CN1744647A - 管理图像处理的装置,方法,系统及计算机程序 - Google Patents

管理图像处理的装置,方法,系统及计算机程序 Download PDF

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Publication number
CN1744647A
CN1744647A CNA200510092360XA CN200510092360A CN1744647A CN 1744647 A CN1744647 A CN 1744647A CN A200510092360X A CNA200510092360X A CN A200510092360XA CN 200510092360 A CN200510092360 A CN 200510092360A CN 1744647 A CN1744647 A CN 1744647A
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image processing
image
state
managing
processing apparatus
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CN100466675C (zh
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森本胜士
西田广文
小岛启嗣
铃木俊博
斋藤高志
宫泽利夫
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Ricoh Co Ltd
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Ricoh Co Ltd
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Abstract

本发明涉及管理图像处理的装置,方法,系统,计算机程序及制品。输入一输入图像,取得表示图像处理的图像对象,以便对所述输入图像施以所述图像处理,管理图像对象的状态以及状态变迁。

Description

管理图像处理的装置, 方法,系统及计算机程序
技术领域
本发明涉及管理图像处理的装置,方法,系统,计算机程序及制品。
背景技术
现有的图像处理装置存储许多关于施加于输入图像的图像处理动作的信息,例如处理履历。现有的图像处理装置使用该处理履历,不需要向用户要求任何信息,而能重复图像处理动作之一。
但是,当为了满足用户使用的多样性,实行多种多样的图像处理动作时,处理履历的管理可能带来复杂化。进一步说,以一种用户能理解的方法表示处理履历,非常困难。
发明内容
本发明就是为解决上述先有技术所存在的问题而提出来的,本发明的目的在于提供一种能够与使用的多样性相对应,管理图像处理的装置,方法,系统,计算机程序及制品。
本发明的另一目的在于提供一种能使操作者视觉直感状态变迁的管理图像处理的装置,方法,系统,计算机程序及制品。
本发明的一个实施例包括装置,方法,系统,计算机程序及制品。其能输入一输入图像,取得表示图像处理的图像对象,以便对所述输入图像施以所述图像处理,管理图像对象的状态以及状态变迁。
本发明的另一个实施例包括装置,方法,系统,计算机程序及制品。其能输入一输入图像,取得表示图像处理的图像对象,以便对所述输入图像施以所述图像处理,管理图像对象的状态以及状态变迁,输出所述图像对象的状态,以及状态变迁,作为变迁数据。
按照本发明,生成对输入图像的图像处理作为图像对象,管理该生成的图像对象的状态以及状态履历,根据所管理的图像对象的状态以及状态履历,输出图像对象的状态变迁。这样,每当多样化的利用图像时,不必多重调用各图像处理,能够与使用的多样性相对应,管理图像处理,提高维修保养性。
按照本发明,能使操作者视觉直感状态变迁。
附图说明
在考虑有关附图的同时参考以下详细说明,将容易获得对本发明及其所伴随的诸多优点的更完全的理解。其中:
图1表示按照本发明一实施例的图像处理装置的概略构成方框图;
