TW200525975A - Home appliance control network system - Google Patents

Home appliance control network system Download PDF

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Publication number
TW200525975A
TW200525975A TW93128001A TW93128001A TW200525975A TW 200525975 A TW200525975 A TW 200525975A TW 93128001 A TW93128001 A TW 93128001A TW 93128001 A TW93128001 A TW 93128001A TW 200525975 A TW200525975 A TW 200525975A
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TW
Taiwan
Prior art keywords
message
home appliance
aforementioned
security
processing
Prior art date
Application number
TW93128001A
Other languages
Chinese (zh)
Inventor
Takahiko Kamitsuji
Takashi Murakami
Yasuyuki Shintani
Akira Shoda
Original Assignee
Matsushita Electric Ind Co Ltd
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Publication date
Application filed by Matsushita Electric Ind Co Ltd filed Critical Matsushita Electric Ind Co Ltd
Publication of TW200525975A publication Critical patent/TW200525975A/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L63/00Network architectures or network communication protocols for network security
    • H04L63/04Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks
    • H04L63/0428Network architectures or network communication protocols for network security for providing a confidential data exchange among entities communicating through data packet networks wherein the data content is protected, e.g. by encrypting or encapsulating the payload

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  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Hardware Design (AREA)
  • Computing Systems (AREA)
  • General Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Selective Calling Equipment (AREA)
  • Computer And Data Communications (AREA)
  • Alarm Systems (AREA)

Abstract

The present invention sets information necessary for controlling operations interconnected among home appliances based on transmitting and receiving a message. Therein, a flag changeable by a user is secured as one of the pieces of information, the flag relating to a secure communication. When sending the message to other home appliances, the secure communication is performed based on content of the flag. Further, by preparing another flag indicating valid or invalid of the setting, the present invention allows easily to set or reset the interconnected operation.

Description

200525975 九、發明說明: 【發明所屬之技術領域】 技術領域 本發明係有關-種家電機器控制網路系統,係用以對 5網路所連接之家電機器進行控制者,特別是有關一種家電 機器控制網路系統中之家電機器之控制方法。 ^ 【先前技術】 背景技術 習知家電機器控制網路系統有例如曰本專利公報第特 1〇開2〇01 —86572號(習知例υ戶斤載之家電機器控制網路系 統。第1圖為顯示習知例1所載之習知家電機器控制網路系 統之構成的方塊圖。第1圖之家電機器控制網路系統具有一 控制為1000及豕電機益3000 ’控制器1〇〇〇係透過使用電燈 線之網路1100連接,而家電機器3000則在控制器1〇〇〇之控 15制下進行與其匕豕電機為之連動(例如,由某家電機器控 制其它家電機器之啟動或停止)。控制器1〇〇〇具有控制通訊 之通訊管理機構1010、傳送條件資訊管理機構1〇2〇與動作 狀態資料取得機構1030。又,家電機器3000具有管理該家 電機器3000之通訊的通訊管理機構3〇1〇、傳送條件保持機 20 構3020、動作狀態資料傳送管理機構3030、傳送條件資訊 管理機構3040與動作狀態資料管理機構3〇5〇。藉此,家電 機器3000可根據傳送條件資訊管理機構3〇4〇所管理之資訊 與傳送資訊保持機構3020所保持之資訊將自機器之資料傳 送至包含控制器1〇〇〇之其它家電機器,而與網路内之其它 200525975 家電機器通訊。 發明欲解決之課題 唯,前述習知例1之家電機器控制網路系統面臨今曰網 路之安全問題日益嚴重,而有無法進行用以安全地進行通 5 訊之設定的問題。又,一但進行用以控制聯繫動作之條件 設定後,該條件若成立便會立即傳送電文,因而會送出不 必要之電文。再者,變更前述設定時之操作十分複雜,有 操作性不佳之問題。 【發明内容】 10 發明之揭示 故,有鑑於此,本發明之目的在於實現一可安全地進 行家電機器間之通訊的家電機器控制網路系統。再者,本 發明之第2目的在於可迴避與網路上其它家電機器不必要 之連動動作的家電機器控制網路系統。 15 為達成前述目的,本發明之家電機器控制網路系統係 具有透過網路連接之第1家電機器與第2家電機器者,其 中,前述第1家電機器具有: 一事情檢測機構,係用以檢測與前述第2家電機器之連 動有關的事情者; 20 一電文傳送判定機構,係可根據預先設定之第1資料來 判斷是否應傳送與檢測出之前述事情有關之電文者; 一處理實施判定機構,係可根據預先設定之第2資料, 就前述電文判定是否應施加安全處理者;及 一電文傳送機構,係可於判定應傳送電文,且判定應 200525975 施加前述安全處理時,對前述電文施加安全處理,並將已 施加該安全處理之電文傳送至前述第2家電機器者; 而,前述第2家電機器則包含有: 一電文接收機構,係用以接收電文者;及 5 一處理機構,係用以對已受到之前述電文所施加之安 全處理進行對應之解讀,並根據該解讀之内容執行預先規 定之處理者。 藉此,可實現一可安全地進行家電機器間之通訊的家 電機器控制網路系統。 10 再者,為達成前述目的,本發明之家電機器控制網路 系統係更具有一控制該家電機器控制網路系統之控制裝 置,而該控制裝置則包含有: 一指示接受機構,係可由使用者接受指示者;及 一資料變更機構,係可根據接受之前述指示來變更預 15 先設定之前述第1資料及前述第2資料。 藉此,由於可接受來自使用者之指示,並根據該指示 變更用以控制預先設定之網路上的其它家電之設定,因此 可實現一可迴避與網路上其它家電機器之不必要聯繫動作 的家電機器控制網路系統。 20 圖式簡單說明 第1圖係顯示習知家電機器控制網路系統之功能構成 的方塊圖。 第2圖係顯示第1實施形態之家電機器控制網路系統的 構成概要之圖。 7 200525975 第3圖係顯示第1實施形態之控制器的功能構成之方塊 圖。 第4圖係顯示第1實施形態之人體感應裝置的功能構成 之方塊圖。 5 第5圖係顯示第1實施形態之動作定義資訊的構成例之 圖。 第6圖係顯示第1實施形態中動作條件之資料構造的其 中一例之圖。 第7圖係顯示第1實施形態之連動啟動條件的具體例之 10 圖。 第8圖係顯示第1實施形態之動作電文有效無效旗標的 構成之圖。 第9圖係顯示第1實施形態之動作電文構成資訊的構成 例之圖。 15 第10圖係顯示第1實施形態中動作電文安全設定之資 料構造的其中一例之圖。 第11圖係顯示第1實施形態之家電機器控制網路系統 的動作之通訊時序圖。 第12圖係顯示前述第11圖之動作定義資訊的具體例之 20 圖。 第13圖係顯示第1實施形態所使用之電文的具體例之 圖。 第14圖係顯示第1實施形態之動作判定處理部的處理 流程之流程圖。 200525975 第15圖係顯示第2實施形態之家電機器控制網路系統 的構成概要之圖。 第16圖係顯示第2實施形態之空調的功能構成之方塊 圖。 5 第17圖係顯示第2實施形態之觸發定義資訊的構成例 之圖。 第18圖係顯示第2實施形態中觸發處理資訊之資料構 成的其中一例之圖。 第19圖係顯示第2實施形態之觸發電文有效無效旗標 10 的構成之圖。 第20圖係顯示第2實施形態之觸發電文構成資訊的構 成例之圖。 第21圖係顯示第2實施形態中觸發電文安全設定之資 料構成的其中一例之圖。 、 15 帛22圖係顯示第2實施形態之家電機器控制網路系統 的動作之通訊時序圖。 第23圖係顯示前述第22圖之觸發定義資訊的具體例之 圖。 第24圖係顯示第2實施形態之觸發判定處理部的處理 20 流程之流程圖。 第25圖係顯示第3實施形態之家電機器控制網路系統 的機能構成之方塊圖。 【實施方式】 發明之最佳實施形態 200525975 明 以下, 一面參考圖式一面就本聲明 之貫施形態進行說 (第1實施形態) 第2圖係顯示第1實施形態之家φ 構成概要之圖。如第2圖所示,家;機:控制 下益「士/ 冤機态控制網路系統(以 10 15200525975 IX. Description of the invention: [Technical field to which the invention belongs] TECHNICAL FIELD The present invention relates to a home appliance control network system, and is used to control home appliances connected to the 5 network, especially a home appliance. Control method for controlling home appliances in a network system. ^ [Prior art] Conventional home appliance control network systems include, for example, Japanese Patent Gazette No. 10 open 2001-86572 (a conventional example of a household appliance control network system. First The figure is a block diagram showing the structure of a conventional home appliance machine control network system as shown in the conventional example 1. The home appliance machine control network system of FIG. 1 has a control of 1000 and a motor 3000 'controller 100. 〇 is connected through the network 1100 using electric light cables, and the home appliance 3000 is linked to its dagger motor under the control of the controller 1000 (for example, a home appliance controls the startup of other home appliances) Or stop). The controller 1000 has a communication management unit 1010 that controls communication, a transmission condition information management unit 1020, and an operation status data acquisition unit 1030. Furthermore, the home appliance 3000 has a management unit that manages the communication of the home appliance 3000. Communication management unit 3101, transmission condition maintaining unit 2030, operation state data transmission management unit 3030, transmission condition information management unit 3040, and operation state data management unit 3 50. In this way, the home appliance machine 3000 can transmit the data from the machine to other devices including the controller 1000 according to the information managed by the transmission condition information management organization 3004 and the information held by the transmission information holding organization 3020. The home appliance machine communicates with other 200525975 home