TW201244497A - Image interaction device, interactive image operating system, and interactive image operating method thereof - Google Patents

Image interaction device, interactive image operating system, and interactive image operating method thereof Download PDF

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TW201244497A
TW201244497A TW100143698A TW100143698A TW201244497A TW 201244497 A TW201244497 A TW 201244497A TW 100143698 A TW100143698 A TW 100143698A TW 100143698 A TW100143698 A TW 100143698A TW 201244497 A TW201244497 A TW 201244497A
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image
interactive
digital
digital image
data vector
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TW100143698A
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Chinese (zh)
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TWI482502B (en
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Ben Wu
Ming-Che Ho
Yuan-Chang Chien
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Etron Technology Inc
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Abstract

Before a large amount of information or messages is to be transmitted between image interaction devices, the information or messages are encoded into digital images to generate corresponding digital encoded images. When transmission of the digital encoded images is begun between the image interaction devices, the information or messages are transmitted at the same time without further increasing the amount of data transmission; and as a result, transmission delay between the image interaction devices can be reduced, and real-time operations between the image interaction devices can be achieved.

Description

201244497 六、發明說明: 【發明所屬之技術領域】 本發明揭露-種影像互_置、互 之互動式影像操作方法,尤指— 料統、及相關 方法 傳輸與該數位影像相關之資訊以位影像中來 像互動裝置、互動式影像操作系統、及相關之互動式影像操作 【先前技術】 圖=第11’其為—種—般互動式遊峨刚的概略示意 、互動式遊戲系統100包含一第一影像互動裝置則盘 =互動裝置12G °在第1圖中,—使用者_用第-影像互 動裝置110與位於遠端之-使用者刚所使用之第二影像互動裝置 12〇來進行連線遊戲’其中第—影像互動裝置⑽與第二影像互動 裳置12G間具有"網路15G,用來在第-影像互動裝置110與第二 影像互動裝置⑽間傳遞訊息或影像,其中網路15G可為内部網路 或外部網路。 第一影像互動裝置110可藉由一動作偵測器112來偵測使用者 130的外型輪廓與動作,以對應產生並顯示一數位影像114。第二影 像互動裝置120亦可透過一動作偵測器122來偵測使用者140,以 對應產生一數位影像116,並將數位影像116透過網路15〇傳輸至 第一影像互動裝置110,以使第一影像互動裝置110可同時顯示數 4 201244497 114盥116 /理第一影像互動裝置140亦可同時顯示數位影像 ”。在第-影像互動裝置11G與第二影像互練置12〇之間 可另外傳輸使用者⑽對數位影像m下達 ⑽對數位影像116下達的操作指令以進行互動遊戲。戈使用者 μ然而,在進行上述互動賴的途中,由於需要藉_路150來傳 輸大量的數姆彡像赌作指令,贿得第—雜互練置ιι〇盘第 :影像互_置12G可關錢行該互動職,因此會帶來可觀的 資料傳輸量。若網路15G無法負擔如此㈣料傳輸量時,第一影像 互動裝置110料二丨彡像互動裝置m之間進行的互動遊戲將會產 生延遲而無法同步,並躺辟互動職的進行與品質。 【發明内容】 、树明揭露了-種影像互練置、—種互動式影像操作系統、 、及種細之互喊影像操作綠,帛來有效降低遠端影像互動 裝=間的資料傳輸量,並據此克服先前技術中遠端影像互動裝置間 因貝料傳輸量過大以致互動遊戲產生延遲而無法同步進行的問題。 本發明所揭露之郷像互動裝置包含—影細取裝置、—影像處 理模組、及一影像傳輸器。該影像擷取裝置用來擷取一物體之一數 位影像。該影像處理模組用來根據該數位影像中所包含該物體之物 理特徵資訊來產生一資料向量(Datavect〇r),並將該資料向量編碼於 該數位影像,以產生一數位編碼影像。該影像傳輸器用來輸出該數 201244497 位編碼影像至-網路’以使該 碼影像中包含之該資料向量來顯示裝置可根據軸 一第本互動式影像操作系統包含—第一影像互動裝置與 一第-二縣置。料—影像互動裝置包含—影像擷取裳置、 一^ 及—影像傳輪器。該影侧取裝置用麵取 所數姆像。該第—潍處理模_來㈣魏位影像中 理特徵資訊來產生—資料向量,並將該資料向量201244497 VI. Description of the Invention: [Technical Field of the Invention] The present invention discloses an interactive image manipulation method for image mutual-interaction and mutual interaction, in particular, the system and related methods transmit information related to the digital image in bits. Image-like interactive device, interactive image operating system, and related interactive image operation [Prior Art] Figure = 11' is a general-purpose interactive game A first image interactive device is a disk = interactive device 12G ° in the first picture, - the user - using the first image interaction device 110 and the remotely located - the second image interaction device 12 used by the user The connection game 'the first-image interaction device (10) and the second image interaction device 12G have a "network 15G for transmitting messages or images between the first image interaction device 110 and the second image