图2表示按照本发明一实施例的作为图1中所示的图像处理装置的多功能装置的斜视图;
图3表示按照本发明一实施例的图像处理系统说明图;
图4表示按照本发明一实施例的图2中所示的多功能装置的概略构成方框图;
图5表示按照本发明一实施例的图2中所示的多功能装置的操作面板说明图;
图6表示按照本发明一实施例的图像对象说明图;
图7表示按照本发明一实施例的图像对象的典型特征一览表;
图8表示按照本发明一实施例的与一图像对象状态相对应的图7中所示的特征的参数一览表;
图9表示按照本发明一实施例的一图像对象的典型方法一览表;
图10表示按照本发明一实施例的变迁数据说明图;
图11表示按照本发明一实施例的变迁数据说明图;
图12表示按照本发明一实施例的输出变迁数据的处理动作流程图;
图13表示按照本发明一实施例的变迁数据说明图;
图14表示按照本发明一实施例的变迁数据说明图;
图15表示按照本发明一实施例的变迁数据说明图;
图16表示按照本发明一实施例的变迁数据说明图;
图17表示按照本发明一实施例的变迁数据说明图;
图18表示按照本发明一实施例的变迁数据说明图;
图19表示按照本发明一实施例的变迁数据说明图;
图20表示按照本发明一实施例的变迁数据说明图;
具体实施方式
在对附图中所示的优选实施例进行描述的处理中,为了清楚起见,采用具体的术语。但是,该专利说明书公开的内容并不仅限于这样选择的具体术语,并且可以理解的是,每个具体的元件都包括按照类似方式操作的所有技术等同物。
现在参看附图,其中在多个图中,相同的参考数字指示相同或相应的部分。
图1表示按照本发明一实施例的图像处理装置54的概略构成方框图。图像处理装置54包括图像输入装置50,对象生成装置51,状态管理装置52,变迁(transition)数据输出装置53。
图像输入装置50根据用户指示输入图像(以下简记为“输入图像”)。在本发明一实施例中,该输入图像可以通过扫描一打印图像得到。另外,也可以通过网络或接口从任何其它装置接收该输入图像。再有,输入图像可以从图像处理装置54设置的存储装置被读取。接收到输入图像后,图像输入装置50可以使用任何一种公知的图像正规化(imagenormalization)方法使得输入图像规格化。
对象生成装置51得到用于表示图像处理特定型式的图像对象(image object),该图像处理被施于输入图像,以便生成适合特定应用的输出图像。该对象生成装置51可以从存储在图像处理装置54中的许多图像对象得到一个或多个图像对象。另一方面,对象生成装置51可以根据特定用户要求生成一个或多个图像对象。在本实施例中,图像对象可以通过其状态或性态被定义。
状态管理装置52管理图像对象的状态以及状态变迁。当因图像对象的作用(behavior),其属性的参数发生变化时,图像对象的状态发生变化。在一实施例中,状态管理装置52可以得到图像对象的现在状态以及现在状态的变迁,即,表示如何从它的初始状态变化而成现在状态的。在另一实施例中,状态管理装置52可以从许多状态中检索一图像对象的一特定状态,该特定状态存在于所述初始状态和现在状态之间。在又一实施例中,状态管理装置52可以从现在状态进行探索,检索一图像对象的一特定状态,例如它的将来状态。在该实施例中,变迁可以表示两接近状态之间的任何种类的关系,其包括例如连续,并行,同步等。
变迁数据输出装置53以用户能理解的形式输出图像对象的状态以及状态变迁,作为变迁数据。在一实施例中,变迁数据输出装置53可以输出图像对象的现在状态以及现在状态变迁,作为变迁数据。在另一实施例中,变迁数据输出装置53可以输出一能预测的状态,作为变迁数据,该能预测的状态表示存在状态以外的任何可能的状态,其可能存在于初始状态及现在状态之间。在又一实施例中,变迁数据输出装置53可以输出一将来状态,例如表示图像对象最终状态的目标状态,其可以从现在状态导出得到。
在本发明一实施动作中,图像处理装置54输出变迁数据,以使用户明白,输出图像是如何生成的。使用该变迁数据,用户可以对施于输入图像的图像处理进行编辑,以便生成更适合用户希望的输出图像。
在本发明另一实施动作中,图像处理装置54输出变迁数据,以邦助用户预测输出图像。使用该变迁数据,用户可以选择图像处理,以便生成能适合用户的输出图像。