appliances in the network. The problem to be solved by the invention is that the home appliance machine control network system of the above-mentioned conventional example 1 is facing increasingly serious network security problems today, and some of them cannot be used. The problem of setting the communication information securely. Once the condition setting for controlling the contact action is performed, if the condition is satisfied, the message will be transmitted immediately, and therefore unnecessary messages will be sent. Furthermore, the aforementioned changes The operation at the time of setting is very complicated, and there is a problem of poor operability. [Summary of the Invention] 10 Disclosure of the Invention In view of this, the object of the present invention is to implement a home appliance control network that can safely perform communication between home appliances Furthermore, the second object of the present invention is a home appliance that can avoid unnecessary interlocking operations with other home appliances on the network. 15 In order to achieve the foregoing object, the home appliance control network system of the present invention includes a first home appliance and a second home appliance that are connected through a network, wherein the first home appliance has one thing: The detection mechanism is used to detect matters related to the aforementioned second-party home appliance; 20 A message transmission determination mechanism may determine whether or not to transmit a message related to the previously detected event based on the preset first data. A processing implementation judging mechanism that can determine whether a security process should be applied to the foregoing message based on the preset second data; and a message transmission mechanism that can determine a message to be transmitted and determine that the aforementioned security should be applied in 200525975 During processing, a security process is applied to the aforementioned message, and the message to which the security process has been applied is transmitted to the aforementioned second home appliance; and the aforementioned second home appliance includes: a message receiving mechanism for receiving the text ; And 5 a processing mechanism for the corresponding solution to the security processing imposed by the aforementioned message Read and execute a pre-defined processor based on the content of the interpretation. Thereby, a home electric machine control network system capable of safely performing communication between home appliances can be realized. 10 Furthermore, in order to achieve the foregoing object, the home appliance control network system of the present invention further has a control device for controlling the home appliance control network system, and the control device includes: an instruction receiving mechanism, which can be used by Those who accept the instructions; and a data changing mechanism, which can change the aforementioned first data and the aforementioned second data set in advance according to the aforementioned instructions accepted. Therefore, since an instruction from the user can be accepted, and the settings for controlling other home appliances on the preset network can be changed according to the instructions, a home appliance that can avoid unnecessary contact with other home appliances on the network can be realized Machine control network system. 20 Brief Description of Drawings Figure 1 is a block diagram showing the functional structure of a conventional home appliance machine control network system. Fig. 2 is a diagram showing the outline of the configuration of the home appliance control network system of the first embodiment. 7 200525975 Figure 3 is a block diagram showing the functional configuration of the controller of the first embodiment. Fig. 4 is a block diagram showing a functional configuration of the human body sensing device of the first embodiment. 5 Fig. 5 is a diagram showing a configuration example of the operation definition information of the first embodiment. Fig. 6 is a diagram showing an example of a data structure of operating conditions in the first embodiment. Fig. 7 is a diagram showing a specific example of the conditions for starting the interlocking operation in the first embodiment. Fig. 8 is a diagram showing the configuration of a valid message invalid flag in the operation message of the first embodiment. Fig. 9 is a diagram showing an example of the configuration of the operation message configuration information of the first embodiment. 15 Fig. 10 is a diagram showing an example of a data structure of a safety setting of an operation message in the first embodiment. Fig. 11 is a communication timing chart showing the operation of the home appliance control network system of the first embodiment. Fig. 12 is a diagram 20 showing a specific example of the action definition information of the aforementioned Fig. 11. Fig. 13 is a diagram showing a specific example of a message used in the first embodiment. Fig. 14 is a flowchart showing a processing flow of the operation determination processing unit of the first embodiment. 200525975 Fig. 15 is a diagram showing the outline of the configuration of a home appliance control network system according to the second embodiment. Fig. 16 is a block diagram showing a functional configuration of the air conditioner according to the second embodiment. 5 Fig. 17 is a diagram showing a configuration example of trigger definition information in the second embodiment. Fig. 18 is a diagram showing an example of the data structure of trigger processing information in the second embodiment. Fig. 19 is a diagram showing the configuration of a trigger message valid invalid flag 10 in the second embodiment. Fig. 20 is a diagram showing a configuration example of the trigger message configuration information of the second embodiment. Fig. 21 is a diagram showing an example of the data structure of the trigger message security setting in the second embodiment. 15 and 22 are communication timing charts showing the operation of the home appliance control network system of the second embodiment. Fig. 23 is a diagram showing a specific example of the trigger definition information in Fig. 22 described above. Fig. 24 is a flowchart showing the flow of processing 20 of the trigger determination processing section of the second embodiment. Fig. 25 is a block diagram showing the functional configuration of the home appliance control network system of the third embodiment. [Embodiment] The best embodiment of the invention 200525975 will be described below. Referring to the drawings, the following describes the implementation form of this statement (first embodiment). Figure 2 is a diagram showing the outline of the structure of the first embodiment of the house φ . As shown in Figure 2, home; machine: control