interaction device (10), The network 15G can be an internal network or an external network. The first image interaction device 110 can detect the outline and motion of the user 130 by using a motion detector 112 to correspondingly generate and display a digital image 114. The second image interaction device 120 can also detect the user 140 through a motion detector 122 to generate a digital image 116, and transmit the digital image 116 to the first image interaction device 110 through the network 15 The first image interactive device 110 can simultaneously display the number 4 201244497 114 盥 116 / the first image interactive device 140 can also display the digital image simultaneously. Between the first image interactive device 11G and the second image mutual practice 12 〇 The user (10) may further transmit (10) an operation instruction issued by the digital image (m) to the digital image 116 to perform an interactive game. However, on the way of performing the above interaction, a large number of numbers are required to be borrowed by the channel 150. Mum is like a gambling instruction, bribes the first - miscellaneous practice set ι 〇 : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : : (4) When the material transmission amount is reached, the interactive game played by the first image interactive device 110 between the two interactive devices m will be delayed and cannot be synchronized, and the interaction and quality of the interactive job will be immersed. 】, Shu Ming exposed - kind of image mutual practice, - an interactive image operating system, and a variety of shouting image operation green, in order to effectively reduce the amount of data transmission between the remote image interactive device = and This overcomes the problem that the interaction between the remote image interaction devices in the prior art is too large to cause the interactive game to be delayed and cannot be synchronized. The image interaction device disclosed in the present invention includes a shadow capture device and an image processing module. And an image transmission device for capturing a digital image of an object. The image processing module is configured to generate a data vector according to physical characteristic information of the object included in the digital image (Datavect 〇r), and encoding the data vector into the digital image to generate a digitally encoded image. The image transmitter is configured to output the 201244497 bit encoded image to the network to enable the data vector included in the code image The display device can be included according to the axis-first interactive image operating system - the first image interactive device and the first-second county. The material-image interactive device includes - For example, the image capture device, the image capture device, the image capture device, the image capture device, the image capture device, the image capture device uses the surface to take the number of the image, the first processing mode _ to (four) Wei position image information information to generate - data vector, And the data vector

”數:^像’以產生—數位編碼影像。該影像傳輸器用來輸 碼影像。該第二影像互動裝置包含—接收器、U t理模组、及—顯糧。該接收㈣崎—影 ϋ 接收該紐編郷像彡装置 進行解碼,4仏曰R 、,、,用來對魏位編碼影像 據該資料& 該數位影像。該顯示裝置用來根 康Κ怕輯包含該㈣之物理特徵資訊,顯示該數位影像。 本發明所揭露之互動式影像操作方 =r之-數位魏包含該物體二理置 根據該資料向量所包含該物體之物理特徵 以產i—數=Γ影像互動裝置將該f料向量編顺該數位影像’ 根=2出該㈣向細數位影像。該第二影像互動聚置 資訊,顯示該數位影像 【實施方式】 201244497 請參閱第2圖,其為根據本發明之一實施例所揭露之互動式影像 操作系統200的概略示意圖。在第2圖中,使用者13〇使用第一影 像互動裝置2H)與位於遠端之使用者14〇戶斤使用之第二影像互動裝 置22〇來進行連線遊戲,其中第一影像互動裝£ 21〇與第二影像互 動裝置220間同樣的具有一網路15〇,其中網路15〇可為内部網路 或外部網路。第2圖所示之互動式影像操作系統與第!圖所示 之互動式遊戲系統HX)不同的地方主要在於,第一影像互動裝置21〇 。第-讀互動裝置22G之間傳遞的是將包含了訊息的資料向量編 碼於數位影像中所產生之數位編碼影像。 处請參閱第3圖,其為第2圖所示之互動式影像操作系統2〇〇的功 此方塊不意圖,用轉細揭露互動式影像操作祕所包含之元 件及洋巧運作方式。如第3圖所示,第一影像互動裝置加包含一 影像擷取裝置212、一影像處理模組214、-輸入/輸出介面215、一 -員不裝置216、-影像傳輸器218、及-接收器219,而第二影像互 動裝置220包含一影像擷取裝置222、一影像處理模組故、一輸入 /輸出介面225、-顯示裝置226、一影像傳輸器228、及一接收器 229 ’其中第一影像互動裝置與第二影像互動㈣娜各自包含 之元件與各元件_連制似運翁絲本上_。