TW201117508A - Load control system - Google Patents

Load control system Download PDF

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Publication number
TW201117508A
TW201117508A TW099111640A TW99111640A TW201117508A TW 201117508 A TW201117508 A TW 201117508A TW 099111640 A TW099111640 A TW 099111640A TW 99111640 A TW99111640 A TW 99111640A TW 201117508 A TW201117508 A TW 201117508A
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TW
Taiwan
Prior art keywords
control
load
terminal
signal
command
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TW099111640A
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Chinese (zh)
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TWI385891B (en
Inventor
Satoshi Hirata
Shuji Matsuura
Yuji Fujita
Haruhiko Hyosu
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Panasonic Elec Works Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps
    • Y02B20/40Control techniques providing energy savings, e.g. smart controller or presence detection
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B70/00Technologies for an efficient end-user side electric power management and consumption
    • Y02B70/30Systems integrating technologies related to power network operation and communication or information technologies for improving the carbon footprint of the management of residential or tertiary loads, i.e. smart grids as climate change mitigation technology in the buildings sector, including also the last stages of power distribution and the control, monitoring or operating management systems at local level
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S20/00Management or operation of end-user stationary applications or the last stages of power distribution; Controlling, monitoring or operating thereof
    • Y04S20/20End-user application control systems
    • Y04S20/242Home appliances
    • Y04S20/244Home appliances the home appliances being or involving heating ventilating and air conditioning [HVAC] units
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S20/00Management or operation of end-user stationary applications or the last stages of power distribution; Controlling, monitoring or operating thereof
    • Y04S20/20End-user application control systems
    • Y04S20/242Home appliances
    • Y04S20/246Home appliances the system involving the remote operation of lamps or lighting equipment

Abstract

The operation terminal is configured to obtain the current state of the load when the input receiving unit of the operation terminal receives the control instruction (storage instruction) of registering the state of the load after the control terminal controls the loads L to be operated at a desired dimming level. Simultaneously, the control unit of the operation terminal stores the relationship between each the load and each the state of the load to the memory. Therefore, the nonprofessional user is also capable of registering the relationship for performing the bulk control (pattern control) easily.

Description

201117508 t、發明說明: 【發明所屬之技術領域】 本發明係關於用於控制負載之負載控制系統。特別 地,本發明係關於一種負載控制系統,其被設定成藉由操 作開關之操作而控制負載。 【先前技術】 曰本專利申請公開案第2003-037879A號揭示了 一種習 =負載控制系統。該習知負載控制系統被設定成藉助時分 多工傳輸訊號(TDM傳輸訊號)控制負載。 图12中所示’ 5亥負載控制系統包括一傳輸控制單元 複數個操作終端102、及複數個控制終端1〇3。複數 終端102被設定成透過一雙線式訊號線Ls與該傳輸 sT算早:通信。該等操作終端搬分別具有操作開關 寺專μ亥控制終端103分別被設定成控制該等照明負 載。以下,照明負载稱「負載」。 、 =雜作終端1〇2具有一個別操作終端位址。類似 :控:端103具有一個別控制終端, 二端位=^成使用該個別操作終端位址及該個別控 ’該操作終端102及該控制終端如通信。 口乂專兩控制單元100被設定成將 式之傳輸訊號%發逆1料㈣T錢3⑻悄㈣各 -同步訊號SY 線該傳輸訊號Vs包含 域SY' —模式資料應、 制資料CD、一核胞r 、次』…位址貝科AD、一控 步鮮(麵)資料CS及訊號傳回期限资。 ° 。唬SY^示該訊號傳送之開始。 示該傳輸訊號Vs之—η…”棋式貝枓MD“ 杈式。54位址資料AD用於選擇該等 4 201117508 :作终端102或控制終端103。該控制資料CD用於控制該 =負,104。該核對和資料cs用於偵測該訊號之傳輸錯 =5亥訊號傳回期限WT係一用於自該操作終端1〇2及該 控制終端1G3接收該傳回訊號(監控訊號)之時槽(dme Sbt\°叇傳輸訊號Vs等於該TDM傳輸訊號。如圖13(b)所 不’该傳輸賴Vs纖波寬度觀並隨後被發送線 在該操作終端102中,當操作終端搬辨識該傳輸訊 k Vs之位址資料AD (等於其自己的操作終端位址)時, 該操作終端102接收該控制資料CD。隨後,該操作終端1〇2 將一指示該監控f料之目誠式職發送至該傳輪 相同枝,當控制終端1〇3辨識該傳輸訊號力 立址貝料AD (等於其自己的控制終端位址)時,咳 終端則接收該控制資料CD。隨後,該控制終端⑻ς 一 指不該監控資料之目前模式崎發送至該傳輸控制單元 觸。應注意,目前模式訊號等於一透過低阻 該訊號線LS之方絲傳送之雜。 4电短接 當該傳輸控制單纟100將資料發送至所需操作線端102 傳輸控制單元100產生該傳輸訊 说此傳輪訊说包含「指示控制模式的模式 「指示所m作終端之操作終軌址或所需」 制終端位址的位址資料AD」。當該傳輸控制單元,】= 傳輸訊號VS發送至該訊號線Ls時,該操作終端搬^ 控制終端】03檢查該位址資料AD是否等於复 址。當該#作終端ι〇2或該控制終 ς己的位 ------ 201117508 103接收該控制資料CD。隨後,該操作終端1〇2或該控制 終端103在一訊號傳回期限之内傳送該監控資料。該傳輸 控制單元100比較「在該訊號傳回期限内接收到之監控資 料」與「自該傳輸控制單元1〇〇傳送之控制資料CD」。當 在該訊號傳回期限内接收到之監控資料」等同於「自該 傳輸控制單元1〇〇傳送之控制資料CD」時,該傳輸控制單 凡1〇〇辨識該控制資料CD之傳輸完成。在該控制終端1〇3 中,該控制終端103基於自該傳輸控制單元1〇()傳送之控 制資料CD,而產生負載控制訊號。該負載控制訊號係用於 控制該等負載104。隨後,該控制終端1〇3輸出該等負載控 制訊號。在該操作終端1〇2中,根據該控制資料cD,該操 作終端102輸出-顯示訊號’以控制該顯示器,以便指示 5亥顯示器顯示該負載1 〇4之狀態。 另一方面,在一正常條件下的該傳輸控制單元1〇〇被 设定成在一仿真模式(dummy mode)下定期傳送具有該模 式資料MD之傳輸訊號。此即所謂「不間斷輪詢(/__ Piling)」。在此情況下,該傳輸控制單元1〇〇存取該控制終 端103’以便請求傳回指示該負载狀態的監控資料。另一方 面’該傳輸控制單元100所存取之特定控制終端1〇3將「該 等負载已連接至某-特定控制終端1G3之狀態」發送至^ 傳輸控制單元咖。當該傳輸控鮮元⑽自轉定控制= 端103接收該負載之狀態時’該傳輸控制單幻〇〇存取對 應於該特定控制終端期之某一特定操作終端1〇2,且傳 用於顯示該負載之已連接至該控制終端1〇3狀態的控制資 201117508 以此方式’該傳輸控制單元100藉助該不間斷輪詢之 方法,而定期存取該控制終端103及對應於該控制終端1〇3 之操作終端102。 畜该刼作終端1〇2或該控制終端1〇3在該不間斷輪詢 下將特定貧訊發送至該傳輸控制單元】〇〇時,該操作終端 1〇2或該㈣終端⑻在圖13⑷中所示之仿真模式下產生 中斷訊號,其與該傳輸訊號Vs之同步訊號SY同步。隨後, 該操作終端102設定一中斷旗標〇nterruptflag),以便攔住 有關,傳輸控制單元削之資訊的傳輸與接收。當該傳輸 控制單元100收到該中斷訊號時,該傳輸控制單元1〇〇產 生該傳輸訊號。此傳輸訊號具有指示中斷輪詢模式 (.errupting polling mode)的模式資料。該傳輸訊號 亦,有該位址資料AD。該傳輸控制單元刚逐漸增加該位 址貧料AD之上半部分數位。(即,當該等位址資料具 有8位元時’逐漸增加高4位元。)隨後’該傳輸控制單 元100連、戈傳送遠傳輸訊號,同時增加該位址資料AD之 該等上半部分數位。產生該中斷訊號之操作終端碰接收 ,檢查該中斷輪詢模式之傳輸訊號中該位址資料AD之該 ^高4位元。當該操作終端1()2辨識該傳輸訊號中之位二 =AD,!高4位元等於該操作終端102之操作終端 之该寻南4位兀時’該操作終端1〇2將該操作終端位 1102之_終齡址之低4位元傳送至該傳輸控制單元 〇〇。以此方式,該傳輸控制單元刚被設定成每隔十六個 ^作終端102,搜尋產生該中斷訊號的操作終端搬。因此, 有可能在短時間内找到產生該中斷訊號之操作終端搬。 201117508 當該傳輸控制單元100獲得產生該中斷訊號之操作終 端102的位址時,該傳輸控制單元100在該監控器模式 (monitor mode)下產生具有模式資料MD的傳輪訊號,且 隨後將包含指不所獲得位址之位址資料AD的傳輸訊號 發送至該訊號線Ls。為回應該傳輸訊號Vs,該操作終端1〇2 在該訊號傳回期限WT内將該資訊發送至該傳輸控制單元 最後’該傳輸控制單元1〇〇將用於取消該中斷的吨號 發送至產生該中斷訊號的操作終端1〇2,藉此該傳輸控制單ϋ 幻〇〇解鎖該操作終端102財斷旗標。如上所述,自該 1〇2 ί該傳輸控制單元_的資訊傳輸’係藉由 而Γ成輸^制Τ⑽至該操作終端102的四次訊號傳輸 槿^第二等於仿真模式。第二次等於中斷輪詢 模式。第二次导於監控模式(_it〇 :用於取消該中斷的訊號。)當 幃Π 1Q3_作條件時,該傳輸控制單元= 堇傳达在处控資料中具有該模式資料_ 因此’當根據__S1之操作等等== 至該傳輸控制單元·==為該監控資料發送 ]。〇產生具有該控制資料傳輸控制單元 訊號Vs發送至該控制終端1〇3 ^虎=並將該傳輸 傳輸訊號時,該控制終端1〇3控應接收該 當該控制終端103接㈣傳特別地, 助將該^ίΓ1該等負載。隨後,該控制終端 皿控貝枓傳回至該傳輸控制單元⑽。織,該傳 8 201117508 =制早兀傳送具有該控織料CD的傳輸訊號%, 據所傳回之監控資料而建立。該操作終端脆開啟 ί關閉指不燈’指示該負載的操作條件,即該負載是否點 壳。該指示燈舉例說明為發光二極體等等。 , 順言之’此類型負载控制系統中之傳輪控制單元觸 儲存該開關與該等負載之該等位址之_。因此 關與複數個負載104之該等位址相關的情況中,有可 ^開關控制複數個負载刚。換言之,在“ 負載m之财位址相_情对,村能執行—批餘 制(buik control),以藉由一開關控制複數個負載⑽。^ 批I控制諸如群組控制(胸p c〇ntr〇1 )及模式控制咖 續加υ。當該傳輸控制單元則執行該群組控制時, 輸控制單元100控制複數個負載刚,以便所有負載^ 同控制狀態。另-方面,當該傳輸控制單元⑽執ς 組控制時,該傳輸控制單元⑽控制複數個負載1G4,Ζ 每-該等貞有駭控錄態。祕執行崎控= 如拉式控似群組控制)之操作終端(未顯示)具 定用於該批量控制之該等位址相_開關。狀用於ς 量控制之鱗位址諸如為群組位址(胸padd職)及^ 位址(wn add職)。然而,除該操作終端之批量油 能以外之料構造與不料執行絲量蝴 該等構造相同。 、”、而< 此外^操作用於操作終端之批量控制的開關時,該 傳輸控制單7L 1GG獲得指派給該開_位址(舉例而古,x 群組位址)。隨後,該傳輸控制單元削產生控制資料:以 201117508 用於,制複触與料群組健相_貞載。紐該傳輸 控制單7G 100按順序將該控制資料發送至該控制終端⑻。 以此方式’該傳輸控制單元可控制分組在相同组中之 該等負載。 、 【發明内容】 Μ為知負載控制系統中,該控制終端J 未被設^成直接將該傳輸訊號Vs傳送至該操作終端1〇2, 及自該操作終端102接收該傳輸訊號Vs。即,該控制終端 103被叹疋成透過該傳輸控制單元丨⑽將該傳輸訊號%傳 f至該操作終端1〇2’及自該操作終端搬接收該傳輸訊號201117508 t, invention description: TECHNICAL FIELD OF THE INVENTION The present invention relates to a load control system for controlling a load. In particular, the present invention relates to a load control system that is configured to control a load by operation of an operating switch. [Prior Art] A patented load control system is disclosed in Japanese Laid-Open Patent Publication No. 2003-037879A. The conventional load control system is configured to control the load by means of a time division multiplexed transmission signal (TDM transmission signal). The '5 HM load control system shown in Fig. 12 includes a transmission control unit, a plurality of operation terminals 102, and a plurality of control terminals 1-3. The plurality of terminals 102 are arranged to communicate with the transmission sT through a two-wire signal line Ls: communication. The operation terminals respectively have operation switches, and the temple control terminals 103 are respectively set to control the illumination loads. Hereinafter, the lighting load is called "load". , = Miscellaneous terminal 1〇2 has a different operating terminal address. Similarly, the control terminal 103 has a separate control terminal, and the two terminal bits are used to communicate with the operation terminal 102 and the control terminal using the individual operation terminal address and the individual control unit. The two-port control unit 100 is set to transmit the transmission signal % of the formula (4) T money 3 (8) quietly (four) each - synchronization signal SY line the transmission signal Vs contains the domain SY' - mode data should be, the data CD, a core Cell r, time 』...Bei Ke AD, one control fresh (face) information CS and signal return period. ° .