二本糸統」)10為—實現動作連動服務之系統具有有 ^ :如電燈線)或無線之網路40、控制本系額全體之 控制㈣、人體感應裝置励及防盜裝置細。在此,「動作 ^動服知」係指在發生滿足任意家電機器所預先設定之條 4的事情時,對其它家電機器傳送電文之服務。 第3圖係顯示本系統1G之控制㈣的功能構成之方塊 圖如第3圖所示,控制器50具有通訊管理部51、定義資訊 官理部52及使用者介面部53。 通訊管理部51具有CPU、ROM或RAM等,可控制控制"Two books" "10"-The system that realizes the action linkage service has ^: such as electric light cable) or wireless network 40, the control card that controls the whole system, the body induction device and the anti-theft device. Here, "actions" means the service of transmitting messages to other home appliances when an event that satisfies the condition 4 set in advance by any home appliance occurs. Fig. 3 is a block diagram showing the functional configuration of the control unit 1G of the system. As shown in Fig. 3, the controller 50 includes a communication management unit 51, a definition information management unit 52, and a user interface 53. The communication management unit 51 has a CPU, ROM, RAM, etc., and can be controlled.

為50全體,並透過網路4〇控制與人體感應裝置1〇〇或防盜裝 置2〇〇之通訊。 定義資訊管理部52根據透過使用者介面部53接受之來 自使用者之指示,進行動作定義資訊140之指定或變更等, 並將指定之動作定義資訊140傳送至通訊管理部51。 使用者介面部53具有各種輸入按鈕或液晶面板等,接 叉來自使用者之指示,並將其内容傳送至通訊管理部51。 接著’使用者介面部53視需要將預定(例如動作定義資訊 140或機器特性151)之資訊顯示於液晶面板,而提供給使 用者。 10 200525975 第4圖係顯示本系統10之人體感應裝置100的功能構成 之方塊圖。如第4圖所示,人體感應裝置100具有電文傳送 處理部110、動作判定處理部120、定義資訊記憶部130、機 器特性記憶部150及感應感測器160。 電文傳送處理部110藉動作判定處理部120之指示,將 指定之電文送至網路40。舉例言之,電文傳送處理部no對 網路40傳送電文作為廣播通訊用。 動作判定處理部120為一控制人體感應裝置1〇〇之通訊 的部署,具有包含例如ROM或RAM等之CPU。再者,動作 10判定處理部120在發生預定事情(例如感應感測器160運轉) 時’或定期(例如5秒)對機器特性記憶部150所記憶之感 應感測器160之監視結果或機器狀態等的機器特性151進行 調查,而發生滿足記憶於定義資訊記憶部130之動作定義資 訊140所定義之條件的事情時,生成一用以使特定之家電機 15器進行特定處理(例如使防盜裝置200響警報之處理)之電 文後,傳送至電文傳送處理部110。 定義資訊記憶部130為例如RAM,用以記憶前述動作判 疋處理部12〇為判定是否應執行預定處理所用之動作定義 資訊14〇。而,定義資訊記憶部130亦可使用不變性ram, 20以避免人體感應裝置100之電源關閉時動作電文資訊140消 失。 機為特性§己憶部150定期(例如每1秒)記憶由感鹿减 測器160傳送之機器特性(例如,感應感測器16〇時記愔、「防 “心 一πτ^ 視結果」)。在此,機器特性151係指諸如家電機器之動作内 11 200525975 容或其狀態等有關家電機器之資訊。 感應感測器160為例如紅外線感測器,定期(例如每1 秒)監視人體之溫度變化等,並將其結果傳送至機器特性 · 記憶部140。 5 第5圖係顯示動作定義資訊140之構成例的圖。如第5 , 圖所不,動作定義資訊14〇由動作條件141、動作電文有效 無效旗標142及動作電文構成資訊143構成。而,如前述第4 圖所示,動作電文構成資訊143由動作電文安全設定144及 動作電文資訊145構成。又,動作定義資訊M0内分配有分 馨 1〇類群組碼及群組碼。再者,每一動作定義資訊14〇分配有瞬 時碼。又,特性碼(pc) 14〇a為分配於每一資訊(例如動 作條件141等資訊)之識別碼。 動作條件141為一表示用以傳送動作電文資訊ι45所示 之電文的條件之資訊。再者,動作條件14丨可設定複數傳 15條件。 、 第6圖係顯示動作條件141之資料構造的其中一例之 圖。動作條件數141a表示後續的動作條件要素(即,用以 · 2送電文之條件)之數(第6圖表示「η」)。故,可視需要 设定η個動作條件要素。 2〇 動作條件數他之内容為「0」時,表示未設定有欵之 ‘ 動作條件要素,即使已設定動作條件要素也不傳送電文。 · 動作條件要素1大小141b表示動作條件要素丨之資料大小。 有在滿足已设疋於動作條件數141&之數量的所 動作條件要素所定義之條件時,方傳送設定於動作電文 12 200525975 5 10 15 20 條件145之電文。 如第6圖所示,動作條件要素(例如,動作條件要素!) 由動作設定目標碼⑽叫、動作設定特性碼(pc)⑷^ 連動啟動條件141e、連動啟動條件值大小資訊斯及連動 啟動條件值141g所構成。動作設定目標碼141。及動作 ^性碼⑷編㈣定機轉性⑸之資訊。連動啟祕件 了示對應之機器特性151之值與連動啟動條件值訊。且,所杨作條件要素係於機器特 1之值與連動啟動條件值141§間之連動啟動條件i4ie 送電I根據動作電文安全設定144與動作電文資訊145傳 第:圖係顯示前述連動啟動條件Ule之具體例之圖。 益效動作電文有效無效旗標142°動作電文有效 資訊H5;二表示要傳送或不傳送現在設定之動作電文 汀不之電文的資訊。 如第8第圖IT軸示動作電文有效無效旗標142的構成之圖。 「b〇 <不,動作電文有效無效旗標142為IByte之資料, 傳送」^定為「G」日夺’即使動作條件成立也不進行電文之 動作電文次動作^有效無效旗標142保持為與動作條件或 ⑷或動作:獨立之資訊,藉此,完全μ變更動作條件 件要辛^ 訊145之内容,便可變更已設定之動作條 素之有效或無效。 ^著’説明動作電文構成資訊143。 圖係動作電文構成資訊143之構成例之圖。如第9It is 50 in total, and communicates with the human body sensing device 100 or the anti-theft device 200 through the network 40 control. The definition information management unit 52 designates or changes the action definition information 140 according to an instruction received from the user through the user interface 53 and transmits the designated action definition information 140 to the communication management unit 51. The user interface section 53 includes various input buttons, a liquid crystal panel, and the like, and receives instructions from the user, and transmits the contents to the communication management section 51. Next, the 'user interface part 53' displays predetermined (for example, motion definition information 140 or machine characteristics 151) information on the liquid crystal panel as needed, and provides it to the user. 10 200525975 FIG. 4 is a block diagram showing the functional configuration of the human body sensing device 100 of the system 10. As shown in Fig. 4, the human body sensing device 100 includes a message transmission processing unit 110, an action determination processing unit 120, a definition information storage unit 130, a machine characteristic storage unit 150, and a sensing sensor 160. The message transmission processing unit 110 sends the designated message to the network 40 by the instruction of the action determination processing unit 120. For example, the message transmission processing unit transmits a message to the network 40 for broadcast communication. The action determination processing section 120 is a deployment for controlling communication of the human body sensing device 100, and has a CPU including, for example, ROM or RAM. Furthermore, the action 10 determines that the processing unit 120 monitors the result of the inductive sensor 160 or the machine memorized by the machine characteristic storage unit 150 when a predetermined event (for example, the operation of the inductive sensor 160 operates) or periodically (for example, 5 seconds). State and other machine characteristics 151 are investigated, and when an event that satisfies the conditions defined in the action definition information 140 of the definition information storage unit 130 is generated, a specific home motor 15 device is generated to perform specific processing (for example, to prevent theft After the device 200 sounds the alarm message, the message is transmitted to the message transmission processing unit 110. The definition information storage unit 130 is, for example, a RAM, and is used to store the aforementioned motion determination processing unit 120. The motion definition information 14 is used to determine whether a predetermined process should be performed. In addition, the definition information storage unit 130 may also use invariant ram, 20 to prevent the action message information 140 from disappearing when the power of the human body sensing device 100 is turned off. The machine is a characteristic § The self-memory unit 150 periodically (for example, every 1 second) memorizes the characteristics of the machine transmitted by the deer reduction device 160 (for example, the inductive sensor 16 o'clock records, "prevents the heart πτ ^ depending on the result" ). Here, the machine characteristic 151 refers to information on the home appliance such as the operation of the home appliance 11 200525975 or its status. The inductive sensor 160 is, for example, an infrared sensor, and periodically monitors the temperature change of the human body (for example, every 1 second), and transmits the result to the machine characteristic memory unit 140. 5 FIG. 5 is a diagram showing a configuration example of the action definition information 140. As shown in Fig. 5, the action definition information 140 is composed of action conditions 141, action message valid invalid flag 142, and action message configuration information 143. As shown in FIG. 4, the operation message configuration information 143 is composed of the operation message security setting 144 and the operation message information 145. In addition, the operation definition information M0 is assigned a minute 10 group code and a group code. Furthermore, each action definition information 14 is assigned a time code. The characteristic code (pc) 14〇a is an identification code assigned to each piece of information (for example, information such as the operation condition 141). The operation condition 141 is information indicating a condition for transmitting the message shown in the operation message information 45. In addition, the operation conditions 14 丨 can be set to the multiple transmission 15 conditions. Fig. 6 is a diagram showing an example of the data structure of the operating condition 141. The operation condition number 141a indicates the number of subsequent operation condition elements (that is, conditions for transmitting a telegram) (Fig. 6 indicates "η"). Therefore, n operation condition elements can be set as required. 2〇 When the content of the operation condition is "0", it means that the "operation condition element" is not set, and the message will not be transmitted even if the operation condition element is set. · The size 141b of the operation condition element 1 indicates the data size of the operation condition element 丨. When the conditions defined by the operating condition elements that have been set to the number of operating condition numbers 141 & are satisfied, the message set in the operating message 12 200525975 5 10 15 20 condition 145 is transmitted. As shown in FIG. 6, the action condition element (for example, the action condition element!) Is called by the action setting target code, the action setting characteristic code (pc) ⑷ ^, the linkage start condition 141e, the linkage start condition value size information, and the linkage start. The condition value is 141 g. Action setting target code 141. And actions The linkage start secret shows the value of the corresponding machine characteristic 151 and the value of the linkage start condition. In addition, the conditions of the Yang operation conditions are the linkage start conditions between the value of the machine special 1 and the linkage start condition value 141§ i4ie Power Transmission I According to the action message safety setting 144 and the action message information 145, the picture shows the aforementioned linkage start conditions Figure of Ule's specific example. The beneficial action message is valid and invalid flag is 142 °. The action message is effective message H5; the second means whether to transmit or not transmit the information of the currently set action message and the message of Tingbu. As shown in FIG. 8 and FIG. IT, the structure of the action message valid invalid flag 142 is shown. "B0 < No, the action message valid invalid flag 142 is IByte data, transmitted" ^ is set to "G" Day win 'Even if the action condition is established, the action of the message will not be performed. Message action ^ The valid invalid flag 142 remains In order to be independent of the action condition or the action or action: this information allows you to completely change the content of the action condition ^ message 145, and you can change the validity or invalidity of the set action conditions. ^ 着 'explains the action message configuration information 143. The figure is a diagram of a configuration example of the action message configuration information 143. As the 9th