接下來有關 ^第3圖的敘述,主要揭露了以第一影像互動裝置別產生了一第 一數位編·像並傳輸至第二影像互動裝置⑽,以使第二影像互 動裝,220知以在顯示裝置226上同時顯示該第一數位編碼影像解 碼所還原之一第一數位影像以及第二影像互動裝置220本身所產生 201244497 ,並用來顯示該第一數位影像與該第二數位影像 :=T細广然而,請注意,實質上第二影像互動裝置 21〇,以使t 碼雜鱗輸潍互動裝置 210,以使顯不裝置216同時顯千兮哲^ ㈣笛-w t 第二數位影像及該第一數位影像 化敘述而並未將此部份細節圖示於第3圖。 疋為了間 當第一影像互動裝置210與第二影像互動裝置22〇進行互 =如Γ動網路遊戲時,影像娜裝置212會先行齡與使用 =相關之該第-數位影像,並傳輸至影像處理模組2 =組21:會分析該第-數位影卿 ^以產生一資料向量,影像處理模組2Η會將該資料向量直 ==於該第-數位影像,料生—第—數位編碼影像 像傳輸_,其t影像處理模組214可以由軟體、硬體、或軟^ Z體的組合來實現。影像傳輸㈣8會再把該第—數位編 透過網路150轉傳至第二影像互動裝置22()。 ' 互動裝置細麵收㈣接收到該第—數位_ 器229會再將該第一數位編碼影像轉傳至影像處理模 組似。影像處理模組故用來對該第一數位編瑪影像進行解竭,、 以還原出原先被編碼於該第—數位編碼影像的轉向量以及該第— 數位影像’並第—數傅像及該資料向量中包含之資訊傳送至 顯示裝置226,討影像處理模組224可以由軟體、硬體、或軟體 201244497 及硬體驗合來實現;除此以外,影賴取裝置222也會操取盥使 用者⑽侧之該第二數⑽像,並將賴取到之該第二數位影像 經過影像處理模組224的處理而傳送至顯示裝置挪。最後,顯示 裝置226會根據該資料向量中所包含使用者13〇的物理特徵資訊來 顯不該第-數位影像’並同時顯示透過影像娜裝置222與影像處 理模組224所接收到之該第二數位影像,以使該第一數位影像與該 第二數位影像可以彼此互動的方式細示於顯示裝置226;同理, 顯不裝置216亦可同時以該第一數位影像與該第二數蝴象彼此互 動的方式來顯示該第—數位影像與該第二數位影像,如此一來,使 者”使用者140便可透過互動式影像操作系統2〇〇所包含之 第一影像互動裝置21G與第二影像互動裝置220來進行互動。 在本心月之刀實施例中,影像處理模組214可包含動作侧模 組_10恤咖)、物體偵測模組 traeke^分析_影像之χ置’影像處理模組2i4藉由 數位^像制的朗者13G相關物理特徵資訊可包含盘 = 手部、腳部或身體的移動距離、移動 ^ ^向)、使用者⑽在該第—數位影像中的深度圖 130 ^ f^^«(Skeleton-tline) > 細的滅1 —數位影像進行操作所使_手勢等,以作為互動 迦戲的遊戲控制之用。 在本發明之部分實施例中, 影像操取裝置212與222可使用 二維 201244497 攝影機、三維攝影機、網路攝影機(IPCama啦可拍攝物體 裝置來實施。如此-來,在考慮上述使用者相關物理特徵資= 施例時’該第-數位影像可為使用者13〇的真人數位可動影 第二數位f彡像亦可為使时14G的真人數位可姉像。/ μ 在本發明之部分實施例中,編碼於該第一編碼數位影像之 向量可另外包含用來設定該第一數位影像的顯示方式之外部指令及 /或影像參數,其中使用者130可透過第一影像互動裝置加上 之輸入/輸出介面215連接於使用者13()可操作之鍵盤、滑鼠、 2或其他控継科式,對第—雜互練置加輸人該外《 7與該4參數。斜触何為_者m欲對糾—影像所下 操作指令’以使顯稀置226可對應該操作指令更新該 第衫像的顯不方式;例如當該第一影像代表一虛擬人物時, 者130命令更換一特定服裝,且顯示裝置226可對 日心亥第—影像更換該特定服裝。該影像參數可包 含该第一影像的亮度、色階 旦 ^ 該外部指令及/或卻像參翁2 模組224可根據 的顯示方式/ ° 更新顯示襄置226對該第一數位影像 於^本一發:之部分實施例中,影像處理模組w將該資料向量編碼 二—特二可包含_資料向量隱藏在該第一數位影 上伊頭〇Λι w 7資料向量取代該特定位置的影像資料,並加 (邮利輯位置,來說,可將娜量隱藏於第- 201244497 數位影像賴的前端、後端、影像高_域、影像低位元區域或以 上位置的組合等任何形式的㈣賴方式。由於被取代的影像資料 位在較不倾制者觀_的錄,0此跡會料賴者觀看第 -數位影像品質^但本發明不限於將資料向量隱藏於第—數位 序列的則端、後端、影像高頻區域、影像低位元區域,在其他實施 例中,亦可在其他不容倾朗者察覺的位置隱藏資料向量。 在本發明之各實施例中,使时13〇與使用者H0亦可替換為人 類以外的物體,例如可產生動作之機器人等。 藉由本發明於第2圖與第3圖所揭露之互動式影像操作系統 =00 w S W像互動裝置210與第二影像互動裝i 22〇之間傳輸的 是編碼有資料向量的數位編爾彡像,而非先雜射的數位影像外 加訊息時,則只會帶來與數位影像相同㈣料傳輸量,而不會有訊 息帶來的額外傳輸量。如此—來,可大幅降低影像互_置間進行 t線互動操作時_料傳輸量過大所狀的延遲,解決了先前技術 請參閲第4圖,其為根據本發明之一實施例所示,用於第2圖與 第3圖所私互動式影像操作魏的互赋影像操作方法之流 程圖。如第4騎示,該互動式影絲作方法包含步驟如下: 步驟402 :帛一影像互動裝置210根據使用者13〇之—第一數位 影像中所包含該物體之物理特徵資訊來產生—資料向 201244497 量。 步驟404 : 第一影伯方讲 ’ ’動裝置210將該資料向量編碼於該第一數 .位衫像’以產生一第一數位編碼影像。 '驟406 .第二影像互動裝置22〇對該第一數位編碼影像進行解 步驟概.I以還原出該資料向量及該第一數位影像,·及 ’ 第一影像互動裝置22G根據該資料向量所包含使用者 130之物理特徵資訊,顯示該第—數位影像。 =意’將第4圖中所示之步驟增加前述之各種限制條件所衍生 仍心^或是第4圖中步驟的合理排顺合所触之實施例,皆 仍應視為本發明之實施例。 本發明揭露了-種影像互練置、翻·像互動裝置之互動式 影像操作系統,以及該互動式影像操作系__ ,法。藉由本發明之揭露,當影像互動裝置之間需要傳= 貝成或岐時’可將該些資訊或訊息編碼至數位影像巾,以減少影 像互動裝置之_資料傳輸量,並進而降低影像互動裝置之間哺 輸延遲,以達成影像互動裝置之間的即時互動操作。 以上所述僅為本發明之較佳實施例,凡依本發明申請專利範圍 所做之均等變化與修飾,皆應屬本發明之涵蓋範圍。 5 12 201244497 【圖式簡單說明】 第1圖為一種一般互動式遊戲系統的概略示意圖。 第2圖為根據本發明之-實施例所揭露之互動式影像操作系統的概 略示意圖。 第3圖為第2圖所示之互動式影像操作系統的功能方塊示意圖。 第4圖為根據本發明之一實施例所示用於第2圖與第3圖所示之互 動式影像操作系統的互動式影像操作方法之流程圖。 【主要元件符號說明】 100 110 、 210 112 、 122 114 、 116 120 、 220 130 、 140 150 200 212 ' 222 214 、 224 215 ' 225 216 、 226 218 、 228 互動式遊戲系統 第一影像互動裝置 動作偵測器 數位影像 第一影像互動裝置 使用者 網路 互動式影像操作系統 影像擷取裝置 影像處理模組 輸入/輸出介面 顯示装置 影像傳輸器 13 201244497 219 ' 229 402、404、406、408 接收器 步驟 14"Number: ^ image" to generate - digitally encoded image. The image transmitter is used to encode images. The second image interactive device includes - receiver, Ut module, and - display grain. The receiving (four) Saki-sha接收 Receiving the image editing device for decoding, 4仏曰R, ,, is used to encode the image of the Wei bit according to the data & the digital image. The display device is used to root the Κ 辑 辑 Included (4) The physical feature information displays the digital image. The interactive image operator disclosed in the present invention = r-digit includes the physical feature