唬 SY ^ shows the beginning of the signal transmission. Show the transmission signal Vs - η ... "Chess type 枓 枓 MD " 杈. The 54 address data AD is used to select the 4 201117508: as the terminal 102 or the control terminal 103. The control data CD is used to control the = negative, 104. The verification and the data cs are used to detect the transmission error of the signal. The WT system is used for receiving the return signal (monitoring signal) from the operation terminal 1〇2 and the control terminal 1G3. (dme Sbt\°叇 transmission signal Vs is equal to the TDM transmission signal. As shown in FIG. 13(b), the transmission Vs fiber width is viewed and then transmitted in the operation terminal 102, when the operation terminal recognizes the When the address data AD (equal to its own operation terminal address) of the transmission message k Vs is received, the operation terminal 102 receives the control data CD. Subsequently, the operation terminal 1〇2 will indicate the purpose of the monitoring material. The job is sent to the same branch of the transmission wheel, and when the control terminal 1〇3 recognizes the transmission signal force address AD (equal to its own control terminal address), the cough terminal receives the control data CD. Subsequently, the control The terminal (8) ς refers to the current mode of the monitoring data sent to the transmission control unit. It should be noted that the current mode signal is equal to a miscellaneous transmission of the signal line LS through the low impedance. 4 Electrical short circuit when the transmission control Single 纟100 sends the data to the required operation The transmission end unit 102 transmits the transmission control unit 100 to generate the transmission message saying that the transmission mode includes "indicating the mode of the control mode" indicating the address of the operation terminal of the terminal or the address address of the terminal address required by the terminal device. When the transmission control unit, ??? = transmission signal VS is sent to the signal line Ls, the operation terminal moves the control terminal 03 to check whether the address data AD is equal to the double address. When the # is the terminal ι〇2 or the Controlling the final position ------ 201117508 103 receives the control data CD. Subsequently, the operation terminal 1 or 2 or the control terminal 103 transmits the monitoring data within a signal return period. The transmission control unit 100 compares "monitoring data received during the return period of the signal" and "control data CD transmitted from the transmission control unit 1". The monitoring data received during the return period of the signal is equivalent to " When the transmission control unit 1 transmits the control data CD", the transmission control unit recognizes that the transmission of the control data CD is completed. In the control terminal 101, the control terminal 103 is based on the transmission. Control unit 1〇() The control data CD is transmitted to generate a load control signal. The load control signal is used to control the load 104. Subsequently, the control terminal 1〇3 outputs the load control signals. In the operation terminal 1〇2, according to The control data cD, the operation terminal 102 outputs a -display signal ' to control the display to indicate that the 5H display shows the state of the load 1 〇 4. On the other hand, the transmission control unit 1 under a normal condition It is set to periodically transmit a transmission signal having the mode data MD in a dummy mode. This is called "uninterrupted polling (/__ Piling)". In this case, the transmission control unit 1 accesses the control terminal 103' to request the return of the monitoring data indicating the load status. On the other hand, the specific control terminal 1〇3 accessed by the transmission control unit 100 transmits "the state in which the loads are connected to a certain-specific control terminal 1G3" to the transmission control unit. When the transmission control unit (10) self-transfer control = terminal 103 receives the status of the load, the transmission control unit phantom access corresponds to a specific operation terminal 1 〇 2 of the specific control terminal period, and is used for The control element 201117508 that displays the state of the load connected to the control terminal 1〇3 in this manner, the transmission control unit 100 periodically accesses the control terminal 103 and corresponds to the control terminal by means of the method of uninterrupted polling The operation terminal 102 of 1〇3. When the animal terminal T1 or the control terminal 1〇3 transmits a specific message to the transmission control unit under the uninterrupted polling, the operation terminal 1〇2 or the (4) terminal (8) is in the figure The emulation mode shown in 13(4) generates an interrupt signal which is synchronized with the synchronizing signal SY of the transmission signal Vs. Subsequently, the operation terminal 102 sets an interrupt flag 〇nterruptflag) to block transmission and reception of information about the transmission control unit. When the transmission control unit 100 receives the interrupt signal, the transmission control unit 1 generates the transmission signal. This transmission signal has mode data indicating the .errupting polling mode. The transmission signal also has the address data AD. The transmission control unit has just gradually increased the number of bits above the address lean AD. (ie, when the address data has 8 bits, 'gradually increase the high 4 bits.) Then 'the transmission control unit 100 connects the remote transmission signal, and simultaneously increases the upper half of the address data AD. Partial digits. The operation terminal that generates the interrupt signal touches and receives, and checks the ^4 bits of the address data AD in the transmission signal of the interrupt polling mode. When the operation terminal 1() 2 recognizes the bit 2 of the transmission signal = AD, ! When the upper 4 bits are equal to the south-facing 4 bits of the operation terminal of the operation terminal 102, the operation terminal 1〇2 transmits the lower 4 bits of the operation terminal bit 1102 to the transmission control unit. Hey. In this way, the transmission control unit has just been set to operate the terminal 102 every sixteen times to search for the operation terminal that generated the interrupt signal. Therefore, it is possible to find the operation terminal that generated the interrupt signal in a short time. 201117508 When the transmission control unit 100 obtains the address of the operation terminal 102 that generates the interrupt signal, the transmission control unit 100 generates a transmission signal having the mode data MD in the monitor mode, and then includes The transmission signal indicating the address data AD of the obtained address is sent to the signal line Ls. In order to transmit the signal Vs, the operation terminal 1〇2 sends the information to the transmission control unit in the signal return period WT. Finally, the transmission control unit 1 sends the tonnage number for canceling the interruption to The operation terminal 1 2 generating the interrupt signal, whereby the transmission control unit phantom unlocks the operation terminal 102 financial flag. As described above, the information transmission from the transmission control unit _ is transmitted to the fourth terminal of the operation terminal 102 by the transmission signal (10), and the second is equal to the simulation mode. The second time is equal to interrupt polling mode. The second is in monitor mode (_it〇: the signal used to cancel the interrupt.) When 帏Π 1Q3_ is used as a condition, the transmission control unit = 堇 communicates with the mode data in the control data _ therefore 'when According to the operation of __S1, etc. == to the transmission control unit·== for the monitoring data transmission]. 