13 200525975 圖所示’動作電文構成資訊⑷由動作電文安全設定⑷及 動料文資訊145構成,再者,動作電文資訊145由電文形 式貝Al45a傳送對象位址145b、〇Η〇資訊⑷。s〇J資訊 難、⑽資訊收、sv資訊145f、處理特性i45g、特性 - 5貧料計數器145h、處理特性1451及特性值14職成。 , 動作免文女全设定144為用以對要傳送之電文設定明 文電文形式(係未進行附加加密或機器認證所須之要旨的 資Λ之女全處理者)或已施加安全處理之安全電文形式的 資訊,就安全電文形式而言,係再設定一表示如何施加安 · 10王處理之資訊。而,前述機器認證亦可以電子簽名代替。 第忉圖係顯示動作電文安全設定144之資料構造的其 中例之圖。如第10圖所示,動作電文安全設定Η4為lbyte 之旗標’ b7及b6兩者為「1」時,表示動作電文為明文電文 形式之電文’乃將動作電文資訊144中的内容以原狀傳送。 15 b7為「〇」時,則於傳送時將動作電文資訊145之部分(或 全部)内容加密。又,b6為「〇」時,會於傳送時附加傳送 電文之家電機||與接收電文之家電機關之機器認證賴 _ 之資訊。 動作電文資訊14 5為表示動作條件成立後所傳送之電 _ 文内各的員訊。此時,動作電文資訊145之資料格式亦可為 可以原狀傳送至網路40之資料格式。 而’動作電文資訊145之基本部分為最小限度之資訊, 亦可於傳送時附加部分資訊(例如,電文長度之資訊等)。 又’動作電文資訊145之内容為任意,可為例如將自機器之 14 200525975 資料通知其它機器之電文、控制其它機器之電文或作為取 得其它機器之資料等内容之電文。 動作判定處理部120於機器特性151之值變化時,就每 一動作定義資訊140而根據動作條件141及動作電文有效盔 5效旗標142之内容來判定是否要傳送電文,並於條件成: 時,根據動作電文安全設定144之内容(需要前述安全處理 時施加該處理)對電文傳送處理部11〇委託電文之傳送。 接著’說明前述構成之家電機器控制網路系統1〇之動 作。 10 第11圖係顯示家電機器控制網路系統10之動作之通訊 時序圖。 首先,控制器50將動作定義資訊丨傳送至人體感應裝置 100 (S100) 〇 接著’人體感應裝置100於感應到人體時(S110),指 15定電文之内容(例如,用以對防盜裝置200指示「警報器ON」 之電文)(S112)。 另一方面,防盜裝置200解讀由人體感應裝置100接收 之電文内容,使「警報器」響(S113)。 接著,由控制器50對人體感應裝置100傳送有關防盜裝 20置200之警戒模式變更的動作定義資訊2後(S101),人體感 應裝置100解讀動作定義資訊2 (S120)。且,當人體感應裝 置100之感應感測器16〇之電源設為「」時,對防盜裝 置200傳送一表示「警戒模式OFF」之電文(就該電文進行 加密及認證)(S122)。 15 200525975 藉此,防盜裝置200將由人體感應裝置1〇〇接收之電文 解碼並執行機器認證(S123),將警戒模式變更為「〇FF」。 弟12圖係顯示鈾述弟11圖之動作定義資訊1及動作定 義資訊2的具體例之圖。 弟13圖係别述弟11圖之步驟122所使用之電文的具體 例之圖。 第14圖係顯示動作判定處理部12〇之處理流程之流程 圖0 首先,動作判定處理部12〇調查機器特性151之值的變 化是否滿足動作條件141 (S200)。若該動作條件141成立時 (S200 · YES),再調查動作電文有效無效旗標142之内容 是否「有效」(S201)。若動作電文有效無效旗標142之内容 為有放」日可(S201 · YES),動作判定處理部12〇依動作 電文安全設幻44之内容進行蚊之㈣(纖、幻盼 15並將該電文傳送至網路40 (S2〇4)。 (第2實施形態) 前述第1實施形態係說明 用以貫現動作連動服務3 電機為控制網路系統,而本 个貝方也形悲則就用以實現觸每 動服務之家電機器控制網路 2013 200525975 As shown in the figure, the action message composition information (consisting of the action message security setting) and the action message information 145. Furthermore, the action message information 145 is transmitted in the message form Al45a, and the destination address 145b and 〇〇〇 information⑷. s〇J Information Difficulty, ⑽ 信息 收, sv information 145f, processing characteristics i45g, characteristics-5 lean counter 145h, processing characteristics 1451 and characteristic value 14 full-time. The action-free non-female full setting 144 is used to set the plain text format for the message to be transmitted (the female full processor who does not perform the additional encryption or the key required for machine authentication) or the security for which security processing has been applied The information in the form of a message, as far as the form of a secure message is concerned, a piece of information indicating how to apply An · 10 King's processing. Moreover, the aforementioned machine authentication can also be replaced by an electronic signature. The first figure is a diagram showing an example of the data structure of the operation message security setting 144. As shown in Fig. 10, when the safety message setting 动作 4 is a lbyte flag, "b7 and b6 are both" 1 ", it means that the movement message is a message in the form of a plaintext message." Send. 15 When b7 is "0", the part (or all) of the action message information 145 is encrypted during transmission. In addition, when b6 is "0", the information of the machine authentication || The action message information 14 5 indicates the messages transmitted after the action conditions are established. At this time, the data format of the action message information 145 may also be a data format that can be transmitted to the network 40 as it is. The basic part of the 'action message information 145 is minimal information, and some information (for example, message length information, etc.) can be added during transmission. Also, the content of the action message information 145 is arbitrary, and may be, for example, a message to notify other machines of 14 200525975 data from the machine, a message to control other machines, or a message to obtain information of other machines. When the value of the machine characteristic 151 changes, the action determination processing unit 120 determines whether to transmit a message based on the content of the action condition 141 and the action message effective helmet 5-effect flag 142 for each action definition information 140, and the condition becomes: At this time, according to the contents of the action message security setting 144 (which is applied when the aforementioned security processing is required), the message transmission processing unit 11 is requested to transmit the message. Next, the operation of the home appliance control network system 10 configured as described above will be described. 10 FIG. 11 is a communication timing chart showing the operation of the home appliance control network system 10. First, the controller 50 transmits the action definition information to the human body sensing device 100 (S100). Then, when the human body sensing device 100 senses a human body (S110), it refers to the content of a predetermined message (for example, to the anti-theft device 200). Message indicating "Alarm ON" (S112). On the other hand, the anti-theft device 200 interprets the content of the message received by the human body sensing device 100 and sounds an "alarm" (S113). Then, after the controller 50 transmits the action definition information 2 about the change of the alert mode of the anti-theft device 20 to 200 to the human body sensing device 100 (S101), the human body sensing device 100 interprets the movement definition information 2 (S120). And, when the power of the inductive sensor 16 of the human body sensing device 100 is set to "", a message indicating that "alarm mode is OFF" is transmitted to the antitheft device 200 (the message is encrypted and authenticated) (S122). 15 200525975 With this, the anti-theft device 200 decodes the message received by the human body sensing device 100 and performs machine authentication (S123), and changes the alert mode to "0FF". The figure 12 is a diagram showing specific examples of the action definition information 1 and the action definition information 2 of the figure 11 of the uranium. Figure 13 is a specific example of the message used in step 122 of Figure 11. Fig. 14 shows the flow of the processing flow of the motion determination processing section 120. Fig. 0 First, the motion determination processing section 120 checks whether the change in the value of the machine characteristic 151 satisfies the operation condition 141 (S200). If the operation condition 141 is satisfied (S200 · YES), then check whether the content of the operation message valid invalid flag 142 is "valid" (S201). If the content of the action message valid invalid flag 142 is “Can be released” (S201 · YES), the action determination processing section 12 performs the mosquito killing (fiber, fantasy 15 and The message is transmitted to the network 40 (S204). (Second embodiment) The first embodiment described above is used to perform the action linkage service 3 The motor is the control network system, and this case is also sad. Home appliance machine control network for realizing touch service 20