of the object included in the data vector to produce i-number = Γ image The interactive device aligns the f-vector into the digital image 'root=2 out of the (four) to the fine-numbered image. The second image interactively gathers information to display the digital image. [Embodiment] 201244497 Please refer to Figure 2, which is A schematic diagram of an interactive image operating system 200 according to an embodiment of the present invention. In FIG. 2, the user 13 uses the first image interactive device 2H) and the remote user 14 Second image The mobile device 22 is configured to perform a connection game, wherein the first image interaction device and the second image interaction device 220 have the same network 15〇, wherein the network 15〇 can be an internal network or an external network. The interactive image operating system shown in Fig. 2 differs from the interactive game system HX) shown in Fig. 1 mainly in that the first image interactive device 21 is transmitted between the first read interactive device 22G. The data vector containing the message is encoded in the digitally encoded image generated by the digital image. Please refer to Figure 3, which is the interactive image operating system shown in Figure 2, which is not intended to be used. The components of the interactive image manipulation secret and the smart operation mode are disclosed. As shown in FIG. 3, the first image interaction device includes an image capture device 212, an image processing module 214, and an input/output. The interface 215, the non-device 216, the image transmitter 218, and the receiver 219, and the second image interaction device 220 includes an image capture device 222, an image processing module, and an input/output interface 225. - display device 22 6. An image transmitter 228 and a receiver 229 'where the first image interactive device interacts with the second image (4). The components and components of each of the components are connected to each other. The description of FIG. 3 mainly discloses that a first digital image is generated by the first image interaction device and transmitted to the second image interaction device (10), so that the second image is interactively mounted on the display device 226. Simultaneously displaying the first digital image restored by the decoding of the first digitally encoded image and the 201244497 generated by the second image interactive device 220, and displaying the first digital image and the second digital image: Please note that the second image interaction device 21 is substantially configured to cause the t code to be transmitted to the interactive device 210 so that the display device 216 simultaneously displays the second digital image and the first digital image. The visual narrative is not shown in detail in Figure 3. In order to perform the mutual video game between the first image interaction device 210 and the second image interaction device 22, the image display device 212 first transmits the first-digit image associated with the use= and transmits it to Image processing module 2 = group 21: the first-digit shadow image ^ will be analyzed to generate a data vector, and the image processing module 2 will directly map the data vector to the first-digit image, and the first-digit image The encoded image image transmission module 214 can be realized by a combination of software, hardware, or soft body. The image transmission (4) 8 will then forward the first digit to the second image interaction device 22() via the network 150. The interactive device fine-covering (4) receives the first-digit 229 and then transfers the first digital-encoded image to the image processing module. The image processing module is used to decompress the first digital image, to restore the rotation vector originally encoded in the digital image and the digital