〇 generating the control data transmission control unit signal Vs sent to the control terminal 1 〇 3 ^ tiger = and transmitting the transmission signal, the control terminal 1 〇 3 control should receive when the control terminal 103 is connected (four) Help the ^ίΓ1 these loads. Subsequently, the control terminal returns to the transmission control unit (10). Weaving, the biography 8 201117508 = The transmission signal % with the control fabric CD is transmitted early, and is established based on the monitored data transmitted. The operator terminal is fragilely open ί is turned off to indicate that the load is operating condition, that is, whether the load is ablated. The indicator light is exemplified as a light-emitting diode or the like. In other words, the transmission control unit in this type of load control system touches the _ of the switch and the addresses of the loads. Therefore, in the case of being associated with the addresses of the plurality of loads 104, there are switches that control a plurality of loads. In other words, in the "load m wealth address phase _ love pair, the village can perform - buik control (buik control) to control a plurality of loads (10) by a switch. ^ Batch I control such as group control (chest pc〇 Ntr〇1) and mode control are continued. When the transmission control unit performs the group control, the transmission control unit 100 controls a plurality of loads just so that all loads are in the same control state. On the other hand, when the transmission When the control unit (10) performs group control, the transmission control unit (10) controls a plurality of loads 1G4, Ζ each of which has a control recording state. The secret execution control = such as a pull control like group control) These address phase switches that are used for the batch control are not shown. The scale addresses for the volume control are, for example, a group address (chest padd job) and a ^ address (wn add job). However, the configuration of the material other than the batch oil energy of the operation terminal is the same as the construction of the silk volume. ”, and < In addition, when the switch for batch control of the operation terminal is operated, the transmission control sheet 7L 1GG is assigned to the open _ address (for example, ancient, x group Address). Subsequently, the transmission control unit cuts the control data: used in 201117508, and the system of the composite contact group is _ 贞. The control unit 7G 100 transmits the control data to the control terminal (8) in order. In this way, the transmission control unit can control the loads of packets in the same group. [Invention] In the load control system, the control terminal J is not configured to directly transmit the transmission signal Vs to the operation terminal 1〇2, and receive the transmission signal Vs from the operation terminal 102. That is, the control terminal 103 is sighed to transmit the transmission signal % to the operation terminal 1〇2' through the transmission control unit (10) and to receive the transmission signal from the operation terminal.

Vs。此即所謂中央控制類型之負載控制系統。在該中央控 制類,之負餘㈣統中’該傳輸控鮮元1()()對用於執 订批1控制(模式控制及群組控制)之位址執行統一管理。 轉輸控制單元1GG需要登錄用於執行該批量控制 ’因為該登駐作需要—特殊設定器(未顯 :。 卩登制概行雜量㈣的義。因此,僅專 =作者能夠登錄該位址。,存在非專業使用者難 錄該位址之問題。 =發_為解決以上問職實現。本發明之目地係提 負載控業使用者能夠輕鬆登錄該批量控制之關係的 的負==载===制至少, 貞私㈣魅少包括—控制終端及 終端。該控制終端連接至該至少-負載。該操 ^透過—訊號線連接至至少“該控制料。每-該控. 201117508 ^端早獨具有—控制終端辨識瑪。每—鋪作終端單獨 端辨識螞。該控制終端包含-第-輸入接收 " 控姆置’及—第—通信裝置。該第一輸入 田:ί置具:至少—第一操作開關。該第-操作開關係以 笛二控制指令。當該第—輸人接收裝置接收該 工I a 7時,该第一控制裝置被設定成回應該第一控 制指令而㈣-預定負載。該預定負載對應於該第一控制 指令。該狀負載受該第-控制裝置控制。換言之,該預 定負載在該第-控姆置之控制之下。該操作終端具有一 第t輸入接收裝置、—記憶體、—第二控制裝置及-第二 通信裝置。該第二輪人接收裝置具有至少—第二操作開 關。該第二操作開關以用於輸入一第二控制指令。該記憶 體健存該第二控偏旨令及與㈣f訊相_之至少一控制 、、’j而辨識碼之間的關係。換言之,該記憶體儲存該第二控 制才曰與至少一控制終端辨識碼之間,以及該第二控制指 7與遠控制:貞狀間的難,藉此將該第三控制指令與至 f 一控,終端_碼及該控师助關聯。該控制資訊指 不預疋狀態。該控制資訊促使藉由該控制終端控制之該 少-負載進人該預絲態。該第二通信裝置與該第一通 k裝置通#。該第二控制裝置被設定成辨識由該第二輸入 接收裂置接收的該第二控制指令。此外,該第二控制裝置 被設定成存取該記憶體,以便獲得該控祕賴識碼及與 该第二控制指令有關的控制資訊。該第二控制裝置被設定 成產生一控制命令,用於基於一獲得之控制資訊而將該負 載控制於該預定狀態。此外,該第二控繼置被設定成自 201117508 該第二通信裝置透過該訊號線將「包含有該控制命令及獲 得控制終端辨識瑪的命令訊號」傳送至該控制終端。該控 制終端被設定成接收該命令訊號,其自該第二通信裳置透 過該訊號線經由該第一通信裝置而傳送。該控制終端被設 定成當該命令訊號之控制終端辨識碼等於該控制終端自己 的控制終端辨識碼時,根據該控制命令控制該預定負載為 該預定狀態。該第一控制裝置被設定成在一預定時刻將一 狀態訊號發送至該操作終端。該狀態訊號指示該預定負载 的目前狀態,該藉預定負載係由該控制終端控制。該第二 控制裝置被設定成辨識該預定負載的目前狀態,以便判^ 該目前狀態是否為該負載的預定狀態。當該第二輸入接收 裝置接收到該第二輸入接收裝置的儲存指令時,該第二控 制裝置被^定成將目前狀態與該控制終端辨識碼之間的關 係儲存至該記憶體。 在此情況下,非專業使用者亦能夠輕鬆登錄該批量控 制的關係。_地,料業❹者能_助以下步驟輕鬆 登錄用於批量控制之_。首先,該使用者操作該控祕 端’以便將该負載控制於—所需狀態。隨後,該 量控制的關係 之第二輸人接《置接收該控制指令於登錄該負載的 狀態。因此,有可能登錄每—該負載及每—該負載之狀能 因此’非專業使用者亦能夠輕鬆登錄用於: 好裝置被設定成傳送該狀態訊號, 狀第:rj裝置控制該負載時該預定負載的目前 紅第—控制裝置被設定成當該第二控制裝置接收該 201117508 狀態訊號時,儲存該負載的狀態,該狀態包含在該狀態訊 號中。該第二控制裝置被設定成當該第二輸入接收裝置接 收該儲存指令時,存取該記憶體,以便獲得受該控制終端 控制之負載的狀態。該第二控制裝置被設定成產生該等負 載與自該記憶體所獲得負載之狀態之間的關係,且將該關 係儲存至該記憶體。 此組態使得有可能降低在該控制終端與該操作終端之 間之流量(traffic)。 較佳地,該第二控制裝置被設定成當該第二輪入接收 裝置接收到該記憶體指令時,促使該第二通信裝置將該請 求訊號發送至該第一通信裝置。該第一控制裝置被設定成 當該第一通信裝置接收到該請求訊號時,促使該第一通信 裝置將s亥狀悲號發送至該第二通信裝置。該第二控制裝 置被設定成自該狀態訊號辨識該負載的目前狀態。該第二 控制裝置被設定成產生該負載與該負載之狀態之間的關 係。該第二控制裝置被設定成將該關係儲存至該記憶體。 在此情況下,不必儲存連接至該控制終端之負載之狀 態。因此,此組態使得有可能降低該記憶體之空間耗用量。 較佳地,該第二控制裝置被設定成當該第二操作開關 操作於一第一期間時,偵測第一操作輸入。該第二控制裝 置被設定成當該第二操作開關操作於一第二期間時,偵測 弟一操作輸入。δ玄第一期間長於該第一期間。該控制裝置 被設定成存取該記憶體、及去獲得對應於該第一操作輸入 的控制終端辨識碼。該控制裝置被設定成產生用於控制該 負載的控制命令。該控制裝置被設定成產生具有該控制命 13 201117508 f及該控制終端辨躺之控制訊號 ,該控制終端辨識碼自 該記憶_得。該控健置被設定成透過該喊線將該控 制喊發送至馳制終端。該第二控職置被設定成當該 控制終端接收該第二操作輸人時’賴由該控制終端控制 之負载的狀態。該第二控難置被設定成產生該每一負載 與該負載之每-狀態之間的關係。該第二控制裝置被設定 成將該關係儲存至該記憶體。 &使用此組態’該操作開關具有用於控制該負載的功 能’且亦具有用於登錄該負載的功能。此外,有可能防止 該登錄及該㈣同時進行。 们祕止 ㈣較Ϊ=該操作終端連接至少一由該操作終端控制的 笛 田“第―輸人接收裝置接收該第二控制指令時,該 載y工制裝置被設定成控制受該操作終端控制的該等負: 在I 2用此、域,有可能藉助該操作終端之操作,直接# 制連接至該操作終端之負載。 罝接控 【實施方式】 明 輸。因此 輸系統。 用二圖式說明負载控制系統。以下實施例使 此’該負載控_可利用封包傳輸之外的其= (第一實施例) m顯示此實施例的負载 控制系統包括複數個控参端 :|〜例的負载 J、鸲1、稷數個操作終端2。特別 J4 201117508 地,本實施例的負載控制系統包括四個 作終端。每-該控制終端連接至該等負載及兩個操 被設定成透過該訊號線與該等操作終端^制終端1 例中,該等負载L藉由電連接至該商 ^。在此貫施 之照明負載來舉例說明。然而,本發=(交流源) 不僅能夠控制該等照明負載L,亦 負載控制系統 氣機、風扇、及電職簾,料。料他元件,諸如冷 此實施例的負載控制系統包括 地’此實施例的負載控制系統包括該等 1C及1D。該控制終端1A具有一摔作門p而 、Vs. This is the so-called central control type of load control system. In the central control category, the transmission control unit 1()() performs unified management on the address used to execute the batch 1 control (mode control and group control). The transfer control unit 1GG needs to log in for performing the batch control 'because the boarding is required—the special setter (not shown: 卩 概 概 概 ( 四 四 四 四 四 四 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 Address: There is a problem that it is difficult for a non-professional user to record the address. = _ _ to solve the above problem realization. The purpose of the present invention is to provide a load control industry user can easily log in the negative control relationship of the negative == Load === system at least, smuggling (4) Charm less includes - control terminal and terminal. The control terminal is connected to the at least - load. The operation through the signal line is connected to at least "the control material. Each - the control. 201117508 The terminal has the same function as the control terminal. Each terminal is identified as a separate terminal. The control terminal includes a -first input receiving " control device' and a first communication device. The first input field: Setting: at least - a first operation switch. The first operation opening relationship is controlled by a flute two. When the first input receiving device receives the work I a 7, the first control device is set to be the first Control command and (4) - predetermined load. The predetermined load corresponds to the first control command. The load is controlled by the first control device. In other words, the predetermined load is under the control of the first control device. The operation terminal has a t-th input receiving device, a memory, a second control device, and a second communication device. The second wheel human receiving device has at least a second operation switch. The second operation switch is for inputting a second control command. The second control method and the relationship between the at least one control, and the identification code of the (4) f. In other words, the memory stores the second control between the second control and the at least one control terminal identification code And the second control finger 7 and the remote control: the difficulty of the situation, whereby the third control command is associated with the f-control, the terminal_code and the controller. The control information refers to the unpredicted state. The control information causes the less-load controlled by the control terminal to enter the pre-wire state. The second communication device communicates with