在本发明的实施例中,图像处理装置54可以通过图2所示的多功能装置(multi function peripheral,以下简记为“MFP”)1实现。该MFP1可以看作一台复印机,该复印机在顶表面设有读取装置8,在其侧部设有打印机7,另外还设有操作面板P。该MFP进一步设有一可卸式记录介质控制器9,其从记录介质进行读取,或对记录介质进行写入。通过这种结构,该MFP1可以对输入图像实行各种各样的图像处理动作,例如扫描,复印,传真,打印,存储,发送,编辑等。
MFP1可以与若干装置连接,形成例如图3所示的图像处理系统。在图3中,MFP1通过局域网(local area network,以下简记为“LAN”)2与服务计算机3以及若干委托人计算机4连接。在本实施例中,服务计算机3可以作为万维网服务器或邮件服务器或域名服务器动作。MFP1还可以通过通信控制器5与因特网6连接。通过公用盒交换机(public boxexchange,以下简记为“PBX”)22与公用电话交换网(public switchedtelephone network,以下简记为“PSTN”)21连接。图3所示的图像处理系统允许多用户共有所述MFP1提供的至少一种功能。
在本实施例中,LAN2可以由任何种类的网络实现,这样的网络可以列举例如使用无线电频率或红外波的无线网络,或使用例如光纤的有线网络。通信控制器5包括任何种类的能连接LAN2和因特网6的装置,例如路由器,交换装置,线缆调制解调器,DSL调制解调器等。在本实施例中,通信控制器5也可以设在MFP1中。
参照图4,MFP1主要包括图像处理组件A和信息处理组件B,它们通过集线器(hub)19互相连接。但是,图像处理组件A和信息处理组件B也可以通过任何其它通信装置例如开关或开关集线器连接。
图像处理组件A包括读取装置8,打印装置7,读取控制器12,打印控制器11,图像处理控制器10,硬盘驱动器(hard disk drive,以下简记为“HDD”)17,传真控制器20,网络控制器18,输入控制器24,显示控制器23,操作板接口(I/F)25。
信息处理组件B包括网络控制器33,存储器32,CPU31,输入/输出(I/O)装置控制器42,可卸式介质控制器9,接口43,操作面板通信器39,输入控制器37,显示控制器36,操作面板I/F 38,设有显示器40及输入装置41的操作面板P,HDD控制器35,HDD 34。
读取装置8包括能读取输入图像成为图像数据的任何种类的装置,例如扫描器。
打印装置7包括能在记录介质上形成图像的任何种类的装置,例如图像形成装置。在本实施例中,打印装置7能使用任何一种图像形成方法例如电子照相方法,喷墨方法,染料升华转印方法,银盐照相方法,热记录方法,热转印方法等形成彩色图像。
读取控制器12包括能根据来自图像处理控制器10的指令控制读取装置8动作的任何种类的装置。例如,从图像处理控制器10接收到读取指令,读取控制器12使得读取装置8将光照射在输入图像的表面上,将反射光变换为图像数据,例如若输入图像为彩色,则变换为8位RGB图像数据。
打印控制器11包括能根据来自图像处理控制器10的指令控制打印装置7动作的任何种类的装置。例如,从图像处理控制器10接收到打印指令,打印控制器11使得打印装置7在记录介质上形成调色剂像。
图像处理控制器10包括能控制由图像处理组件A实行的图像处理的任何种类的装置,例如,微机。图像处理控制器10包括CPU13,同步动态随机存储器(synchronous dynamic random access memory,以下简记为“SDRAM”)14,只读存储器(read only memory,以下简记为“ROM”)15,非逸失性随机存储器(non-volatile random access memory,以下简记为“NVRAM”)16,通过总线互相连接。CPU13起着主处理器作用;SDRAM 14存储图像数据,该图像数据包括由读取装置8读取的图像数据,以及由打印装置7打印的图像数据等;ROM 15存储各种程序,例如通过CPU13动作的用于控制图像处理组件A动作的控制程序;NVRAM 16存储各种数据,例如工作履历数据或优选数据。