H Β β π 峪糸統進行說明。在此,所謂 發連動服務」係指當由复 ^^ /、匕豕電機器接收之電文内容3 預先έ又疋之條件時,根據 ^ lc ^ W電文内容執行處理之服務。 第15圖係顯示本發明 貫施形態之家電機器控讳 路糸統的構成概要之圖。繁 .„ , 禾15圖所示之家電機器控制到 糸統(以下稱「本系統」)2 〇為m現觸發連動服務之系; 16 200525975 具有有線(例如電線)或無線(例如特定小電力無線)之 網路40、控制本系統20之控制器15〇、人體感應裝置1〇〇、 防盜裝置200、空調300及緊急檢測裝置4〇〇。而,以下就與 前述第1實施形態之家電機器控制網路系統10之功能構成 5 相同之功能構成賦予相同符號,並省略其說明。 第16圖係顯示本系統20之空調3〇〇的功能構成之方塊 圖。如第16圖所示,空調300具有電文接收處理部31〇、觸 發判定處理部320、定義資訊記憶部330及機器特性記憶部 350 ° 10 電文接收處理部310透過網路40接收電文並解讀其内 容。舉例言之,由其它家電機器傳送作為廣播通訊之電文 至網路40時,電文接收處理部31〇會接收該電文。接著,若 收到之電文經加密時,電文接收處理部31〇將該電文解碼, 並於需機器認證時進行認證處理。 15 觸發判定處理部320為控制空調3〇〇之通訊的部署,具 有一包含例如ROM或RAM等之CPU。再者,觸發判定處理 部320根據收到之電文内容、觸發定義資訊34〇及機器特性 351之内容決定是否根據電文内容執行處理。 定義資訊記憶部320為諸如RAM等,記憶前述觸發處理 20判定部320判定是否應實行預定處理所用之觸發定義資訊 40 〇 機器特性記憶部350為諸如RAM等,記憶機器特性 351。在此,機器特性351係指家電機器之動作内容或其狀 態等有關家電機器之資訊。 17 200525975 第17圖係顯示觸發定義資訊3 40之構成例之圖。如第17 圖所示,觸發定義資訊340由觸發處理資訊341、觸發電文 有效無效旗標342及電文構成資訊343所構成。再者,如前 述第16圖所示,觸發電文構成資訊343由觸發電文安全設定 5 344及觸發電文資訊345所構成。又,觸發定義資訊340與前 述第1實施形態之動作定義資訊140相同,分配有分類群組 碼及群組碼。再者,每一觸發動作定義資訊340分配有瞬時 碼0 收到之電文與有關觸發電文資訊345所示之接收電文 10之條件一致,且觸發電文安全設定344所示之加密有無或認 證有無等之内容與收到之電文形式一致時,判斷為「觸發 條件已成立」,觸發處理資訊341為表示觸發條件成立時所 進行之處理内容的資訊。而,觸發處理資訊341亦可設定複 數觸發條件成立時之處理。 15 第18圖係顯示觸發處理資訊341之資料構成的其中一 例之圖。觸發處理設定數341a表示後續之觸發處理要素之 數(第18圖中為「n」)。觸發處理設定數34u為「〇」時, 視為尚未δ又疋應執行之觸發處理,即使已設定觸發電文資 訊345亦不執行觸發處理。觸發處理要素丨大小為表示 2〇觸發處理要素1之資料大小的資訊。而,亦可視需要設定複 數觸發處理要素。若滿足觸發條件,即進行觸發處理設定 數341a所設定之數量(即,n個)之觸發處理。 如第18圖所示,觸發處理要素(具體而言,為觸發處 理要素1 )由目標碼(0J)資訊341c、特性碼(PC)資訊341d、 18 200525975 特性設定值大小341e及特性設定值341f所構成。特性設定 值341f為表示當觸發條件成立時,設定於〇j資訊341c及PC 資訊341d所示之機器特性的設定值等之資訊。 觸發電文有效無效旗標342為表示是否要執行觸發處 5 理資訊341所設定之觸發處理的資訊。 第19圖係顯示觸發電文有效無效旗標342之資料構成 的其中一例之圖。如第19圖所示,觸發電文有效無效旗標 342為lByte之資料,b0為「〇」時,即使觸發條件成立亦不 執行觸發處理。 10 第20圖係顯示觸發電文構成資訊343之構成例之圖。如 第20圖所示,觸發電文構成資訊343係由觸發電文安全設定 344及觸發電文構成資訊345所構成,再者,觸發電文資訊 345則係由電文形式資訊丨45a、傳送對象位址丨45b、〇hd資 訊145c、SOJ資訊H5d、DOJ資訊145e、SV資訊145f、觸發 15條件要素數345a、觸發條件要素1及觸發條件要素2所構 成。又,各觸發條件要素(例如觸發條件要素1)係由EPC 資訊345b、連動啟動條件345c、EDT大小資訊34兄及£〇丁 貝汛345e所構成。觸發電文安全設定344為表示要接收之電 文安全设定之資訊。為使觸發條件成立,收到之電文必須 2〇與有關觸發電文安全設定344所示之安全處理的設定内容 致,且觸發電文資訊345之觸發條件要素全部一致。 第21圖係顯示觸發電文安全設定344之資料構成的其 中一例之圖。為使觸發條件成立,…及⑽兩者為「丨」時, 收到之電文必須為明文電文形式。b7為「〇」時,收到的電 200525975 =已加密。又’卿°」時,收到的電文必須已附 干觸發電文資訊345係用於判定觸發條件是否成立,保持 5 10 二 =Γ、此時,即使觸發電文安全設定344之部分設定 "Μ或認證之要旨的設定,亦可保持為明文電文形 觸發蚊_345亦可將電文資訊轉絲-格構 槿二衹。又,保持為每一格構成之資訊時,不需保持格 構成内之所有資訊。The H Β β π system will be described. Here, the so-called "linked service" refers to a service that performs processing according to the content of the message ^ lc ^ W when the content 3 of the message received by the ^^ /, dagger motor is pre-processed. Fig. 15 is a diagram showing the outline of the configuration of a home appliance control system in accordance with the present invention.繁.,, The home appliance machine shown in Figure 15 is controlled to the system (hereinafter referred to as "the system") 2 is the system that now triggers the linked service; 16 200525975 has a wired (such as a wire) or wireless (such as a specific small power) Wireless) network 40, controller 15 for controlling the system 20, human body sensing device 100, anti-theft device 200, air conditioner 300, and emergency detection device 400. In the following, the same reference numerals are given to the same functional configurations as the functional configuration 5 of the home appliance control network system 10 of the first embodiment described above, and descriptions thereof are omitted. FIG. 16 is a block diagram showing the functional configuration of the air conditioner 300 of the system 20. As shown in FIG. 16, the air conditioner 300 includes a message receiving processing section 31, a trigger determination processing section 320, a definition information storage section 330, and a machine characteristic storage section 350 °. The message receiving processing section 310 receives a message through the network 40 and interprets it. content. For example, when a message for broadcast communication is transmitted from another home appliance to the network 40, the message receiving and processing unit 31 will receive the message. Then, if the received message is encrypted, the message receiving processing section 31 decodes the message and performs authentication processing when device authentication is required. 15 The trigger judgment processing unit 320 is a CPU for controlling the deployment of air-conditioning communication such as ROM or RAM. Furthermore, the trigger determination processing section 320 determines whether to execute processing based on the content of the message based on the content of the received message, the trigger definition information 34o, and the contents of the machine characteristics 351. The definition information storage unit 320 is a memory such as a RAM, and stores the aforementioned trigger process. The determination unit 320 determines whether trigger definition information should be used to execute a predetermined process. 40. The machine characteristic storage unit 350 is a memory such as a RAM and stores the machine characteristics 351. Here, the machine characteristic 351 refers to information about the operation content of the home appliance or the state of the home appliance. 17 200525975 Figure 17 is a diagram showing a configuration example of the trigger definition information 3 40. As shown in FIG. 17, the trigger definition information 340 is composed of trigger processing information 341, trigger message valid invalid flag 342, and message composition information 343. Furthermore, as shown in FIG. 16 described above, the trigger message configuration information 343 is composed of the trigger message security setting 5 344 and the trigger message information 345. The trigger definition information 340 is the same as the operation definition information 140 of the first embodiment described above, and is assigned a classification group code and a group code. In addition, each trigger action definition information 340 is assigned a transient code of 0. The received message is consistent with the conditions of receiving the message 10 shown in the relevant trigger message information 345, and the presence or absence of encryption or authentication shown in the trigger message security setting 344, etc. When the content is consistent with the form of the received message, it is judged that the "trigger condition has been established", and the trigger processing information 341 is information indicating the content of the processing performed when the trigger condition is established. In addition, the trigger processing information 341 can also set processing when a plurality of trigger conditions are satisfied. 15 Fig. 18 is a diagram showing an example of the data structure of the trigger processing information 341. The trigger processing setting number 341a indicates the number of subsequent trigger processing elements ("n" in Fig. 18). When the trigger processing setting number 34u is "0", it is regarded as a trigger processing that has not yet been performed and should not be performed. Even if trigger message information 345 is set, the trigger processing is not performed. The size of the trigger processing element 丨 is information indicating the data size of the 20 trigger processing element 1. Moreover, multiple trigger processing elements can be set as required. If the trigger condition is satisfied, the trigger processing of the number (i.e., n) set by the trigger processing setting number 341a is performed. As shown in FIG. 18, the trigger processing element (specifically, trigger processing element 1) is composed of target code (0J) information 341c, characteristic code (PC) information 341d, 18 200525975 characteristic setting value size 341e, and characteristic setting value 341f. Made up. The characteristic setting value 341f is information indicating that when the trigger condition is satisfied, the setting values of the machine characteristics shown in the 0j information 341c and the PC information 341d are set. The trigger message valid invalid flag 342 is information indicating whether to execute the trigger processing set by the trigger processing information 341. Fig. 19 is a diagram showing an example of the data composition of the trigger invalid message flag 342. As shown in Fig. 19, the trigger message valid invalid flag 342 is data of 1 Byte, and when b0 is "0", the trigger processing is not performed even if the trigger condition is satisfied. 10 FIG. 20 is a diagram showing a configuration example of the trigger message configuration information 343. As shown in FIG. 20, the trigger message configuration information 343 is composed of the trigger message security setting 344 and the trigger message configuration information 345, and further, the trigger message information 345 is composed of message form information 丨 45a, and the address of the transmission target 丨 45b. 〇hd information 145c, SOJ information H5d, DOJ information 145e, SV information 145f, trigger 15 condition number 345a, trigger condition element 1 and trigger condition element 2. In addition, each trigger condition element (for example, trigger condition element 1) is composed of EPC information 345b, linkage start condition 345c, EDT size information 34, and £ 0.00 Ding Bei Xun 345e. The trigger message security setting 344 is information indicating the message security setting to be received. In order for the trigger condition to be met, the received message must be consistent with the security processing settings shown in the trigger message security setting 344, and the trigger condition elements of the trigger message information 345 are all consistent. Fig. 21 is a diagram showing an example of the data structure of the trigger message security setting 344. In order for the trigger condition to be met, when both ... and 为 are "丨", the received message must be in the form of a plaintext message. When b7 is "〇", the received electricity is 200525975 = encrypted. When "Qing °", the received message must have attached trigger message information. 345 is used to determine whether the trigger condition is established. Keep 5 10 == Γ. At this time, even if the trigger message security setting 344 is part of the setting " M Or the setting of the gist of authentication can also be kept in the plain text form to trigger the mosquito _345. The message information can also be turned into silk-lattice hibiscus. In addition, it is not necessary to maintain all the information in the grid composition when maintaining the information for each grid composition.