the first pass device. The second control device is configured to recognize the first The second input receives the first received by the split In addition, the second control device is configured to access the memory to obtain the secret control code and control information related to the second control command. The second control device is configured to generate a a control command for controlling the load to the predetermined state based on an acquired control information. Further, the second control relay is set to be "included" by the second communication device through the signal line from 201117508 And obtaining a command signal for controlling the terminal to identify the terminal to be transmitted to the control terminal. The control terminal is configured to receive the command signal, and the second communication device is transmitted through the signal line via the first communication device. The terminal is configured to control the predetermined load to be the predetermined state according to the control command when the control terminal identification code of the command signal is equal to the control terminal identification code of the control terminal. The first control device is configured to transmit a status signal to the operator terminal at a predetermined time. The status signal indicates the current status of the predetermined load, and the borrowed predetermined load is controlled by the control terminal. The second control device is configured to recognize the current state of the predetermined load to determine if the current state is a predetermined state of the load. When the second input receiving device receives the storage instruction of the second input receiving device, the second control device is determined to store the relationship between the current state and the control terminal identification code to the memory. In this case, non-professional users can also easily log in to the batch control relationship. _, the industry leader can help the following steps to easily log in for batch control _. First, the user operates the control terminal to control the load to the desired state. Subsequently, the second input of the relationship of the quantity control is connected to the state of receiving the control instruction to log in to the load. Therefore, it is possible to log in every load and every load of the load so that the non-professional user can also easily log in for: the good device is set to transmit the status signal, and the rj device controls the load. The current red-control device of the predetermined load is set to store the state of the load when the second control device receives the 201117508 status signal, the state being included in the status signal. The second control means is arranged to access the memory when the second input receiving means receives the store command to obtain a state of the load controlled by the control terminal. The second control device is configured to generate a relationship between the loads and the state of the load obtained from the memory and to store the relationship to the memory. This configuration makes it possible to reduce the traffic between the control terminal and the operating terminal. Preferably, the second control device is configured to cause the second communication device to transmit the request signal to the first communication device when the second wheel-in receiving device receives the memory command. The first control device is configured to cause the first communication device to transmit a smear to the second communication device when the first communication device receives the request signal. The second control device is configured to recognize the current state of the load from the status signal. The second control device is configured to generate a relationship between the load and the state of the load. The second control device is configured to store the relationship to the memory. In this case, it is not necessary to store the state of the load connected to the control terminal. Therefore, this configuration makes it possible to reduce the space consumption of the memory. Preferably, the second control device is configured to detect the first operational input when the second operational switch is operated for a first period. The second control device is configured to detect an operation input when the second operation switch is operated for a second period. The first period of δ 玄 is longer than the first period. The control device is configured to access the memory and to obtain a control terminal identification code corresponding to the first operational input. The control device is configured to generate a control command for controlling the load. The control device is configured to generate a control signal having the control command and the control terminal recognizing, the control terminal identification code being derived from the memory. The control device is set to send the control call to the self-service terminal through the shouting line. The second control position is set to a state of the load controlled by the control terminal when the control terminal receives the second operation input. The second control difficulty is set to produce a relationship between each load and each state of the load. The second control device is configured to store the relationship to the memory. & Use this configuration 'The operation switch has a function for controlling the load' and also has a function for logging in to the load. In addition, it is possible to prevent the login and the (4) from proceeding at the same time. (4) Compared with the operation terminal, when the operation terminal is connected to at least one of the flutes controlled by the operation terminal, the first input device receives the second control command, the load device is set to be controlled by the operation terminal. The negative: In I 2 use this, the domain, it is possible to directly connect to the load of the operation terminal by means of the operation of the operation terminal. 罝 Connection control [Embodiment] Clear transmission. Therefore, the transmission system. The following describes an embodiment of the load control system. The following embodiment makes this load control_other than the packet transmission = (first embodiment) m shows that the load control system of this embodiment includes a plurality of control terminals: | The load J, 鸲1, 稷 number of operating terminals 2. In particular, J4 201117508, the load control system of the present embodiment includes four terminals. Each control terminal is connected to the load and two operations are set to pass through. In the example of the signal line and the terminal terminals, the load L is electrically connected to the quotient. The lighting load is exemplified here. However, the present invention (the communication source) can not only Control these lighting Load L, also load control system gas machine, fan, and electric curtain, material, such as cold load control system of this embodiment includes the load control system of this embodiment including the 1C and 1D. The control terminal 1A has a falling door p,

_用於輸入控制指令。該控二:第該^開 f。該控制終端被設定成控制該負載指 :亥控制終端1A。因此,直接連接至該控制终端 J Μ控制。該控制她具有-個別^ 乙。外规雜作開關SU操作時打開或關閉該等負载 之該Ϊ負Γ設定成控制直接連接至該控制終端出 都 二 此,直接連接至該控制終端ΙΒ之該等負 爱,終端1Β控制。該控制終端ίΒ具有複數個(尤 數_)操作開關S21及S22。該控制終端ΐβ連接心 負# Τ ’兩㈣_於該等操作開關S21及S22的 兮i品/。雜制終端1B亦具有—個別照明魏,其可在 ‘ ,及S22操作時單獨打開或關閉該等照明元 也“工1終端1C具有操作開關S3]、S32及S33。該控_ is used to input control commands. The control two: the first ^ open f. The control terminal is set to control the load finger: the control terminal 1A. Therefore, it is directly connected to the control terminal J Μ control. The control she has - individual ^ B. When the external control switch SU is operated, the load is turned on or off, and the load is set to be directly connected to the control terminal, and directly connected to the control terminal, and the terminal 1 is controlled. The control terminal has a plurality of (extraordinary) operating switches S21 and S22. The control terminal ΐβ connects the core negative # Τ ’ two (four) _ to the operation switches S21 and S22. The miscellaneous terminal 1B also has an individual illumination Wei, which can individually turn on or off the illumination elements during operation of ', and S22. The "work 1 terminal 1C has operation switches S3], S32, and S33.