HDD17与图像处理控制器10连接,其包括能存储大量数据的任何种类的存储装置,所述大量数据包括例如图像数据,工作履历数据,程序数据。
传真控制器20与图像处理控制器10连接,其包括能许可图像处理组件A通过通信网络与其它装置通信的任何种类的通信装置。例如图3所示,传真控制器20通过PBX22连接图像处理组件A和PSTN21。通过这种构成,图像处理组件A可以接收或发送传真数据。
网络控制器18与图像处理控制器10连接,其包括能许可图像处理组件A通过计算机网络与其它装置通信的任何种类的通信装置,例如,通过集线器19,经LAN2或因特网6与其它装置通信。
输入控制器24根据来自图像处理控制器10的指令,生成显示控制信号,并将该信号通过操作面板I/F 25以及通信线缆26送向信息处理组件B。该由操作面板通信器39接收到的显示控制信号进一步通过显示控制器36及操作面板I/F 38传输到操作面板P。操作面板P根据该显示控制信号显示数据。
显示控制器23接收从信息处理组件B通过通信线缆26及操作面板I/F25传输来的输入控制信号。
CPU31包括能控制信息处理组件B动作的任何种类的处理器。存储器32包括任何种类的存储器组件,例如起着作为CPU31的工作存储器功能的RAM,或存储各种数据的ROM。
GDD34存储各种数据,包括图像数据,工作履历数据,优选数据等。HDD34可以存储各种程序,例如操作系统程序,电子邮件控制程序,本发明的图像处理程序等。HDD控制器35控制HDD34的数据输入或数据输出。
网络控制器33包括能许可信息处理组件B通过集线器19经例如LAN2或因特网6那样的计算机网络与其它装置通信的任何种类的通信装置。网络控制器33被优选地指定一与网络控制器18不同的IP地址。
输入控制器37根据用户通过操作面板P输入的指令,生成输入控制信号,并将该信号通过操作面板通信器39及通信线缆26送向图像处理组件A。
由操作面板通信器39接收到的显示控制信号进一步通过显示控制器36及操作面板I/F38传输到操作面板P。操作面板P根据该显示控制信号显示数据。
显示控制器36接收从图像处理组件A通过通信线缆26及操作面板通信器39传输来的显示控制信号。
如上所述,操作面板通信器39交换图像处理组件A和信息处理组件B之间的数据。为了能实现这种交换,如果图像处理组件A和信息处理组件B以不同的格式动作,则操作板通信器39可以实行数据变换。
I/O装置控制器42包括能控制输入装置或输出装置动作的任何种类的装置,所述输入装置或输出装置例如数码照相机通过接口43连接。
接口43包括任何种类的接口,例如USB,IEEE1394,SCSI等。
可卸式介质控制器9包括能控制记录介质M动作的任何种类的装置,例如光盘驱动器。
记录介质M包括能存储各种数据及程序的任何种类的记录介质。例如可以列举CD-ROM,CD-R,CD-RW,DVD-ROM,DVD-RAM,DVD-R,DVD+R,DVD-RW,DVD+RW,磁光盘,存储卡,软盘等,当然,并不局限于所列举的记录介质。
如图5所示,操作面板P包括显示器40及输入装置41。显示器40包括能显示各种信息的任何种类的装置,例如液晶显示器(liquid crystaldisplay,以下简记为“LCD”),所述各种信息包括从图像处理组件A接收到的指令。
输入装置41包括用户能输入指令的任何种类的装置,例如键盘。在本实施例中,输入装置41包括设置在显示器40表面的触摸面板41a,以及数字键或按钮41b。
代替图2所示构成,图1的图像处理装置54可以由包括处理器及存储装置的通用目的计算机实现。为了提供大致与MFP1功能相同的功能,计算机可以优选配置一个或多个周边装置,例如扫描器,打印机,传真机等。
如上述对图4的描述,信息处理组件B的HDD34存储本发明的图像处理程序。当接收到指令时,图像处理程序使得MFP1作为图1的图像处理装置54动作。
在本发明的一实施动作中,MFP1使用读取控制器12及读取装置8读取输入图像,成为光栅图像(raster image)。MFP1能从该光栅图像得到各种信息,例如它的尺寸,色浓度,分辨率等。这时,MFP1能使用正规化程序使得输入图像正规化,所述正规化程序可以存储在HDD34中。
