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    • 4. 发明申请
    • IMAGE DISPLAY DEVICE
    • 图像显示设备
    • US20120200618A1
    • 2012-08-09
    • US13502690
    • 2011-07-20
    • Ichiro NasuSakiko NasuYasuhiro BanHiroyoshi Nomura
    • Ichiro NasuSakiko NasuYasuhiro BanHiroyoshi Nomura
    • G09G5/02G09G5/10
    • G09G3/20G06F3/14G09G3/3611G09G5/06G09G2340/08G09G2360/18
    • The present invention provides an image display device capable of, by using a general-purpose image display driver configured to operate based on display data pieces each containing tones corresponding to plural bits, quickly performing bit extension processing to perform tone display corresponding to the display data pieces without providing any special circuit configured to perform the bit extension. A controller (9) is configured to combine the display data pieces output through display data output terminals (P0 to P2) with fixed values output through operation code output terminals (C01 to C05, C07 to C12, and C14 to C17) which are not commonly connected to the display data output terminals, store in a display memory (12) the combined data pieces as tone codes each containing predetermined two or more bits, and set a tone conversion table such that the stored tone codes correspond to tone output values.
    • 本发明提供一种图像显示装置,其能够通过使用通用图像显示驱动器,其被配置为基于显示数据进行操作,每个显示数据包含与多个比特相对应的音调,快速执行比特扩展处理以执行与显示数据相对应的音调显示 而不提供配置为执行位扩展的任何特殊电路。 控制器(9)被配置为将通过显示数据输出端(P0至P2)输出的显示数据与通过不是的操作码输出端(C01至C05,C07至C12和C14至C17)输出的固定值相组合 通常连接到显示数据输出端,将组合的数据作为每个包含预定的两个或更多位的音调代码存储在显示存储器(12)中,并且设置音调转换表,使得所存储的音调代码对应于音调输出值。
    • 6. 发明授权
    • Occupant condition determining apparatus
    • 乘员条件判定装置
    • US5384716A
    • 1995-01-24
    • US125423
    • 1993-09-22
    • Shoichi ArakiHiroyoshi NomuraNoboru WakamiTakeshi Imanaka
    • Shoichi ArakiHiroyoshi NomuraNoboru WakamiTakeshi Imanaka
    • F24F11/02F24F11/00G01B11/00G01S3/784G01S3/786G01V8/10G05D23/19G01K17/20
    • G05D23/1917F24F11/0009F24F11/0012F24F2011/0035
    • The apparatus of the present invention for determining existential conditions of objects on a certain detecting region, includes: a temperature distribution detecting section for obtaining a thermal image including a plurality of elements each having temperature data by detecting the temperature distribution on the detecting region; an element classifying section for classifying the plurality of elements in the thermal image into at least two groups, all elements belonging to one of the groups being in a certain temperature range, the temperature range of the one group being distinct from a temperature range of another one of the groups; a group selecting section for selecting at least one group of a relatively higher temperature range in the thermal image from the at least two groups; an element selecting section for selecting, among elements included in the selected group, elements having temperature data indicative of local temperature peaks in the thermal image; and an output section for outputting the number of the selected elements by the element selecting means as the number of objects on the detecting region.
    • 本发明的用于确定某个检测区域上的物体的存在条件的装置包括:温度分布检测部分,用于通过检测检测区域上的温度分布来获得包括多个元件的热图像,每个元件具有温度数据; 用于将热图像中的多个元素分类为至少两组的元素分类部分,属于一个组中的所有元素处于一定温度范围,一组的温度范围不同于另一组的温度范围 其中一组; 组选择部,用于从所述至少两个组中选择所述热图像中的相对较高温度范围的至少一组; 元素选择部分,用于在所选择的组中包括的元素中选择具有指示热图像中的局部温度峰值的温度数据的元素; 以及输出部,用于通过元素选择装置输出所选择的元素的数量作为检测区域上的对象数。
    • 10. 发明授权
    • Apparatus for automatically generating and adjusting fuzzy reasoning
rules based on reasoning error and method therefor
    • 基于推理误差自动生成和调整模糊推理规则的装置及方法
    • US5440672A
    • 1995-08-08
    • US897359
    • 1992-06-11
    • Shoichi ArakiHiroyoshi NomuraIsao HayashiNoboru Wakami
    • Shoichi ArakiHiroyoshi NomuraIsao HayashiNoboru Wakami
    • G05B13/02G06F9/44G06N7/02
    • G06N7/023G05B13/0275G06N7/026Y10S706/90
    • An apparatus and method for automatically generating and adjusting fuzzy reasoning, rules based on changes in the reasoning error. The apparatus includes a fuzzy reasoning section that performs fuzzy logic based on the fuzzy reasoning rules stored in the a rule memory. The parameters of the fuzzy reasoning rules are adjusted in a parameter tuning section based on the output of the fuzzy reasoning section and predetermined input and output data. A reasoning error calculation section calculates a reasoning error and a change in the reasoning error based on the results from the fuzzy reasoning section and the predetermined input and output data. The reasoning error calculation section also disables the parameter tuning section when the calculated reasoning error is less than a predetermined first threshold value. When the calculated reasoning error is greater than or equal to the predetermined threshold value and the change in the reasoning error is less than a predetermined second threshold value, a rule generation section generates one or more fuzzy reasoning rules and regenerates the fuzzy reasoning rules stored in the rule memory based on the new fuzzy reasoning rule(s) so that optimal fuzzy reasoning rules are obtained.
    • 一种自动生成和调整模糊推理的设备和方法,基于推理误差的变化规则。 该装置包括基于存储在规则存储器中的模糊推理规则执行模糊逻辑的模糊推理部分。 基于模糊推理部分的输出和预定的输入和输出数据,在参数调整部分中调整模糊推理规则的参数。 推理误差计算部分基于来自模糊推理部分的结果和预定的输入和输出数据来计算推理误差和推理误差的变化。 当计算推理误差小于预定的第一阈值时,推理误差计算部分也禁用参数调谐部分。 当计算的推理误差大于或等于预定阈值并且推理误差的变化小于预定的第二阈值时,规则生成部分生成一个或多个模糊推理规则,并重新生成存储在 基于新的模糊推理规则的规则存储器,从而获得最优模糊推理规则。