控=f被奴成控制該負载L,該負載L直接連接至‘ 、:鳊】C。因此,直接連接至該控制終端lc的負載L J5 201117508 夂該控制終端lc控制。該 、 開關S31操作時,打開兮1知1C被設定成當該操作 當該操作開_操作;,二;収被設定成 反’該控制終端1(:被 X貞載£之光輸出。相 變該等負载L之光輸出1成虽該操作開關S33操作時,改 =力月匕,可在該操作開闕 === 輸出。該控制終端1D具有 :作時改受負載之光 控制終端m被設定成^=\關S41、S42及⑷。該 該控制終端因此,直接、車該負載L直接連接至 l受該控制終端 ^接至該控制終端m之負載 作開關S41摔作時,^ ' 〃控制終端1D被設定成當該操 :r 操作 改變該該操作開關如“時°, 於編〜 域出。即,該控制終端出具有-調# 光輪出Γ庫2開關S42或S43操作時改變負载之 「控制“ i ,該控制終端1A至1D統稱為 於第-操^關外,該控制終端1之該等操作開關相當 纹㈤、反。亥等操作終端2不連接至該等負载。兮箅極你 ==雜數個操作按鈕S51至S53或:二作 令之二包二2被設定_過該訊號線U將包含-控制命 載將由該^控制終端1控制該等負載,該等負 收到_ ^ 制。換言之,#料控制終端1接 Μ封包時,财祕端!控齡雜制終端 16 201117508 下之負載。即,該等操作終端2 ι 允許該等控制終端1之至少―者彳广端控制功能,其 控制之該等負載。 ’错由該等控制終端i 該等控制終端1與該等操作終 板安裝於諸如建築之壁上。 框架及-面 圖2顯示該控制終端i之電路 有圖4⑻之格式之封包轉換 錢後以㈣編碼之封包調變為數位編碼封包^ 赠,單元12_數位編碼封包發送至該訊號線 ^ t該喊通信早70 12自該職線Ls接收該數位編碼 封A ’該喊通信單元12被設定成對該數位編碼封包進 打解調及解碼。隨後,該峨通信單元12基於單獨指派給 母-該控祕端1之控翁_麵,顿絲源及目的 地。應注意’可使用-硬體所獨有之實體位址作為該控制 終端辨識碼。硬體所獨有之實體位址舉例說明可為藉由該 硬體之製造商指派的MAC位址,。此外,亦可使用由使用 者任意指派之位址作為該控制終端辨識碼。即,僅要求該 專控制終端辨識碼及該等操作終端辨識碼之每一者不等於 其他控制終端辨識碼及該等操作終端辨識碼。自該等控制 終端1及該等操作終端2傳輸之封包具有一資料,諸如一 用於建立該同步之前文、一用於設定該資料之類型的控制 位元、一目的地位址、一源位址、一控制命令及一核對和。 該負載控制系統藉助CSMA/CD (載波感測多重存取/碰撞 偵測)而使用多重傳輸。應注意,該通信單元12相當於該 第一通信裝置。該通信單元12被設定成與該通信單元22 17 201117508 通信,如下所述。 該輸入接收單元11被設定成監控該等操作開關S11等 等之操作條件。當該操作開關S11操作時,該輸入接收單 凡11接收一第—控制指令。隨後,該輸入接收單元1丨輪 出對應於該第一控制指令之操作訊號。應注意,該等操作 開關S11等等藉由一按.紐開關及一用於按下該按紐開關的 操縱桿(未顯示)來實現。舉例而言,該按鈕開關具有一 =開之觸點。當該按鈕開關未按下時,該觸點是被打開的, ,此該開關具有打開狀態。當該按鈕開關按下時,該觸點 疋被閉合的,藉此該開關具有關閉狀態。即,根據該按紐 開關之接通顿開’該輸人接收單元11顺經由該操作開 關S11之操作輸入。應注意’該輸入接收單元n相當於該 第一輸入接收單元。 。亥控制單元】0具有一中央處理器,中央處理器充當該 控,器10之-主要組件。該控制單幻〇接收自該輸入接 收单元11輸出之操作訊號。隨後,該控制單元1〇產生對 :於所接收彳呆作訊號的控制訊號。然後,該控制單元11將 工制況號备送至该負載作業單元14。該控制終端1A及 之負載作業單元M被設定成根據該控制訊號,開始或 二止自該_ AC電源將電力供應至該負載。該控制終端 及1D之負載作業單元丨4亦被奴成根據該控制訊號開 2停止自該商用AC電源將電力供應至該負載。此外,該 =,端以1D之負載作業單元14被設定成根據該控 旦“虎而調整每單位時_供應至該等負載l之電功率 里。因此’該控制終端1C及1D之負載作業單元14被設定 201117508 η:!自該等負載l輸出之光量。啟動或停止供應 ”士工I错助K繼電器而實現。類似地’調整每單 等負载之電功率量的功能’係藉由相位控 t方ί貫現’該相位控制系統藉由-亦習知之三相交 ::開關:貫:見。:此,纽省略該繼電器及該三相交流開 e之、㈣。應注意,該控解元1G相當於該第 一控制裝置。因此’該控制單元10定義該第-控制裝置。 §亥記憶體13藉由為電可重寫式(electrically rewritable ) ^非揮ϋ半導體讀、體而被實現。該域體】3諸如為電 ,可,編程唯讀記憶體(贿〇Μ)及快閃記憶體 (flash _ory)。該記憶體13儲存該多點傳送位址、用於 辨識複數個負載L之負載辨識碼等資訊。然而,當每一該 具有指派之個別控制終端辨識碼時,每一記憶 传以用IT祕端自己的㈣終端賴碼。鶴示器15 “ = 端1㈣之該等負载L的操作 ^明 5具有光發射元件_等等(以咖舉 ° )及用於驅動該光發射元件之驅動電路(未 =器15禮嫩咖· 二 打開或關閉戎等光發射元件。應注意,如圖i中所 不’該等祕射元件崎成與各自操糊關_ :::辦應於該相鄰光發射元件LD11的該操作開關如。 自該商用AC電源接收該AC電並將ac電轉換 兩(直流)電以用於操作每一單元。 、 終^下朗該控制終端1之操作,該操魅制由該控制 、而己控制的該等負載。當操作該操作開關Sl時,該輸 19 201117508 入接收單元η接收該第-控制指令。當接收該第_ 令時,該輸入接收單元11產生該操作訊號,並將該操作^ 號發送至該㈣單元1G。當該㈣單元Η) 該操作訊號 時’該控制單元1〇在該操作訊號之基礎上產生該控制^ 號’並將該控制訊號發送至該負載作業單元14。該控制訊 號反轉該負載L之狀態。當該負載作業單元14自該控制單 元10接收該控制訊號時,該負载作業單元14在該^制訊 號之基礎上關或打開該繼”,以便反轉該_ L工之摔 作狀態。(當該負載L處於打開狀態時,該負載作業單元二 打開該繼電器’以便在接收到該控制訊號時關閉該負載l。 相反,當該負載L處於關閉狀態時,該負載作業單元14關 閉該繼電5 ’以便在接收到該控制喊時打開該貞载L。) 此外,在該控制單元1〇將該控制訊號發送至該負载作業單 凡14之後,該控制單元1〇將該控制訊號發送至該顯示器 15,以便該顯示器15在接收到該控制訊號時反轉該光發射 疋件LD11之狀態。(當該光發射元件LDn處於打開狀熊 時,該顯示器關閉該光發射元件LD11。相反,當該光發射 疋件LD11處於關閉狀態時,該顯示器打開該光發射元件 LDlh )在該控制終端m中,當操作一開關幻丨時,該 負載L及對應於該開關S21之光發射元件之一者的狀態^ 轉。相反,操作一開關S22,該負載L及對應於該開關=22 之光發射元件之一者的狀態反轉。 在該等控制終端1C及1D中,當操作該等操作開關S31 及S41時,該等負載L及對應於該操作開關S31、S4i之光 發射元件LD31及LD4】之狀態反轉。此外,當該等操作開 20 201117508 =S32及S42操作,同時該負載4於_ =!號=二接收單元11傳送至該控制單元ϊ〇Χ 制早兀U)接收該操作訊號時,該控制單元ι〇 ^亥控 加該負載L之光輸出的控制訊號。根據用於增加該=增Control = f is slaved to control the load L, and the load L is directly connected to ‘ , :鳊 C. Therefore, the load L J5 201117508 directly connected to the control terminal lc is controlled by the control terminal lc. When the switch S31 is operated, the opening 知1 knows that 1C is set to be the operation when the operation is turned on, and the second is set to be opposite to the control terminal 1 (the light output by the X 贞. The light output 1 of the load L is changed to become the power switch when the operation switch S33 is operated, and the operation can be opened at the operation ===. The control terminal 1D has a light control terminal that is changed to the load during operation. m is set to ^=\OFF S41, S42 and (4). Therefore, the control terminal directly connects the load L to the load S41 which is connected to the control terminal m by the control terminal. ^ ' The control terminal 1D is set such that when the operation: r operation changes the operation switch such as "time °, in the edit ~ field out. That is, the control terminal has - adjust # light wheel out of the library 2 switch S42 or S43 In the operation, the "control" i of the load is changed, and the control terminals 1A to 1D are collectively referred to as the first operation, and the operation switches of the control terminal 1 are equivalent to the five (5), reverse, and the operating terminal 2 is not connected to the operation terminal 2 Load. Bungee you == miscellaneous operation buttons S51 to S53 or: two orders two bags two 2 are set _ over the The line U will contain the control load and the control terminal 1 will control the load, and the negative reception will be received. In other words, when the material control terminal 1 picks up the packet, the financial terminal! 16 The load under 201117508. That is, the operating terminals 2 ι allow at least one of the control terminals 1 to control the load, which is controlled by the control terminals i. And the operation end plates are installed on the wall of the building, for example. The frame and the surface diagram 2 show that the circuit of the control terminal i has the packet of the format of FIG. 4 (8), and the packet is converted into a digital coded package by the (4) coded package. The unit 12_digital coded packet is sent to the signal line. The call communication is early 70. The digital coded seal A is received from the line Ls. The call communication unit 12 is configured to demodulate the digital coded packet. Decoding. Subsequently, the UI communication unit 12 is based on a separate source assigned to the parent, the source, and the source. It should be noted that the physical address unique to the hardware can be used as the Control terminal identification code. The physical position unique to the hardware The address example may be a MAC address assigned by the manufacturer of the hardware. In addition, an address arbitrarily assigned by the user may be used as the control terminal identification code. That is, only the dedicated control terminal identification code is required. And each of the operation terminal identification codes is not equal to the other control terminal identification codes and the operation terminal identification codes. The packets transmitted from the control terminals 1 and the operation terminals 2 have a data, such as one for establishing The synchronization is preceded by a control bit for setting the type of the data, a destination address, a source address, a control command, and a checksum. The load control system utilizes CSMA/CD (carrier sensing multiple memory). Use multiple transmissions for fetch/collision detection. It should be noted that the communication unit 12 is equivalent to the first communication device. The communication unit 12 is configured to communicate with the communication unit 22 17 201117508 as described below. The input receiving unit 11 is set to monitor operating conditions of the operation switches S11 and the like. When the operation switch S11 is operated, the input receiving unit 11 receives a first control command. Subsequently, the input receiving unit 1 rotates an operation signal corresponding to the first control command. It should be noted that the operation switches S11 and the like are realized by a push button switch and a joystick (not shown) for pressing the button switch. For example, the push button switch has a = open