MFP1生成一个或多个图像对象,分别表示图像处理的特定型式,以便施加于输入图像。或者MFP1可以使用存储在HDD34中的一个或多个图像对象。在本实施例中,图像对象是图像分类(class“image”)例,如图6所示,其可以通过发送信息与其他图像对象互相影响或通信。
下面,参照图7-图9,说明根据本发明一实施例的生成图像对象的动作。
如上所述,图像对象可以根据其状态定义。所述状态可以通过图像对象的属性以及各属性的参数被特征化。例如,图像对象可以具有以图7所示属性被特征化的状态。
参照图7,属性“tone_correction_mode”表示色调修正模式,其具有用于实行除去背景色的第1参数“0”,用于实行除去背景色噪音的第2参数“1”,用于实行无色调修正的第3参数“-1”等。
属性“tone_correction_factor”表示色调修正索引,其具有不设定电平的第1参数“0”,将色调修正电平设定为1的第2参数“1”等。
属性“magnification_factor”表示文字分辨率的倍率因子,其具有实行无倍率的第1参数“0”,将倍率因子设定为2的第2参数“2”等。
参照图8,第1状态“0”可以由具有参数“-1”的属性“tone_correction_mode”,具有参数“0”的属性“tone_correction_factor”,具有参数“0”的属性“magnification_factor”定义。第2状态“1”可以由具有参数“1”的属性“tone_correction_mode”,具有参数“1”的属性“tone_correction_factor”,具有参数“0”的属性“magnification_factor”定义。第3状态“2”可以由具有参数“1”的属性“tone_correction_mode”,具有参数“1”的属性“tone_correction_factor”,具有参数“2”的属性“magnification_factor”定义。第4状态“3”可以由具有参数“-1”的属性“tone_correction_mode”,具有参数“0”的属性“tone_correction_factor”,具有参数“2”的属性“magnification_factor”定义。
如上所述,图像对象还可以根据其作用(behavior)定义。所述作用可以通过方法即设定对图像对象实行的动作被特征化。例如,如图9所示,图像对象的方法包括用于得到属性的参数的“get_status”方法,用于设定属性“tone_correction_mode”或属性“tone_correction_factor”的参数的“set_tone_correction”方法,用于设定属性“magnification_factor”的参数的“set_text_enhancement”方法,用于生成二值文字图像的“get_binary_character”方法,用于通过参照图像对象的现在状态生成光栅图像的“rendering”方法。
图像对象的状态对应于通过对图像对象实行上述之一或其他方法所得到的累积结果。例如,参照图8,第2状态“1”可以通过实行具有括号中所示参数的以下方法得到:
“set_tone_correction”(1,1)
“set_text_enhancement”(0)
“rendering”
同样,第3状态“2”可以通过实行具有参数的以下方法得到:
“set_tone_correction”(1,1)
“set_text_enhancement”(2)
“rendering”
同样,第4状态“3”可以通过实行具有参数的以下方法得到:
“set_tone_correction”(-1,0)
“set_text_enhancement”(2)
“rendering”
除了生成图像对象,MFP1可以管理图像对象的状态及状态变迁。在本实施例中,MFP1实行“get_status”方法,以便得到用于表示图像对象的现在状态的属性参数。通过使用“get_status”方法,MFP1可以得到从初始状态到现在状态的各状态的属性参数,其可以用于表示现在状态变迁,例如现在状态是如何从初始状态变化而来的。