image and the first image. The information contained in the data vector is transmitted to the display device 226. The image processing module 224 can be implemented by software, hardware, or software 201244497 and hard experience. In addition, the device 222 can also operate. The second number (10) image on the user (10) side is transmitted to the display device by the processing of the second digital image obtained by the image processing module 224. Finally, the display device 226 displays the first-digit image based on the physical feature information of the user 13〇 included in the data vector, and simultaneously displays the first received by the image processing device 222 and the image processing module 224. The two-digit image is displayed on the display device 226 in such a manner that the first digital image and the second digital image can interact with each other; similarly, the display device 216 can simultaneously use the first digital image and the second digital image. The image interacts with each other to display the first-digit image and the second digital image, so that the user 140 can use the first image interaction device 21G included in the interactive image operating system 2 The second image interaction device 220 interacts. In the embodiment of the heart of the knife, the image processing module 214 can include an action side module _10 shirt, and the object detection module traeke ^ analysis _ image device The image processing module 2i4 may include the disk = the moving distance of the hand, the foot or the body, the movement distance, and the user (10) in the first digital image by the digital feature information of the digital camera 13G. The depth map 130 ^ f ^ ^ « (Skeleton-tline) > fine extinction 1 - the digital image is operated by the _ gesture, etc., for use as an interactive game control. In some embodiments of the present invention The image capturing devices 212 and 222 can be implemented using a two-dimensional 201244497 camera, a three-dimensional camera, or a webcam (IPCama camera object device. Thus, when considering the above-mentioned user-related physical characteristics = example) The first-digit image may be a user's 13-digit real-digit movable second-digit digital image, or may be a real-time digital image of 14G. / μ In some embodiments of the present invention, encoded in the first The vector of the encoded digital image may additionally include external commands and/or image parameters for setting the display manner of the first digital image. The user 130 may be connected to the input/output interface 215 through the first image interactive device. The user 13() can operate the keyboard, mouse, 2 or other control system, and add the input to the first and the other. The 7 and the 4 parameters. The oblique touch is _ - the operation instruction of the image is ' The display 226 can update the display mode of the shirt image corresponding to the operation command; for example, when the first image represents a virtual character, the person 130 commands replacement of a specific clothing, and the display device 226 can - the image is replaced with the particular garment. The image parameter may include the brightness of the first image, the color scale, the external command, and/or the display mode according to which the parameter 2 module 224 can be updated. In some embodiments of the first digital image, the image processing module w hides the data vector code 2 - the second data may be included in the first digital image on the first digital image. The data vector replaces the image data of the specific location, and adds (the location of the postal content, in which the amount can be hidden in the front end, the back end, the image high_domain, the image low-level area or above A combination of positions, etc. in any form of (four) Lai. Since the replaced image data is recorded in the less-preferred view, the trace will be expected to view the first-digit image quality. However, the present invention is not limited to hiding the data vector at the end of the first-digit sequence. The back end, the image high frequency area, and the image low level area, in other embodiments, may also hide the data vector at other locations that are not perceived by the indifferent. In each of the embodiments of the present invention, the time 13 〇 and the user H0 may be replaced with an object other than a human being, such as a robot that can generate an action. The interactive image operating system disclosed by the present invention in FIGS. 2 and 3 = 00 w is transmitted between the SW interactive device 210 and the second interactive device i 22 编码 encoded with a data vector. For example, instead of first-spotted digital image plus message, it will only bring the same amount of material as the digital image, without the extra transmission caused by the message. In this way, the delay of the image transmission amount during the t-line interaction operation is greatly reduced, and the prior art is solved. Referring to FIG. 4, it is shown in an embodiment of the present invention. The flowchart of the method for mutually interacting image operations of the interactive interactive image manipulation of the second and third figures. For example, in the fourth riding, the interactive shadow forming method comprises the following steps: Step 402: The first image interactive device 210 generates the data according to the physical characteristic information of the object included in the first digital image of the user 13 Volume to 201244497. Step 404: The first video player ‘the mobile device 210 encodes the data vector to the first number bitmap image to generate a first digitally encoded image. Step 406. The second image interaction device 22 performs a step of decoding the first digitally encoded image to restore the data vector and the first digital image, and the first image interaction device 22G according to the data vector The physical feature information of the user 130 is included to display the first-digit image. = "Implementation of the steps shown in Figure 4 by adding the various constraints described above, or the embodiment of the steps in Figure 4, which is still in the sense of being properly implemented, should still be considered as an implementation of the present invention. example. The invention discloses an interactive image operating system for image mutual practice and flip image interaction devices, and the interactive image manipulation system __, method. According to the disclosure of the present invention, when the image interaction device needs to transmit the code or the message, the information or message can be encoded into the digital image towel to reduce the amount of data transmission of the image interaction device, thereby reducing the image interaction. Delays are fed between devices to achieve instant interaction between image interaction devices. The above are only the preferred embodiments of the present invention, and all changes and modifications made to the scope of the present invention should fall within the scope of the present invention. 5 12 201244497 [Simple description of the diagram] Figure 1 is a schematic diagram of a general interactive game system. Figure 2 is a schematic diagram of an interactive image operating system disclosed in accordance with an embodiment of the present invention. Figure 3 is a functional block diagram of the interactive image operating system shown in Figure 2. Figure 4 is a flow diagram of an interactive image manipulation method for the interactive image operating system shown in Figures 2 and 3, in accordance with one embodiment of the present invention. [Main component symbol description] 100 110 , 210 112 , 122 114 , 116 120 , 220 130 , 140 150 200 212 ' 222 214 , 224 215 ' 225 216 , 226 218 , 228 interactive game system first image interactive device motion detection Detector digital image first image interactive device user network interactive image operating system image capturing device image processing module input/output interface display device image transmitter 13 201244497 219 ' 229 402, 404, 406, 408 receiver steps 14