contact. When the button switch is not pressed, the contact is opened, and the switch has an open state. When the button switch is pressed, the contact 疋 is closed, whereby the switch has a closed state. Namely, the input receiving unit 11 is input in accordance with the operation via the operation switch S11 in accordance with the ON/OFF of the button switch. It should be noted that the input receiving unit n corresponds to the first input receiving unit. . The control unit 0 has a central processing unit, and the central processing unit functions as the main component of the control unit 10. The control unit phantom receives the operation signal output from the input receiving unit 11. Subsequently, the control unit 1 generates a control signal for the received signal. Then, the control unit 11 supplies the work condition number to the load work unit 14. The control terminal 1A and the load operating unit M are set to supply power to the load from the _AC power source based on the control signal. The control terminal and the 1D load operating unit 丨4 are also slaved to stop supplying power from the commercial AC power source to the load according to the control signal. In addition, the load operation unit 14 with the 1D end is set to be in accordance with the control of the tiger. The power supply to the load 1 is adjusted per unit time. Therefore, the load operation unit of the control terminals 1C and 1D 14 is set 201117508 η:! The amount of light output from these loads l. Start or stop the supply "Shigong I wrong K relay to achieve. Similarly, the function of adjusting the amount of electric power per load is performed by the phase control system. The phase control system is also known by the three-phase cross-talk: see: see. : This, New Zealand omits the relay and the three-phase AC open (4). It should be noted that the control element 1G is equivalent to the first control means. Therefore, the control unit 10 defines the first control device. The memory 13 is realized by being electrically rewritable and non-volatile semiconductor read and body. The domain body 3 is such as electricity, can, programming read-only memory (bribe) and flash memory (flash _ory). The memory 13 stores information such as the multicast address, a load identification code for identifying a plurality of loads L, and the like. However, when each of the individual control terminal identification codes has an assignment, each memory is transmitted using the IT secret terminal's own (four) terminal. Operation of the loader 15 " = end 1 (four) of the load L ^ 5 has a light-emitting element _ and so on (to the coffee) and the drive circuit for driving the light-emitting element (not = 15 · Two open or close the light-emitting elements such as 戎. It should be noted that, as shown in Figure i, the singular elements are smeared and smeared _:: the operation of the adjacent light-emitting element LD11 The switch receives the AC power from the commercial AC power source and converts the ac power into two (direct current) power for operating each unit. The operation of the control terminal 1 is controlled by the control, And the load that has been controlled. When the operation switch S1 is operated, the input 19 201117508 receives the first control command from the receiving unit n. When receiving the third command, the input receiving unit 11 generates the operation signal, and Sending the operation ^ number to the (4) unit 1G. When the (4) unit Η) the operation signal, the control unit 1 generates the control number based on the operation signal and sends the control signal to the load Job unit 14. The control signal reverses the state of the load L. When the load Industry unit 14 from the control unit 10 receives the control signal, the unit load work or open the relay 14 off the base system ^ number of the information "to reverse the fall as the state of work _ L. (When the load L is in the open state, the load working unit opens the relay 'to close the load 1 when the control signal is received. Conversely, when the load L is in the closed state, the load working unit 14 turns off the load Relay 5' to open the load L when receiving the control call.) Further, after the control unit 1 sends the control signal to the load job ticket 14, the control unit 1 selects the control signal The display is sent to the display 15 so that the display 15 reverses the state of the light-emitting element LD11 upon receiving the control signal. (When the light-emitting element LDn is in an open-like bear, the display turns off the light-emitting element LD11. Conversely, when the light-emitting element LD11 is in a closed state, the display turns on the light-emitting element LD1h) at the control terminal m In the operation of a switch illusion, the load L and the state of one of the light-emitting elements corresponding to the switch S21 are turned. In contrast, by operating a switch S22, the state of the load L and one of the light-emitting elements corresponding to the switch = 22 is reversed. In the control terminals 1C and 1D, when the operation switches S31 and S41 are operated, the states of the loads L and the light-emitting elements LD31 and LD4 corresponding to the operation switches S31 and S4i are reversed. In addition, when the operations are 20 201117508 = S32 and S42 are operated, and the load 4 is transmitted to the control unit by the _ = ! number = 2 receiving unit 11 to receive the operation signal, the control is performed. The unit ι〇^Hai control adds the control signal of the light output of the load L. According to the increase of the = increase

之光輸出的控制訊號,該負載作業單元14控制^、載L 路,以便增加每單位時間供應至該負載Μ 動電 外,當該操作開關S33或S43操作,同時該負戴&。此 開狀態時,該輸入接收單元„將該操作訊號發送至=打 f元:。當該控制單元10接收該操作訊號時,該控;;?制 1〇輸出該控制訊號以驗降低每單位時間供應至元The light output control signal, the load operation unit 14 controls the L-channel to increase the supply to the load pulsation per unit time, when the operation switch S33 or S43 operates, and the negative wear & In the open state, the input receiving unit sends the operation signal to the =f element: when the control unit 10 receives the operation signal, the control unit outputs the control signal to reduce the unit per unit. Time supply to yuan

之電功率量。根據用於降低供應至該負載l ^ L ,制訊號,該負載作業單元14控制該驅動電路,以便^的 母單位時間供應至該負載L之電功率量。此等操^降= ,當該負載L處於打開狀態時。“,並不限於此。即仃此 寺操作能夠執行於當該負載L處於關閉狀態時。在此 下,當該等操作開關S32、S42、S33及S43之-者操 同時该負載L處於關閉狀態時,該等負載作業單元14控 該驅動電路,以便打開該負載L。隨後,根據該操作严:關 S32、S42、S33及S43之-者之操作,該負載作業單元14 增加或降低每單位時間供應至該負載L之電力。此外,較 佳地,當該操作開關S31或S41操作時,該控制單元1〇被 :又定成將5亥負載L之調光位準館存至該記憶體,以便關閉 載L。在此情況下,該控制單元10被設定成自該記憶 體續出該調光位準’且控制該負載作業單元14,以便該負 載L在儲存於該記憶射之調綠準輸出光。在此情況下, 201117508 有可能在該最後-調光位準立即重新啟動該負載l。 ' 圖3顯示該操作終端2之電路方塊圖。如圖3中所示, 該操作終端2包括-控制單元2()、—輸人接收單元21、— 訊號通信單元22、-記憶體^、―顯示㈣及—電源以 該訊號通信單元22被設定成將該封包(如圖4⑷中所 轉換為編碼,且隨後被設定成將該編碼之封包調變為 位編碼封包。然後’該簡通信單元22透财訊號線Ls 傳送該數位編碼封包。此外,當該訊號通信單元22接收今 數位編碼封㈣,魏贿信單元22解财 ^ 編碼封包中的辨識碼,藉此該訊: #早疋22辨識來源及目的地。應注意,該通信單元 第^通信裝置。Μ ’該通信單元22定義該第二通 S52該21被設定成監控該等操作開關S51 ' 2、S53、S61及S62的操作條件。當該等操作 操作時,該輸人接收單元21接收—控制指令。 =51操作時,產生控制指令。當該等“ 作時產生之控制指令定義一第二控制指 私 關s51的操作,該輸入接收單元21接收操作開 ,該輸入接收單元21輪出對應於該控制:二二 戒。應注意,該等操作開關S51等等係藉由—按 :提供以麟按下該触_之触桿(未絲)’ ^。 舉例而言,該按紐開關具有—常開之觸點。當ϋ 未按下時’該觸點為打開的,藉此該開關具有幵& 當該按紐瞧下時’職綠的,㈣^有 22 201117508 關閉狀即’根據該按紐開關之接通或_開,該輸入接 收單元21辨識經由該等操作開關S51的操作輸入。應注 意,該輸入接收一單元21相當於一第二輸入接收裝置 。因此, 該輸^接收^元21定義該第二輸人接收裝置。 該控制單元2G具有充當該控鮮元20之-主要組件 之中央處理Β。° δ讀人接收單元21接收該第二控制指令 時’該輸人接收單元21傳送對應於該第二控制指令的操作 單元2〇接收自該輸入接收單元21細^ 11辟元2G產生職於所接收操作訊號 ’卫彳〒7。该記憶體23藉由電可重寫式之非揮發性半導 體記憶體來實現。該記憶體13諸如為eepr()m及快閃記 憶體。該記憶體23儲存該等控制終端辨識碼、該多點傳送 SI二L其:己以外之該等操作終端辨識碼,及根據該批 等操作開關如之-群組或一型樣(如以下所述)^方^ 等控制終端辨識碼」、「該多點傳送位址」及「除並自己^ ===識碼」的資訊,係被用於迦制該 j載L的批讀制’該等負載L受該控制終端丨控制且 亦屬於該控制終端1。