觸發判定處理部32〇於電文接收處理部31()收到電文之 際’若電文已加密即變換(解碼)為日収電文形式,並於 日編電文接收處理物執行認證。接著,根據 〔文女全設定344及觸發電文資訊345判定觸發條件是 ^成立’若觸發電文有效無效旗標342有效,便執行觸發處 ί里。 接著,就如上構成之家電機器控制網路系統2〇之動 進行說明。When the message reception processing unit 31 () receives the message, the trigger determination processing unit 32 converts (decodes) the message to the daily received message format if the message is encrypted, and performs authentication on the daily message received processing object. Then, according to [Wennv's full setting 344 and trigger message information 345, it is determined that the trigger condition is ^ true '. If the trigger message valid invalid flag 342 is valid, the trigger is executed. Next, the operation of the home appliance control network system 20 configured as described above will be described.

第22圖係顯示家電機器控制網路系統2〇之動作之通訊 時序圖。 首先,控制為150將觸發定義資訊丨及觸發定義資訊2 20 傳送至空調300 (S300、S301)。 接著,當人體感應裝置100感應到人體時(S3l〇),即 生成電文(S311)。此時,人體感應裝置1〇〇視需要將電文 力u密。 另一方面,空調300由人體感應裝置1〇〇收到電文後, 20 200525975 根據觸發定義資訊將該電文解讀(解碼)並將動作模式由 「OFF」變更為「ON」(S314、S315)。 又,當緊急檢測裝置400檢測到火災或地震等緊急事故 時(S320),生成並傳送電文(S321、S322)。 5 藉此,空調3〇〇將由緊急檢測裝置400收到之電文解碼 (S323、S324),並將動作模式變更為r〇FF」(S325)。 第23圖係顯示前述第22圖之觸發定義資訊觸發定 義資訊2的具體例之圖。 第24圖係顯示觸發判定處理部32〇之處理流程之流程 10 圖0 首先,觸發判定處理部320透過網路4〇接收電文並將姜 變換(解碼)為明文形式(S400)後,調查與該電文内笔 有關之觸發條件是否成立(S401)。若觸發條件成立挺 15 20 曰(S401 : YES),再調查觸發電文有效無效旗標342之内笔 是否「有效」(S402)。觸發電文有效無效旗標342之内容為 2效」時(S搬:YES),由觸發判定處理物執行箱 發處理(S403)。 (苐3實施形態) 前述第1實施形態係說明進行動作 :=路!統,前述__說:觸:::: 豕電機态控制網路系統,而本第3實施〜 電機器控制網 行前述動作連動服務與觸發連動服務之/關就連續均 系統加以說明。 統:Fig. 22 is a communication timing chart showing the operation of the home appliance control network system 20; First, control is 150 to transmit trigger definition information 丨 and trigger definition information 2 20 to the air conditioner 300 (S300, S301). Then, when the human body sensing device 100 senses a human body (S310), a message is generated (S311). At this time, the human body sensing device 100 densely encrypts the text as needed. On the other hand, after the air conditioner 300 receives the message from the human body sensing device 100, 2005200525975 interprets (decodes) the message based on the trigger definition information and changes the operation mode from "OFF" to "ON" (S314, S315). When the emergency detection device 400 detects an emergency such as a fire or an earthquake (S320), a message is generated and transmitted (S321, S322). 5 With this, the air conditioner 300 decodes the message received by the emergency detection device 400 (S323, S324), and changes the operation mode to rFFF "(S325). Fig. 23 is a diagram showing a specific example of the trigger definition information 2 of the trigger definition information of Fig. 22 described above. Fig. 24 shows the flow of the processing flow of the trigger determination processing unit 32. Fig. 0 First, the trigger determination processing unit 320 receives a message through the network 40 and transforms (decodes) ginger into plain text (S400). Whether the trigger condition related to the pen in the message is satisfied (S401). If the trigger condition is 1520 (S401: YES), investigate whether the pen within the trigger message valid invalid flag 342 is "valid" (S402). When the content of the trigger message valid invalid flag 342 is "2 effects" (S move: YES), the trigger determination processing object performs a box sending process (S403). (苐 3 EMBODIMENT) The first embodiment described above describes the operation: = 路! 系, the aforementioned __ said: touch :::: 豕 motor state control network system, and this third embodiment ~ the machine control network The above-mentioned action linkage service and trigger linkage service will be described on a continuous average system. System:

弟25圖係顯示本實施形態之家電機器控制網路系 21 200525975 的機能構成之方塊圖。而,第25圖中,乃將前述第丨或第2 貫施形恶之家電機器加以一般化表現為節點A〜c。 如第25圖所不,節點A具有動作連動服務功能,節點B 具有動作連動服務功忐與觸發連動服務功能,而節點c則具 5有觸發連動服務功能。此時,節點B之觸發連動服務功能根 , 據由具有動作連動服務功能之節點A收到之電文執行對應 之處理,並產生用以使自節點之動作連動服務功能啟動之 狀態變化(例如,設定特定之旗標)。藉此,使節點6之動 作連動服務功能啟動,傳送用以控制節點c之電文。 鲁 10 產業上利用之可能性 本舍明之豕電機為控制網路系統可於連動設定中設定 安全通訊,藉此可使使用者安心利用連動設定,並易於設 定解除網路所連接之機器的機器連動設定,而有效運用於 家電機器等連動控制之系統。 15【圖式簡單說明】 第1圖係顯示習知豕電機器控制網路系統之功能構成 的方塊圖。 第2圖係顯示第1實施形態之家電機器控制網路系統的 構成概要之圖。 · 2〇 第3圖係顯示第1貫施形恶之控制器的功能構成之方塊 , 圖。 第4圖係顯不第1貫施形恶之人體感應裝置的功能構成 之方塊圖。 第5圖係顯不第1貫施形悲之動作定義資訊的構成例之 22 200525975 圖。 第6圖係顯示第1實施形態中動作條件之資料構造的其 中一例之圖。 第7圖係顯示第1實施形態之連動啟動條件的具體例之 5 圖。 第8圖係顯示第1實施形態之動作電文有效無效旗標的 構成之圖。 第9圖係顯示第1實施形態之動作電文構成資訊的構成 例之圖。 ίο 第ίο圖係顯示第1實施形態中動作電文安全設定之資 料構造的其中一例之圖。 第11圖係顯示第1實施形態之家電機器控制網路系統 的動作之通訊時序圖。 第12圖係顯示前述第11圖之動作定義資訊的具體例之 15 圖。 第13圖係顯示第1實施形態所使用之電文的具體例之 圖。 第14圖係顯示第1實施形態之動作判定處理部的處理 流程之流程圖。 20 第15圖係顯示第2實施形態之家電機器控制網路系統 的構成概要之圖。 第16圖係顯示第2實施形態之空調的功能構成之方塊 圖。 第17圖係顯示第2實施形態之觸發定義資訊的構成例 200525975 之圖。 第18圖係顯示第2實施形態中觸發處理資訊之資料構 成的其中一例之圖。 第19圖係顯示第2實施形態之觸發電文有效無效旗標 5 的構成之圖。 第20圖係顯示第2實施形態之觸發電文構成資訊的構 成例之圖。Figure 25 is a block diagram showing the functional structure of the home appliance machine control network system 21 200525975 in this embodiment. In Fig. 25, the home appliances of the first or second embodiment are generally expressed as nodes A to c. As shown in Fig. 25, node A has the function of action linkage service, node B has the function of action linkage service and trigger service, and node c has the function of trigger linkage service 5. At this time, the trigger linkage service function root of node B performs corresponding processing according to the message received by node A with the action linkage service function, and generates a state change (e.g., Set specific flags). Thereby, the operation linkage service function of the node 6 is started, and a message for controlling the node c is transmitted. Lu 10 Industrial utilization possibilities The electric motor for control of the network system can set secure communication in the linkage setting, so that the user can use the linkage setting with ease and easily set up the machine that disconnects the machine connected to the network The linkage setting is effectively applied to the system of linkage control of household appliances and the like. 15 [Brief Description of the Drawings] Figure 1 is a block diagram showing the functional structure of a conventional electric machine control network system. Fig. 2 is a diagram showing the outline of the configuration of the home appliance control network system of the first embodiment. · 2 Figure 3 is a block diagram that shows the functional composition of the first controller that consistently performs evil. Fig. 4 is a block diagram showing the functional configuration of the first human body sensing device for performing evils. Fig. 5 shows an example of the constitutional information of the first act of defining tragedy. 22 200525975. Fig. 6 is a diagram showing an example of a data structure of operating conditions in the first embodiment. Fig. 7 is a fifth diagram showing a specific example of the interlocking activation conditions of the first embodiment. Fig. 8 is a diagram showing the configuration of a valid message invalid flag in the operation message of the first embodiment. Fig. 9 is a diagram showing an example of the configuration of the operation message configuration information of the first embodiment. ίο # ίο is a diagram showing an example of a data structure of a safety setting of an operation message in the first embodiment. Fig. 11 is a communication timing chart showing the operation of the home appliance control network system of the first embodiment. Fig. 12 is a diagram 15 showing a specific example of the action definition information of the aforementioned Fig. 11. Fig. 13 is a diagram showing a specific example of a message used in the first embodiment. Fig. 14 is a flowchart showing a processing flow of the operation determination processing unit of the first embodiment. 20 Fig. 15 is a diagram showing the outline of the configuration of a home appliance control network system according to the second embodiment. Fig. 16 is a block diagram showing a functional configuration of the air conditioner according to the second embodiment. Fig. 17 is a diagram showing a configuration example of trigger definition information of the second embodiment 200525975. Fig. 18 is a diagram showing an example of the data structure of trigger processing information in the second embodiment. Fig. 19 is a diagram showing the structure of a trigger message valid invalid flag 5 in the second embodiment. Fig. 20 is a diagram showing a configuration example of the trigger message configuration information of the second embodiment.