进一步说,当从用户接收到要求时,MFP1可以显示图像对象的状态,以及该状态的变迁,作为变迁数据,例如图10所示构成。在图10中,各椭圆对应于各状态,各箭头对应于各状态的变迁。变迁数据可以显示在操作面板P的显示装置40上。或者MFP1可以向委托人计算机4之一发送该变迁数据,使得计算机4显示该变迁数据。
再有,MFP1可以对具有一组特定的属性参数的图像对象的状态进行检索。例如,MFP1可以接收来自用户的检索具有一组特定的参数的要求。这时,用户可以使用操作面板P的输入装置41或委托人计算机4的键盘输入一组参数。当接收到该要求时,MFP1对具有一组特定的参数的状态进行检索,在操作面板P的显示装置40或委托人计算机装置4的显示器显示该检索结果。
再有,MFP1可以对图像对象的能预测的状态进行检索,该能预测的状态可以从图像对象的初始状态得出。例如,MFP1可以接收来自用户的检索能预测状态的要求。当接收到该要求时,MFP1通过变更属性参数,生成能预测的状态,在操作面板P的显示装置40或委托人计算机装置4的显示器上显示变迁数据,用于表示该生成的能预测的状态,如图11所示。在图11中,显示能预测的状态X,作为现在状态A的将来状态。
下面,参照图12说明按照本发明一个实施例的输出变迁数据的动作。当通过操作面板40接收到显示图像对象的现在状态的要求时,通过MFP1实行图12所示步骤。
步骤S1显示图像对象的初始状态,作为变迁数据。在本实施例中,MFP1除了现在状态,还可以显示现在状态的变迁,表示如何从初始状态变化到现在状态。除了现在状态以及现在状态的变迁,MFP1可以显示用于表示图像对象的最终状态的目标状态,其是根据用户用途预先设定的。所述变迁数据被显示为例如图15-20中任一个图所示构成。在图15-20中任一个图中,椭圆或方框对应于状态,箭头对应于状态变迁。
在本实施例中,MFP1可以显示各状态,如图15所示,或如图16所示,显示与状态对应的图像。图16的图像也可以是索引图像(thumbnailimage),其通过对输入图像施以特定图像处理生成。在本实施例中,该索引图像是光栅图像,如位图像。
另一方面,MFP1可以追加显示用于表示变迁数(transition number)的信息,如图17或图18所示,所述变迁数是指从一状态到另一状态所发生的变迁数。在图17中,对各状态显示变迁数。在图18中,按选择显示变迁数,如对于状态2,选择变迁数具有较大值的状态,在本例中,选择前二位,变迁数为2的没有被选择。
再有,MFP1可以追加显示目标状态移动到下一状态的概率(以下简记为“变迁概率”),如图19或图20所示。例如,状态2移动到状态3的概率是7/32。在图19中,对各状态显示变迁概率。在图20中,按选择显示变迁概率,如对于状态2,选择变迁概率具有较大值的状态,在本例中,选择前二位,变迁概率为2/32的没有被选择。
再回到图12,在步骤S2中,判断是否通过操作面板P接收到要求检索能预测的状态(predictable state)。若接收到该要求(步骤S2的“是”),则进入步骤S3。若没有接收到该要求(步骤S2的“否”),则处理结束。
在步骤S3中,检索能预测的状态。在本实施例中,能预测的状态对应于图像对象的一部分或全部可能状态,其可以从现在状态的初始状态得到。
在一实施例中,如图13所示,能预测的状态X1或X2可以根据从现在状态A所发生的变迁数确定。变迁数可以根据用户希望进行初始设定或确定。例如,当实行检索场合,用户可以设定变迁数(图13中用D表示)为2或5或7等。
在另一实施例中,如图14所示,能预测的状态X1或X2可以根据一状态确定,从该状态使用并行关系方法得到现在状态A。
步骤S4输出表示能预测状态的变迁数据,如图13或图14所示。
步骤S5判断是否接收到通过操作面板P要求移动到能预测状态。在该步骤中,若在步骤S4输出若干能预测状态,则用户可以特定其中之一。若接收到所述要求(步骤S5的“是”),则进入步骤S6,移动到该特定的能预测状态。若没有接收到该要求(步骤S5的“否”),则处理结束。
图1的图像处理装置54的上述任一功能或其它功能可以用存储在任何种类记录介质中的计算机程序具体化。或者,图1的图像处理装置54的上述任一功能或其它功能可以通过互连传统结构电路的合适网络,或将其与一个或一个以上的传统的通常用途的微处理器和/或信号处理器组合,经适当编程,以专用集成电路实现。