應注意,該控制單元20相當於該第 -控制裝置。因此’該控制單元2G定義該第二控制裝置。 ▲該顯不器2 4係以用於顯示受該控制終端i控制、屬於 该控制終端1及對應於該操作開關S5l之該等負載l 作條件。該顯示器24包括光發射元件ω5卜咖2、咖3'、、 =61及_ (藉由LED舉例說明),及—驅動 射讀之軸祕(麵示)。#轉雜量㈣(諸如群 23 201117508 組控制及模式控制)被控制的所有該等負載L處於打開狀 態時’該驅動電路在自該控制單元2G接收到該控制訊號傳 运時該等負載L。當根據該批量控制(諸如群組控制 及模式控制)被控制之的該等負載L之至卜者處於打開 狀態時,該驅動電路打_等光發射元件LDsi。應注意, 如圖1所示’料光發射元件配置成與該㈣賴關相鄰, 藉此可易於辨識該操作開關S51對應於該相鄰光發射元件 LD5卜該電源25自該商用Ac f源接收該ac電,並將 AC電轉換為DC電,以便操作每一單元。 二酬批置控制。批量控制分為群組控制及模幻 :作二IS照明負載L實現該負載L時,模式控細 =Γ1 en⑽咖1)。群組控制係一在組塊中將才 =中之該等負載L控制於相同操作狀態的控制方案t ,制係一按每一負載將相同模式群組中之負載L控希 ^預疋狀態之控制方案。在此具财施 該 m等=開咖细對應於群組控制。該操作^ U之_呆作開關S61及S62對應於模式控制。 至對應於該操作開關S51之群組控制將連招 =所有該等控制終端1八至1D分為一群組。 1的群組控制執行打開或關閉所有負 ΓΑ=制’所有負載l連接至相同組中之該等控制: A至1D並由其控制。該操作終端2a的 諸 =Γ」及「屬於相同群組之該等控祕端1Α:ι: 之^專抆制終端辨識碼」之間的關係。The amount of electric power. According to the method for reducing the supply to the load l^L, the load operating unit 14 controls the drive circuit so that the amount of electric power supplied to the load L is the parent unit time. These operations are = when the load L is in the open state. "The present invention is not limited to this. That is, the operation of the temple can be performed when the load L is in the off state. Here, when the operation switches S32, S42, S33, and S43 are operated, the load L is turned off. In the state, the load operation unit 14 controls the drive circuit to open the load L. Then, according to the operation: the operation of the S32, S42, S33, and S43 is turned off, the load operation unit 14 increases or decreases each The power is supplied to the load L per unit time. Further, preferably, when the operation switch S31 or S41 is operated, the control unit 1 is further configured to store the dimming level of the 5 liter load L to the Memory, in order to turn off the load L. In this case, the control unit 10 is set to continue the dimming level from the memory and control the load working unit 14 so that the load L is stored in the memory shot In this case, 201117508 may restart the load l immediately at the last-dimming level. ' Figure 3 shows the circuit block diagram of the operation terminal 2. As shown in Figure 3, The operation terminal 2 includes - control unit 2 (), - input The receiving unit 21, the signal communication unit 22, the memory ^, the display (four), and the power supply are set by the signal communication unit 22 to convert the packet (as shown in Figure 4 (4), and then set to The encoded packet is modulated into a bit-encoded packet. Then, the simple communication unit 22 transmits the digitally encoded packet through the wealth signal line Ls. Further, when the signal communication unit 22 receives the current digital coded seal (4), the Wei bribe letter unit 22 solves the problem. ^ Encode the identification code in the packet, whereby the message: #早疋22 identifies the source and destination. It should be noted that the communication unit is the communication device. Μ 'The communication unit 22 defines the second connection S52. The 21 is set. The operating conditions of the operation switches S51'2, S53, S61 and S62 are monitored. When the operations are performed, the input receiving unit 21 receives the control command. When the operation is 51, a control command is generated. The control command generated at the time of operation defines a second control finger operation s51, the input receiving unit 21 receives the operation open, and the input receiving unit 21 rotates corresponding to the control: two or two rings. It should be noted that the operation switches S 51, etc. by - press: to provide the stalk of the touch _ (not wire) ' ^. For example, the button switch has a - normally open contact. When ϋ is not pressed ' The contact is open, whereby the switch has 幵& when the button is pressed, the job is green, (4)^ has 22 201117508 is closed, that is, according to the button switch is turned on or _ on, the input The receiving unit 21 recognizes an operation input via the operation switches S51. It should be noted that the input receiving unit 21 corresponds to a second input receiving device. Therefore, the receiving unit 21 defines the second input receiving device. The control unit 2G has a central processing unit that serves as the main component of the control unit 20. When the δ reading person receiving unit 21 receives the second control command, the input receiving unit 21 transmits an operating unit 2 corresponding to the second control command, and receives an input from the input receiving unit 21 to generate a job. Received operation signal 'defending 7. This memory 23 is realized by an electrically rewritable non-volatile semiconductor memory. The memory 13 is such as eepr() m and a flash memory. The memory 23 stores the control terminal identification codes, the multi-point transmission SI, and the operation terminal identification codes other than the ones, and the operation switches according to the batch, such as a group or a type (such as the following The information of the control terminal identification code, the "multicast address" and the "exclusion of the own ^ === identification code" are used for the batch reading system of the J-loaded L. The loads L are controlled by the control terminal and also belong to the control terminal 1. It should be noted that the control unit 20 corresponds to the first control device. Therefore, the control unit 2G defines the second control device. ▲ The display unit 24 is for displaying conditions that are controlled by the control terminal i, belong to the control terminal 1 and correspond to the load 1 of the operation switch S51. The display 24 includes light emitting elements ω5, coffee 3', =61 and _ (illustrated by LEDs), and - driving the axis of the reading (shown). #转杂量(四) (such as group 23 201117508 group control and mode control) when all of the controlled loads L are in an open state, the load circuit L when the control circuit transmits the control signal from the control unit 2G . When the load L of the load L controlled according to the batch control (such as group control and mode control) is in an open state, the drive circuit _ is equal to the light emitting element LDsi. It should be noted that the light-emitting element is disposed adjacent to the (four) gate as shown in FIG. 1, whereby the operation switch S51 can be easily recognized to correspond to the adjacent light-emitting element LD5, and the power source 25 is received from the commercial Acf source. The ac is charged and the AC power is converted to DC power to operate each unit. Second pay for batch control. The batch control is divided into group control and phantom: when the two IS lighting load L realizes the load L, the mode control fine = Γ 1 en (10) coffee 1). The group control system is a control scheme t that controls the load L in the same operating state in the block, and the system controls the load L in the same mode group for each load. Control scheme. In this case, the m==open coffee corresponds to the group control. The operation of the operation switch S61 and S62 corresponds to the mode control. The group control corresponding to the operation switch S51 will be connected to all of the control terminals 1 to 1D into a group. Group control execution of 1 turns all negatives on or off. All loads 1 are connected to and controlled by the same group: A to 1D and controlled by it. The relationship between the =Γ" of the operation terminal 2a and the "control terminal 1 of the same group: the special terminal identification code of the system".

