发明名称 Signal processing device and imaging device
摘要 According to one embodiment, a signal processing device includes a high spatial frequency range component evaluation unit configured to evaluate a high spatial frequency range component of each of basic colors for each of divided regions for an image picked up by an image pickup device, the divided regions being obtained by dividing an imaging surface of the image pickup device into a plurality of regions, a subject distance estimation unit configured to estimate a subject distance for each of the divided regions on the basis of the high spatial frequency range component, a filter coefficient generating unit configured to generate a filter coefficient for each of the divided regions on the basis of the subject distance, and a filter operation unit configured to perform a filter operation on the high spatial frequency range component by use of the filter coefficient.
申请公布号 US8804025(B2) 申请公布日期 2014.08.12
申请号 US201113032967 申请日期 2011.02.23
申请人 Kabushiki Kaisha Toshiba 发明人 Yoshioka You;Kaneshige Toshihiko
分类号 H04N5/232;H04N3/14;H04N9/73 主分类号 H04N5/232
代理机构 Oblon, Spivak, McClelland, Maier & Neustadt, L.L.P. 代理人 Oblon, Spivak, McClelland, Maier & Neustadt, L.L.P.
主权项 1. A signal processing device comprising: a high spatial frequency range component evaluation unit configured to evaluate a high spatial frequency range component of each of basic colors for each of divided regions for an image picked up by an image pickup device, the divided regions being obtained by dividing an imaging surface of the image pickup device into a plurality of regions; a subject distance estimation unit configured to estimate a subject distance for each of the divided regions on the basis of the high spatial frequency range component evaluated by the high spatial frequency range component evaluation unit; a filter coefficient generating unit configured to generate a filter coefficient for each of the divided regions on the basis of the subject distance estimated by the subject distance estimation unit; and a filter operation unit configured to perform a filter operation on the high spatial frequency range component by use of the filter coefficient generated by the filter coefficient generating unit; wherein the filter coefficient generating unit is configured to generate the same filter coefficient for adjacent divided regions when a luminance difference, a hue difference, and a chroma difference between the adjacent divided regions are all within respective predetermined ranges.
地址 Tokyo JP