第21圖係顯示第2實施形態中觸發電文安全設定之資 料構成的其中一例之圖。 10 第22圖係顯示第2實施形態之家電機器控制網路系統 的動作之通訊時序圖。 第23圖係顯示前述第22圖之觸發定義資訊的具體例之 圖。 第24圖係顯示第2實施形態之觸發判定處理部的處理 15 流程之流程圖。Fig. 21 is a diagram showing an example of the data structure of the trigger message security setting in the second embodiment. 10 Fig. 22 is a communication timing chart showing the operation of the home appliance control network system of the second embodiment. Fig. 23 is a diagram showing a specific example of the trigger definition information in Fig. 22 described above. Fig. 24 is a flowchart showing the flow of processing of the trigger determination processing section of the second embodiment.

第25圖係顯示第3實施形態之家電機器控制網路系統 的機能構成之方塊圖。 【主要元件符號說明】 1100.. .網路 1000.. .控制器 1010.. .通訊管理機構 1020···傳送條件資訊管理機構 1030.. .動作狀態資料取得機構 3000.. .家電機器 3010.. .通訊管理機構 3020.. .傳送條件保持機構 3030.. .動作狀態資料傳送管理 機構 3040…傳送條件資訊管理機構 3050.. .動作狀態資料管理機構 24 200525975 ίο...家電機器控制網路系統 40.. .網路 50.. .控制器 51.. .通訊管理部 52.. .定義資訊管理部 53.. .使用者介面部 100.. .人體感應裝置 110…電文傳送處理部 120.. .動作判定處理部 130.. .定義資訊記憶部 140.. .動作定義資訊 141.. .動作條件 141a…動作條件數 141b...動作條件要素1大小 141c···動作設定目標碼(OJ) 141d···動作設定特性碼(PC) 141e...連動啟動條件 141f...連動啟動條件值大小資 訊 141g...連動啟動條件值 142.. .動作電文有效無效旗標 143.. .動作電文構成資訊 144.. .動作電文安全設定 145.··動作電文資訊 145a...電文形式資訊 145b·.·傳送對象位址 145C...OHD 資訊 145d...SOJ 資訊 145e...DOJ 資訊 145f...SV 資訊 145g···處理特性數 145h...特性資料計數器 1451.. .處理特性 145j···特性值 150.. .機器特性記憶部 151.. .機器特性 200.. .防盜裝置 300…空調 310.. .電文接收處理部 320.. .觸發判定處理部 330…定義資訊記憶部 340.. .觸發定義資訊 341.. .觸發處理資訊 341a...觸發處理設定數 341b...觸發處理要素1大小 341C...OJ 資訊 341d...PC 資訊 341e...特性設定值大小Fig. 25 is a block diagram showing the functional configuration of the home appliance control network system of the third embodiment. [Description of symbols of main components] 1100 .. Network 1000 .. Controller 1010 .. Communication management agency 1020 ... Transmission condition information management agency 1030 .. Operation status data acquisition agency 3000 .. Home appliance 3010 .. Communication management agency 3020 .. Transmission condition retention mechanism 3030 .. Operation status data transmission management agency 3040 ... Transmission condition information management agency 3050 ... Operation status data management agency 24 200525975 ί ... Road system 40 .. Network 50 .. Controller 51 .. Communication management unit 52 .. Definition information management unit 53 .. User interface 100 .. Human body sensing device 110 .. Message transmission processing unit 120 .. action determination processing unit 130 .. definition information storage unit 140 .. action definition information 141 .. action condition 141a ... action condition number 141b ... action condition element size 1 141c ... action setting target Code (OJ) 141d ... Action setting characteristic code (PC) 141e ... Linked start condition 141f ... Linked start condition value size information 141g ... Linked start condition value 142 ... Action message valid invalid flag 143 ... action message composition information 144 ... action Message security settings 145 .. Action message information 145a ... Message format information 145b ... Transfer destination address 145C ... OHD information 145d ... SOJ information 145e ... DOJ information 145f ... SV information 145g ··· Processing characteristic number 145h ... Characteristics data counter 1451 ... Processing characteristic 145j ... Characteristics 150 ... Machine characteristics memory 151 ... Machine characteristics 200 ... Anti-theft device 300 ... Air conditioner 310. ... Message receiving processing section 320 .. trigger determination processing section 330 .. definition information storage section 340 .. trigger definition information 341 ... trigger processing information 341a ... trigger processing set number 341b ... trigger processing element 1 Size 341C ... OJ information 341d ... PC information 341e ...

25 200525975 341f·.·特性設定值 345d ...EDT大小資訊 342…觸發電文有效無效旗標 345e ...EDT資訊 343.. .觸發電文構成資訊 344.. .觸發電文安全設定 345.. .觸發電文資訊 345a...觸發條件要素數 345b...EPC 資訊 345c...連動啟動條件 350.. .機器特性記憶部 351.. .機器特性 400.. 緊急檢測裝置25 200525975 341f ... characteristic setting value 345d ... EDT size information 342 ... Trigger message valid invalid flag 345e ... EDT information 343 ... Trigger message composition information 344 ... Trigger message safety setting 345 ... Trigger message information 345a ... Number of trigger condition elements 345b ... EPC information 345c ... Interlocking start condition 350 ... Machine characteristic memory 351 .. Machine characteristic 400. Emergency detection device

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Claims (1)