Claims (1)

201244497 七、申請專利範圍: 1· 一種影像互動裝置,包含: -影像娜裝置’用_取—物體之—數位影像; -影像處理獅,肖來根_數位影射所包含該難之物理特 徵資訊來產生-資料向量,並將該資料向量編碼於該數位影 像,以產生一數位編碼影像;及 / 一影像傳輸ϋ,用來輸出該數位編·像至—網路,以使該網路 所連接之-裝置可根據該數位編碼影像中包含之該資料向量 來顯示該數位影像。 /求貝1所述之W像互動裝置,其巾該物體之物理特徵資訊包 含雜體之-移動距離、移動速度、移動 架麵、及/或一手勢。 木度圖月 3.:請求項!所述之影像互動裝置,其中該影像處理模組將該資料 :量編碼㈣數位影像,以產生該數位編碼影像的方式包含將該 -貝料向量取代該數位影像之一特定位置的影像資料,並加上獅 以標示該特定位置。 4. ^請求項3所述之影像互動裝置,其中該特定位置包含該數位影 像的前端、後端、影像高頻區域、影像低位元區域或以上位置的201244497 VII. Patent application scope: 1. An image interactive device, including: - Image Na device 'Use _ take - object - digital image; - Image processing lion, Xiao Laogen _ digital map contains the physical information of the difficulty Generating a data vector and encoding the data vector in the digital image to generate a digitally encoded image; and/or an image transmission port for outputting the digital image to the network to enable the network The connected device can display the digital image according to the data vector contained in the digitally encoded image. / The W-like interactive device described in the first embodiment, the physical characteristic information of the object including the moving distance, the moving speed, the moving frame, and/or a gesture. Wood Degree Month 3.: Request Item! The image interaction device, wherein the image processing module: the coded (four) digital image, the method for generating the digitally encoded image comprises replacing the image data of the specific position of the digital image with the bead vector. And add a lion to mark the specific location. 4. The image interactive device of claim 3, wherein the specific location comprises a front end, a back end, an image high frequency area, an image low level area or the like of the digital image 15 201244497 二維 6·如請求項1所述之影像互動裝置,另包含: 一顯示裝置’用麵補數位影像。 7. ί請求項1所述之影像互動裝置,其中該資料向量另包含用來設 疋鐵位影像的_方式之—外部齡及/或—影像參數。 8. 一種互動式影像操作系統,包含: 一第一影像互動裝置,包含·· 一影像擷轉置,絲#|取—物體之—數位影像; 一第:像處賴組,用來根據嫌姆像包 徵資訊來產生—資料向量,並將該資料向量編碼 亥數位影像,以產生一數位編喝影像;及 一影像傳齡,用來輸ttu謝竭碼影像; 一第二影像互動裝置,包含: 一接收器,用來由該第一影像互動I置接收該數位編碼影 像, 一第二影像處理模組,用來對該數位編郷像進行解碼,以 還原出5亥資料向量及該數位影像;及 一顯=裝置,时根據該㈣向量所包含該物體之物理特徵 =貝汛,顯示該數位影像。 s 16 201244497 9.如請求項8所述之互動式影像操作系統,其中該物體之物理特徵 資訊包含該物體之一移動距離、移動速度、移動方向、一深度圖、 一骨架輪廓、及/或一手勢。 又 10.如請求項8崎之互動絲像操⑽統,其巾該第— 組將該資料向量編碼於該數位影像,以產生該數位編碼影像的方 式包含_频向量取傾練之—败錢的;^方 料,並加上檔頭以標示該特定位置。 如,求項ω崎之互動式影像操作系統,其中 該數位影像的前端、後端、影像高頻區域 =各 上位置的組合。 域或以 12.===:操:,,其___· 僻如機、或-網路攝影機。 Β.如請求項8所述之互動式影像 - 用來設定該數位影像的顯示方式之:、匕該資料向量另包含 數,且該顯示裝置传彳Hi 。卩礼令及/或一影像參 影像之顯示^據料部齡綠鄉參數料新該數位 14. -種互動式影像操作方法,包含: 17 201244497 一第一影像互動裝置根據一物 之物理特徵資訊來產生一資料向量位影像令所包含該物體 該第-影叙練置將該轉 數位編碼影像; ;°亥數位影像,以產生〜 料向量數蝙’綠進行解碼’—出該資 該第二影像互練置根據該 資訊,顯示該數位影像。物體之物理特徵 15·如=求項14所述之互動式影像操作方法,另包含. 戎第一影像互動裝置擷取該數位影像。 出至該第二影像互動 仏如請求们4所述之互動式影像操作方法. 該第一影像互動裝置將該數位編碼影像冑匕3. 裝置。 17.如請求項14所述之互動式影像操 j-n λ 、方法’其中該物體之物理辟 徵貝汛包含該物體之一移動距離 勿里特 圖、一骨架輪廓、及/或-手勢。度、移動方向、一深度 队如請求们4所狀絲式影像操作妓,另包含·· 該第二影像互動裝置根據用來操 -影像參數,設定該數位影像之令或 S 18 201244497 I9.如請求項痛述之互動式影像操作方法,其巾該第—影像互動 裝置將該賴向4編碼於贿位影像,减线數位編碼影像係 包含: 該第-影像互練置職資料向量取代贿姆狀—特定位 置的影像資料,並加上_㈣示該特定位置,以產生該數 位編碼影像 2〇·如請求項!9所述之互動絲像操作方法,其巾 該數位影像的前端、後端、影像高頻區域、人 ^ 上位置的組合。 影像低位元區域或以 八、圖式: 1915 201244497 2D 6. The image interactive device of claim 1, further comprising: a display device ‘with a complement image. 7. The image interactive device of claim 1, wherein the data vector further comprises an external age and/or image parameter for setting the image of the iron level image. 