根据上述的教导可以进行很多其它的修改以及变化。可以理解的是,在所附权利要求的范围内,除了这里所述的内容之外,本专利公开的内容也是可以实现的。
例如,在公开和所附权利要求范围内,不同示意性实施例的元件和/或特征可以互相组合,或者互相替换。
进一步地,图像对象可以通过上述各方法的以外方法生成,只要其是使用适合对象程序构想就行。同样地,图像对象的状态可以通过上述各实施例的以外方法管理,只要状态或状态变迁可以根据适合对象程序构想被定义就行。例如,使用状态空间构想,任何状态包括初始状态,现在状态,能预测状态,将来状态,目标状态。
本文件基于在2004年9月1日提交的日本专利申请No.2004-254046作为优先权,其全部内容通过引用合并于此。

Claims (19)

1.一种图像处理装置,包括:
图像输入装置,用于输入一输入图像;
图像对象取得装置,用于取得表示特定图像处理的图像对象,所述特定图像处理施于所述输入图像;
状态管理装置,用于管理图像对象的状态以及状态变迁。
2.根据权利要求1中所述的图像处理装置,其特征在于,进一步包括:
输出装置,用于输出图像对象的状态,以及状态变迁,作为变迁数据。
3.根据权利要求2中所述的图像处理装置,其特征在于:
所述状态管理装置包括变迁数取得装置;
其中,所述变迁数据包括变迁数。
4.根据权利要求2中所述的图像处理装置,其特征在于:
所述状态管理装置包括变迁概率取得装置;
其中,所述变迁数据包括变迁概率。
5.根据权利要求2中所述的图像处理装置,其特征在于,所述变迁数据具有图解结构。
6.根据权利要求2中所述的图像处理装置,其特征在于,所述状态管理装置包括检索装置,用于检索图像对象的特定状态。
7.根据权利要求6中所述的图像处理装置,其特征在于,用户用指令控制所述检索装置。
8.根据权利要求6中所述的图像处理装置,其特征在于,所述变迁数据包括图像对象的特定状态。
9.根据权利要求8中所述的图像处理装置,其特征在于,所述图像处理装置进一步包括:
输出图像生成装置,通过对所述输入图像施以由具有特定状态的图像对象定义的图像处理,生成输出图像。
10.根据权利要求9中所述的图像处理装置,其特征在于,所述图像处理装置进一步包括:
输出装置,用于输出所述输出图像。
11.一种图像处理系统,包括:
处理器;
存储装置,用于存储若干指令,当通过处理器激活时,所述指令使得处理器实行图像处理动作,该动作包括以下步骤:
输入一输入图像;
取得表示图像处理的图像对象,以便对所述输入图像施以所述图像处理;
管理图像对象的状态以及状态变迁。
12.根据权利要求11中所述的图像处理系统,其特征在于,所述图像处理动作进一步包括以下步骤:
输出图像对象的状态,以及状态变迁,作为变迁数据。
13.一种计算机能读取的介质,用于存储计算机指令,实行图像处理动作,该图像处理动作包括以下步骤:
输入一输入图像;
取得表示图像处理的图像对象,以便对所述输入图像施以所述图像处理;
管理图像对象的状态以及状态变迁。
14.根据权利要求13中所述的介质,其特征在于,所述图像处理动作进一步包括以下步骤:
输出图像对象的状态,以及状态变迁,作为变迁数据。
15.一种管理图像处理方法,包括以下步骤:
取得表示图像处理的图像对象,以便对所述输入图像施以所述图像处理:
管理图像对象的状态以及状态变迁;
输出图像对象的状态,以及状态变迁,作为变迁数据。
16.根据权利要求15中所述的管理图像处理方法,其特征在于,进一步包括以下步骤:
使用变迁数据,检索所述图像对象的特定状态;
输出所述特定状态。
17.根据权利要求16中所述的管理图像处理方法,其特征在于,所述特定状态包括若干状态。
18.根据权利要求17中所述的管理图像处理方法,其特征在于,进一步包括以下步骤:
选择所述检索而得的若干状态之一,作为特定状态;
对所述输入图像施以由具有所选择状态的图像对象定义的图像处理,生成输出图像。
19.根据权利要求18中所述的管理图像处理方法,其特征在于,进一步包括以下步骤:
输出所述输出图像。
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