200525975 十、申請專利範圍: 1. 一種家電機器控制網路系統,係具有透過網路連接之第 1家電機器與第2家電機器者,其中,前述第1家電機器具 有: 5 一事情檢測機構,係用以檢測與前述第2家電機器之 連動有關的事情者; 一電文傳送判定機構,係可根據預先設定之第1資料 來判斷是否應傳送與檢測出之前述事情有關之電文者; 一處理實施判定機構,係可根據預先設定之第2資 10 料,就前述電文判定是否應施加安全處理者;及 一電文傳送機構,係可於判定應傳送電文,且判定 應施加前述安全處理時,對前述電文施加安全處理,並 將已施加該安全處理之電文傳送至前述第2家電機器者; 而,前述第2家電機器則包含有: 15 一電文接收機構,係用以接收電文者;及 一處理機構,係用以對已受到之前述電文所施加之 安全處理進行對應之解讀,並根據該解讀之内容執行預 先規定之處理者。 2. 如申請專利範圍第1項之家電機器控制網路系統,其中 20 前述安全處理係至少包含對電文進行加密處理或對電文 附加一資訊,該資訊係代表於電文傳送側之家電機器與 電文接收側之家電機器間實施機器認証者。 3. 如申請專利範圍第1項之家電機器控制網路系統,其中 前述家電機器控制網路系統更具有一用以控制前述家電 200525975 機器控制網路系統之控制裝置,而該控制裝置則包含有: 一指示接受機構,係可由使用者接受指示者;及 一資料變更機構,係可根據接受之前述指示來變更 預先設定之前述第1資料及前述第2資料。 5 4. 一種家電機器控制網路系統,係具有透過網路連接之第 1家電機器與第2家電機器者,其中,前述第1家電機器具 有: 一事情檢測機構,係用以檢測與前述第2家電機器連 動之事情者; 10 一電文指定機構,係用以指定對應前述事情之電文 者; 一處理實施判定機構,係用以判定是否對已指定之 前述電文施加安全處理者;及 一電文傳送機構,係可於判定應施加安全處理時, 15 對前述電文施加安全處理,並將已施加該安全處理之電 文傳送至前述第2家電機器者; 而,前述第2家電機器則包含有: 一電文接收機構,係用以接收電文者; 一電文解讀機構,係用以對已接受之前述電文所施 20 加之安全處理進行對應之解讀者; 一條件判定機構,係用以判定已解讀之前述電文内 容是否與預先規定之條件一致者;及 一處理機構,係可於判定一致時,根據已接收之前 述電文内容來執行處理者。 28 200525975 5·如申請專利範圍第4項之家電機器控制網路系統,其中 前述安全處理係至少包含對電文進行加密處理或對電文 附加一資訊,該資訊係代表於電文傳送側之家電機器與 電文接收側之家電機器間實施機器認註者。 5 6· 一種家電機器,係位於網路上連接有複數家電機器之家 電機器控制網路系統中者,包含有: 一事情檢測機構,係用以檢測與其它家電機器之連 動之事情者; 一電文傳送判定機構,係可判定是否應傳送與已檢 10 測出之前述事情有關之電文者; 一處理貫施判定機構’係就前述電文判定是否應施 加安全處理者;及 一電文傳送機構,係可於判定應傳送電文,且判定 應施加前述安全處理時,對前述電文施加安全處理,並 15 將已施加該安全處理之電文傳送至前述其它家電機器 者。 7· —種家電機器,係位於網路上連接有複數家電機器之家 電機器控制網路系統中者,包含有: 一電文接收機構,係用以接收電文者; 20 一電文解讀機構,係用以對已受到之前述電文所施 加之安全處理進行對應之解讀者; 一條件判定機構,係用以判定已解讀之前述電文内 容是否與預先規定之條件一致者;及 一處理機構,係可於判定一致時,根據已接收之前 29 200525975 述電文内容來執行處理者。 8. —種家電機器控制網路方法,係於一具有第1家電機器 與第2家電機器之網路系統中,控制前述第2家電機器 者,前述第1家電機器係包含有: 5 —事情檢測步驟,係用以檢測與前述第2家電機器連 動之事情者; 一電文傳送判定步驟,係用以判斷是否應傳送與檢 測出之前述事情有關之電文者; 一處理實施判定步驟,係用以判定是否應對前述電 10 文施加安全處理者;及 一電文傳送步驟,係可於判定應傳送電文,且判定 應施加前述安全處理時,對前述電文施加安全處理,並 將已施加該安全處理之電文傳送至前述第2家電機器者; 而,前述第2家電機器則包含有: 15 一電文接收步驟,係用以接收電文者;及 一處理步驟,係用以對已受到之前述電文所施加之 安全處理進行對應之解讀,並根據該内容執行預先規定 之處理者。 9. 一種家電機器控制方法,係於一具有第1家電機器與第2 20 家電機器之網路系統中,控制前述第2家電機器者,前述 第1家電機器係包含有: 一事情檢測步驟,係用以檢測與前述第2家電機器連 動之事情者; 一電文指定步驟,係用以指定對應前述事情之電文 200525975 者, 一處理實施判定步驟,係用以判定是否對已指定之 前述電文施加安全處理者;及 一電文傳送步驟,係可於判定應施加安全處理時, 5 對前述電文施加安全處理,並將已施加該安全處理之電 文傳送至前述第2家電機器者; 而,前述第2家電機器則包含有: 一電文接收步驟,係用以接收電文者; 一電文解讀步驟,係用以對已收到之前述電文所施 10 加之安全處理進行對應之解讀者; 一條件判定步驟,係用以判定已解讀之前述電文内 容是否與預先規定之條件一致者;及 一處理步驟,係可於判定一致時,根據已接收之前 述電文内容來執行處理者。200525975 10. Scope of patent application: 1. A home appliance control network system, which has a first home appliance and a second home appliance connected through a network, wherein the first home appliance has: 5 an event detection mechanism, It is used to detect matters related to the aforementioned second-party home appliances; a message transmission judging mechanism is capable of judging whether or not a message related to the aforementioned things should be transmitted based on the preset first data; a process The implementation judgment mechanism can determine whether a security process should be applied to the foregoing message based on the pre-set second information; and a message transmission mechanism can determine when a message should be transmitted and the security process should be applied, A security process is applied to the foregoing message, and the security message is transmitted to the aforementioned second home appliance; and the aforementioned second home appliance includes: 15 a message receiving mechanism for receiving the text; and A processing mechanism is used for corresponding interpretation of the security processing imposed by the foregoing message, and The contents of the interpretation of provisions of the pre-processing is performed by the first. 2. For the home appliance control network system for item 1 in the scope of patent application, 20 of the aforementioned security processing includes at least encrypting or adding a message to the message, which represents the home appliance and message on the message transmission side. A person who implements device authentication between home appliances on the receiving side. 3. For example, the household appliance control network system of the first patent application scope, wherein the household appliance control network system further has a control device for controlling the household appliance 200525975 machine control network system, and the control device includes : An instruction receiving organization that can be used by a user to receive instructions; and a data changing organization that can change the aforementioned first data and the aforementioned second data in advance according to the aforementioned instructions accepted. 5 4. A home appliance control network system comprising a first home appliance and a second home appliance connected via a network, wherein the first home appliance has: an event detection mechanism for detecting the first home appliance and the second home appliance; 2 Those who interact with home appliances and machines; 10 A message designating agency, which designates a message corresponding to the foregoing; a processing implementation determining mechanism, which determines whether to apply a security processor to the aforementioned message; and a message The transmission mechanism is capable of applying a security process to the aforementioned message when determining that a security process should be applied, and transmitting the message to which the security process has been applied to the aforementioned second home appliance; and the aforementioned second home appliance includes: A message receiving mechanism is used to receive the message; a message interpretation mechanism is used to interpret the 20 plus security processing imposed on the previously received message; a condition judgment mechanism is used to judge the decoded message Whether the content of the foregoing message is consistent with the pre-defined conditions; and a processing agency, According to the previously described message received by the content processing is performed. 28 200525975 5. If the household appliance control network system for item 4 of the scope of patent application, the aforementioned security processing includes at least encrypting the message or attaching information to the message, the information representing the household appliance and the message transmission side Those who implement machine identification between home appliances and equipment on the message receiving side. 5 6 · A home appliance, which is located in a home appliance control network system connected to a plurality of home appliances on the network, includes: an event detection mechanism, which is used to detect the interaction with other home appliances; a message A transmission determination mechanism that can determine whether or not a message related to the aforementioned matter detected by the inspection 10 should be transmitted; a processing execution determination mechanism 'that determines whether a security processing should be applied to the foregoing message; and a message transmission mechanism, which When it is judged that a message should be transmitted and it is judged that the aforementioned security process should be applied, a security process is applied to the aforementioned message, and 15 the message to which the security process has been applied is transmitted to the aforementioned other household appliances. 7 · —A kind of home appliance, which is located in the home appliance control network system where multiple home appliances are connected on the network, including: a message receiving mechanism for receiving messages; 20 a message interpretation mechanism for The interpreter who responds to the security processing imposed by the aforementioned message; a condition determination mechanism used to determine whether the content of the previously interpreted message conforms to a pre-defined condition; and a processing agency may determine When they agree, the processor is executed according to the content of the message described before 29 200525975. 8. —A home appliance control network method, which is a network system with a first home appliance and a second home appliance, and controls the second home appliance. The first home appliance includes: 5 — Things The detection step is used to detect a person connected to the aforementioned second home appliance; a message transmission determination step is used to determine whether a message related to the aforementioned thing should be transmitted; a processing implementation determination step is used A person who determines whether or not a security treatment should be applied to the aforementioned message; and a message transmission step, which can be used to determine that the security message should be transmitted and that the security treatment should be applied, and to apply the security treatment to the message. The message is transmitted to the aforementioned second home appliance; and the aforementioned second home appliance includes: 15 a message receiving step for receiving the message; and a processing step for receiving the aforementioned message The security process imposed is interpreted accordingly, and a predetermined processor is executed according to the content. 9. A method for controlling a home appliance, which is a network system having a first home appliance and a second 20 home appliance, and controls the second home appliance. The first home appliance includes: an event detection step, It is used to detect those connected with the aforementioned second home appliance. A message designation step is used to designate the message 200525975 corresponding to the foregoing. A processing implementation determination step is used to determine whether to apply to the previously specified message. A security processor; and a message transmission step which, when it is determined that the security processing should be applied, 5 applies security processing to the aforementioned message, and transmits the security message to the aforementioned second home appliance; and 2 Household electrical appliances include: a message receiving step for receiving a message; a message reading step for interpreting a 10+ plus security process imposed on the previously received message; a condition determination step , Which is used to determine whether the content of the aforementioned message has been interpreted in accordance with the predetermined conditions; and a processing step In this case, the processor can execute the processing based on the content of the previously received message when it is determined to be consistent.
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