8. An interactive image operating system comprising: a first image interactive device comprising: an image transposition, a silk #| taking-object-digital image; a first: like a group, used for The image is encoded to generate a data vector, and the data vector is encoded into a digital image to generate a digital image; and an image is used to transmit a ttu image; a second image interactive device The method includes: a receiver for receiving the digital coded image by the first image interaction I, and a second image processing module for decoding the digital image to restore the 5H data vector and The digital image; and a display device, the digital image is displayed according to the physical characteristic of the object included in the (four) vector. The interactive image operating system of claim 8, wherein the physical characteristic information of the object includes a moving distance, a moving speed, a moving direction, a depth map, a skeleton contour, and/or a gesture. 10. The request item 8 is an interactive silk image manipulation (10) system, and the towel group encodes the data vector in the digital image to generate the digitally encoded image. The money; ^ square material, and add a header to indicate the specific location. For example, the interactive image processing system of the item ω崎, wherein the front end, the back end, and the image high frequency area of the digital image = a combination of the upper positions. The domain is either 12.===: fuck:,, its ___· is detached, or - a webcam.互动. The interactive image as claimed in claim 8 - used to set the display mode of the digital image: 匕 the data vector further includes a number, and the display device transmits Hi.卩 令 及 and / or an image of the image display ^ According to the material age of the green township parameters of the new digital 14. - Interactive image manipulation methods, including: 17 201244497 a first image interactive device based on the physical characteristics of a thing The information is used to generate a data vector image to include the object, the first image is used to encode the image of the digit; and the digital image is generated to generate a vector number bat 'green for decoding'. The second image mutual training displays the digital image according to the information. The physical characteristics of the object 15. The interactive image manipulation method as described in claim 14, further comprising: 戎 the first image interactive device captures the digital image. The second image interaction, such as the interactive image manipulation method described in Requester 4. The first image interaction device encodes the digitally encoded image into a device. 17. The interactive image manipulation j-n λ, method </ RTI> as claimed in claim 14, wherein the physical physics of the object comprises a moving distance of the object, a Norit diagram, a skeleton contour, and/or a gesture. Degree, moving direction, a depth team, such as requesting 4 wire image operations, and the second image interactive device according to the operation-image parameters, set the digital image or S 18 201244497 I9. In the interactive image manipulation method of the request item, the first-image interactive device encodes the reliance 4 into the bribe image, and the reduced-line digital coded image system includes: the first-image mutual training and placement data vector Bribe-like image data of a specific location, plus _ (four) shows the specific location to generate the digitally encoded image 2〇·such as the request item! The interactive silk image operation method described in 9, the combination of the front end, the back end, the high frequency area of the image, and the position of the upper side of the digital image. The low-order area of the image or the eight, the pattern: 19
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