidRateProcessor_BgaBlurSize" xml:space="preserve">
<value>模糊核大小</value>
</data>
<data name="BgaVoidRateProcessor_BgaBlurSize_Desc" xml:space="preserve">
<value>BGA检测时的高斯模糊核大小(奇数)</value>
</data>
<data name="BgaVoidRateProcessor_BgaCircularity" xml:space="preserve">
<value>最小圆度</value>
</data>
<data name="BgaVoidRateProcessor_BgaCircularity_Desc" xml:space="preserve">
<value>过滤非圆形轮廓的最小圆度(0~1,1=完美圆形)</value>
</data>
<data name="BgaVoidRateProcessor_VoidLimit" xml:space="preserve">
<value>气泡率限值 (%)</value>
</data>
<data name="BgaVoidRateProcessor_VoidLimit_Desc" xml:space="preserve">
<value>最大允许气泡率(默认25%,参考IPC-7095</value>
</data>
<data name="BgaVoidRateProcessor_MinThreshold" xml:space="preserve">
<value>最小阈值</value>
</data>
<data name="BgaVoidRateProcessor_MinThreshold_Desc" xml:space="preserve">
<value>气泡检测的最小灰度值(灰度在[最小,最大]范围内判为气泡)</value>
</data>
<data name="BgaVoidRateProcessor_MaxThreshold" xml:space="preserve">
<value>最大阈值</value>
</data>
<data name="BgaVoidRateProcessor_MaxThreshold_Desc" xml:space="preserve">
<value>气泡检测的最大灰度值</value>
</data>
<data name="BgaVoidRateProcessor_MinVoidArea" xml:space="preserve">
<value>最小气泡面积</value>
</data>
<data name="BgaVoidRateProcessor_MinVoidArea_Desc" xml:space="preserve">
<value>小于此面积的区域视为噪点忽略(像素)</value>
</data>
<data name="BgaVoidRateProcessor_Thickness" xml:space="preserve">
<value>线条粗细</value>
</data>
<data name="BgaVoidRateProcessor_Thickness_Desc" xml:space="preserve">
<value>轮廓线条粗细</value>
</data>
<!-- PointToLineProcessor -->
<data name="PointToLineProcessor_Name" xml:space="preserve">
<value>点到直线距离</value>
</data>
<data name="PointToLineProcessor_Description" xml:space="preserve">
<value>测量点到直线的垂直距离</value>
</data>
<data name="PointToLineProcessor_PixelSize" xml:space="preserve">
<value>像素尺寸</value>
</data>
<data name="PointToLineProcessor_PixelSize_Desc" xml:space="preserve">
<value>每像素对应的物理尺寸</value>
</data>
<data name="PointToLineProcessor_Unit" xml:space="preserve">
<value>单位</value>
</data>
<data name="PointToLineProcessor_Unit_Desc" xml:space="preserve">
<value>测量单位:px / mm / μm / cm</value>
</data>
<data name="PointToLineProcessor_Thickness" xml:space="preserve">
<value>线条粗细</value>
</data>
<data name="PointToLineProcessor_Thickness_Desc" xml:space="preserve">
<value>绘制线条粗细</value>
</data>
<!-- AngleMeasurementProcessor -->
<data name="AngleMeasurementProcessor_Name" xml:space="preserve">
<value>角度测量</value>
</data>
<data name="AngleMeasurementProcessor_Description" xml:space="preserve">
<value>测量共端点两条射线的夹角</value>
</data>
<!-- VoidMeasurementProcessor -->
<data name="VoidMeasurementProcessor_Name" xml:space="preserve">
<value>空隙测量</value>
</data>
<data name="VoidMeasurementProcessor_Description" xml:space="preserve">
<value>检测ROI内气泡并计算空隙率</value>
</data>
<data name="VoidMeasurementProcessor_MinThreshold" xml:space="preserve">
<value>最小阈值</value>
</data>
<data name="VoidMeasurementProcessor_MinThreshold_Desc" xml:space="preserve">
<value>气泡灰度下限</value>
</data>
<data name="VoidMeasurementProcessor_MaxThreshold" xml:space="preserve">
<value>最大阈值</value>
</data>
<data name="VoidMeasurementProcessor_MaxThreshold_Desc" xml:space="preserve">
<value>气泡灰度上限</value>
</data>
<data name="VoidMeasurementProcessor_MinVoidArea" xml:space="preserve">
<value>最小气泡面积</value>
</data>
<data name="VoidMeasurementProcessor_MinVoidArea_Desc" xml:space="preserve">
<value>小于此面积的气泡将被忽略(像素)</value>
</data>
<data name="VoidMeasurementProcessor_MergeRadius" xml:space="preserve">
<value>合并半径</value>
</data>
<data name="VoidMeasurementProcessor_MergeRadius_Desc" xml:space="preserve">
<value>相邻气泡合并的膨胀半径(0=不合并)</value>
</data>
<data name="VoidMeasurementProcessor_BlurSize" xml:space="preserve">
<value>模糊核大小</value>
</data>
<data name="VoidMeasurementProcessor_BlurSize_Desc" xml:space="preserve">
<value>高斯模糊核大小(奇数)</value>
</data>
<data name="VoidMeasurementProcessor_VoidLimit" xml:space="preserve">
<value>空隙率限值(%)</value>
</data>
<data name="VoidMeasurementProcessor_VoidLimit_Desc" xml:space="preserve">
<value>超过此限值判定为FAIL</value>
</data>
<data name="EmbossProcessor_Name" xml:space="preserve">
<value>浮雕伪3D</value>
</data>
<data name="EmbossProcessor_Description" xml:space="preserve">
<value>浮雕效果模拟3D浮雕,增强表面结构的可视化</value>
</data>
<data name="EmbossProcessor_Direction" xml:space="preserve">
<value>光照方向</value>
</data>
<data name="EmbossProcessor_Direction_Desc" xml:space="preserve">
<value>模拟光源方向</value>
</data>
<data name="EmbossProcessor_Strength" xml:space="preserve">
<value>浮雕深度</value>
</data>
<data name="EmbossProcessor_Strength_Desc" xml:space="preserve">
<value>浮雕效果的深度(越大浮雕感越强)</value>
</data>
<data name="EmbossProcessor_BlendRatio" xml:space="preserve">
<value>原图混合比</value>
</data>
<data name="EmbossProcessor_BlendRatio_Desc" xml:space="preserve">
<value>与原图的混合比例(0=纯浮雕,1=纯原图)</value>
</data>
<data name="EmbossProcessor_GrayOffset" xml:space="preserve">
<value>灰度偏移</value>
</data>
<data name="EmbossProcessor_GrayOffset_Desc" xml:space="preserve">
<value>平坦区域的灰度基底(128=中灰)</value>
</data>
</root>