對應於該操作開關S61的模式控制將該等控制終端1A 24 201117508 至ID分組為一第 式控制執行打開及調的模 體實施例巾,錢彳1A至1D的㈣下。在此具 制終端1B控制下的該:時’在該控,终端1A及該控 控制終端1C控制下^㈣[被打開’藉此而被操作。該 此於該50 %調光位準中操^被打開至—50%調光位準,藉 載L被打開至—7〇 ^乍。該控制終端1D控制下的負 及「該等栌制 己匕、肢23儲存「该操作開關S61 的關係等控制終端觸碼」之間 的每-負載之控;資端1…之控制之下 此外,#;·_ (調光位準)」相關聯。 制終端1C及1D 開關S62之模式控制將該等控 關S62之模式押制勃:才—核式群組。對應於該操作開 控制終端m之输位準之控制;以及打開屬於該 控制。該操作终端j 其調暗至一30%調光位準之 及「與該等控制終端23儲存「該操作開關S62」 的每-負载L之控制資訊」之=制關聯 選定將哪些負以分組為群可任意 述,該等控制終端1A至1〇將”=、二:,如下所 =端2。該一將剛=== 下一步,說明藉由該操作終端2執行批量控制(群組 25 201117508 控制及模式控制)的操作。 行群:ί制:η:示序列說明藉由該操作終端2a執 ' ' 。當操作該輸入接收單元21的摔作開關 ⑸時’_人接…叫妾收控制指 == 該輸入接收單元〜 樹" 收該操作訊號之控制2G°接 關係。該控制單元^Tf=隐體23 ’以便獲得該The mode control corresponding to the operation switch S61 groups the control terminals 1A 24 201117508 to ID into a model control execution opening and adjustment mode embodiment, and the money is 1A to 1D (4). Here, under the control of the terminal 1B, the terminal 1A and the control terminal 1C control the next (four) [opened] to be operated. This is turned on to the -50% dimming level in the 50% dimming level, and the borrowing L is turned on to -7〇^乍. The control under the control of the control terminal 1D and the control of each load between the control and the terminal 23 storing "the relationship between the operation switch S61 and the control terminal" are under the control of the terminal 1... In addition, #;·_ (dimming level) is associated. The mode control of the terminal 1C and the 1D switch S62 controls the mode of the control S62 to be the nucleus-nuclear group. The control corresponding to the operation of the control terminal m is controlled; and the opening belongs to the control. The operation terminal j is dimmed to a 30% dimming level and the "control information for each load L of the operation switch S62 is stored in the control terminal 23". For the group, the control terminals 1A to 1〇 will be "=, two:, as follows = terminal 2. The first will be just === Next, the batch control is performed by the operation terminal 2 (group 25 201117508 Control and mode control) Operation: Line group: ί: η: The sequence description is executed by the operation terminal 2a. When the input switch unit (21) is operated, the '_ person picks up... The control control finger == the input receiving unit ~ tree " receives the control signal 2G ° connection relationship. The control unit ^Tf = hidden body 23 ' in order to obtain the

又得(將由5亥專控制終端1A至1D ΓοΓ) L,最新狀態及(該等控制終端1A至 (由終端辨識碼’此二者皆對應於該操作訊號 (由4作開g如之操作產生)。如果自該記 得找等負載L之所有狀態均翻,則該控制單= 之二L之狀態的控制命令,而該等負載L u有關自該記憶體23獲得之該等負載:的目 打門壯能曰丨ϋ 恕。(尤其,如果所有負載匕為 :態:則該控制單元20產生指示該等負載L關閉的控 一=/。相反,如果所有負載L為關閉狀態,則該控制單 指示該等負载"丁開的控制命令。)此外,該控 20產生具有該㈣(設定為該控制私2()產 =命令)、該目的地健(設定為該多點傳送位址)、及 。丄位址(&定為其自己的操作終端辨 =制單元2。產巧當於該命令訊號的封包。上^ 早7L 20自該通仏單疋22將該封包(命令訊號)發送至 4號線Ls。應注意’該控制命令具有命令資訊(在此银 =列中如圖4(b)所tf之負載控制)、該控制終端辨識碼 该操作終端2控制的控制終端1A至.1D之)、及該控制資 26 201117508 =在此具體實施例中將打開或關閉之該等負 載=、寻於多點傳送位址之具有目的地位址的該封包 Ρ ^係、由建構該負载控制系統之所有控制終端1 及所有操作終端2接收。 Μ㈣、知 每二:控制終端认請經由該通信單元12接收該 封”喊),並將該封包傳輪至該控制單元10。該控 制早Ί0。接收該封包(命令訊號),且隨後檢查「該封包 (命令减)之控制命令中的辨識碼」是否包含「該控制 終端自己的控制終端辨識碼」。如果該控制單元10辨識該 封〇之nP令中的辨識碼包含該控制終端自己的辨識 碼則《玄控制單$ 10產生控制訊號。該控制訊號係基於與 該辨識碼相關聯之控制f訊關發。此外,該控制訊號係 以用於打開或關閉該等負載L。然後,該等控制單元1〇將 该控制喊發送至該貞麟業單元14。隨該控制訊號指 示,§亥負載作業單元14關閉或打開該繼電器,以便打開或 關閉該等負載L。此外,在緊接該繼電器之操作之一預定期 間之後,該控制單元10產生封包(其定義為狀態訊號)。 该封包(狀態訊號)具有目的地位址、源位址、及該等負 載L之該等狀態。該目的地位址設定為該控制終端丨人接收 之封包(命令訊號)的源位址,藉此將該目的地位址設定 為該操作終端2A。該源位址設定為該控制終端自己的控制 終端辨識碼。該等負載L之該等狀態指示在該等負載l被 控制之後該等負載L之該等狀態。特別地,該等負載l之 該等狀態指示在該等負載L打開或關閉之後該等負載之該 等狀態L。隨後,該等控制單元10將該封包(狀態訊號) 27 201117508 自该通信單兀12發送至該訊號線Ls。此外,該控制單元 10插作該顯I5以顯示在該等負載:被控制之後該等負 載L之該等狀態。 ' 另一方面,§亥刼作終端2八經由該通信單元22接收該 封包(狀,4訊號),且隨後將該封包(狀態訊號)發送至該 控制單7〇20。該控制單元20將該等封包(狀態訊號)中該 ,負載L之該等狀g儲存至該記憶體23。然後,當該控制 單兀20接收指tf在對應於該操作關S51之該等控制終端 1A至1D之控制下該等負載之該等狀態L的封包(狀態訊 號)時,該控制單元20操作該顯示器24以顯示在該等負 載L被控制之後料貞载該等狀[舉例而言,當所 有負載L㈣且藉此處於打職態時,該光發射元件ld $】 ,閉’藉此處於關閉狀態。相反,當所有負載[被關閉且 猎此處於關狀態時,該光發射元件LD 5U了開,藉此處 於打開狀‘4。錢方式,軸㈣%藉由該 =1之狀態來指示所有該等負载L之該等狀態。(當該I 發射⑽LD5i處於打開狀態時,該等光發料件咖指 =有負載L處於關·態。當該光發射元件咖 =:時;Γ光發射钟咖料所有負載^於 需;‘光發 ===== 终端2未自該等控制终端ia -者接收到辑封包(狀態訊號),該操作終端仏之^ 28 201117508 單元20將產生該封包(重告 終端2A不能自該等控制(二^柄虎)。以下說明該操作 ra 、'、鸲m接收到指示該等負載L之 1狀,。、之封包(狀態訊號)的情況。當該操作终端2 能自該控制終端1D接收指干兮榮 r貼能^ τ ~貞載L之該等狀態之封包 幻時’該操作終端2A將產生具有目的地位址及 二1 之封包(重新嘗試訊號)。該目的地位址等於該摔 、二、域4碼,減本朗巾之目的地錄等於該控 端辨識碼。該控制命令包含允許該控制 、'冬h 1D將该寺負載之兮望仙# ._ 寺狀恶發送至該操作終端2A的指 作終端2Α之控制單元2〇將該封包(重新 通信單元22發送至該訊號線。因此,當該 S將帶:气等:欠載=包(重新嘗試訊號)時,該控制終端 該操作終端从。、因此的封包(狀態訊號)傳回 等負載的該等狀態儲二 送帶有傳送該等負載L之該等狀態^二 舰^重4旨4δί1#ϋ)’而該操作終端2A仍不能自該控 7該等負載L之該等狀態之封包(狀態 終^ 2八觸該控制終端1D發生一錯誤。 作終端2A藉由閃燦該顯示器%之光發射元件 控制=自=;:r的錯誤。此外,當該等 厅有5亥寺控制終端1八至1D接收到指示該 =L之狀‘4之封包(狀態訊號)時,該控制單元2〇將 —封包(傳送訊號)’以用於將自該封包(狀態訊號) 29 201117508 獲得之該等負載之該等最新狀 即,該封包(傳送訊號)具有控制命令It終端2B。 源位址。該,制命令指示指令,❿該指令係自兮及 態訊號)獲得之該等負載L之該 ^ w于匕(狀 作終端2B的指令。爷目& + ’ t傳送至其他操 位址,其等於料掉=?2位=判定為—第二多點傳送 =終端辨識碼而被判定。隨後,該控制== 已(傳运«)發送至該訊號線Ls。當該操 ^ 操作終端2A自該操作終端Μ接收該封包、(傳^ 唬)時,該操作終端2B之控制單元2〇將「在自古亥二 ' 皇孔 迗訊號)獲得該等控制終端控制之後的該 1二 狀態」以及「在該等控制終端控制之前該等負^ 3 = 狀態」儲存至該記憶體q遺後,該操 一 5Λ荨 播(unicast)將該ACK封包(確認^ =)發送至該操作終端-。然而,當該= =接收_ ACK封包時,_作終端2A重新發送該封 0,以用於傳送該等負載L·之該等狀態。 +下一步,結合圖6說明該操作終端2b之模式控制(第 二模式控帝〗)。當操作該操作終端2B的操作開目撕時, 讀入接收單元21將該操作訊號輸出至該操作終端犯之 控制單元20。該控制單元2G接㈣操作訊號,且隨後存取 °玄°己憶體’以便獲得該關係。然後,該控制單元20獲得(該 控制終端K:及1D之)控祕端辨躺及控财訊(關於 受該控制終端丨匚及1D控制之該等負載L),此二者皆與來 自補作開關S62之控制指令有關聯關係。該等控制終端 201117508 辨識碼指示該等控制終端1C及1D。該控制資訊包含—關 於受等控制終端1C及1D控制之該等負載L的指令。當該 等負,受該控制終端1C及1D操作時,該控制資訊1包 ^該等負載L的調光位準。根據自該記憶體23獲得之控制 貝§fl ’該控制單元20產生-控制命令,將該控制終端1(: 控制下的負載L打開至7G%調光位準;及將該控制終端ι〇 控制下的負載L打開至3G%調光位準。隨後,該控制單元 20B之控制單兀20產生封包(命令訊號),該封包且有巧 制資訊:目的地位址、及源位址。該目的地位址設定為^ 多點傳运位址。該源位址設定為指派給該操作終端自己的 該操作終端賴碼。紐,該㈣單元2()自該驗單元^ 將該封包(命令訊號)發送至該訊號線u。應注意,該控 制命令沒有控制資訊且無該等控制終端1A及iB之辨 碼,因為該等控制終端i A及1β不屬於該第二模式群组°。0 在每一該等控制終端1A 1D中,當該通信單元12 接收該封包(命令喊)時,該雜料12將朗包 令訊號)發送至該控制單元1〇。該等控制終端ia及汨的 每-控制料ω比較該封包中之辨識碼與該控祕端自己 的控制終端辨識碼。朗,料封包不含等於該等控制玖 端1八及1Β之控制終端辨識碼的辨識碼。因此,每一★亥箄 =終端Μ及1Β不控制任何負載,且產生具有指示該等 負載之遠等目前狀態(點亮或未點亮)之資料的封包 =號)。隨後,該控制單元1〇將所產生之封包(狀^ =料至該訊號。另—方面,該㈣終端ic^id 母一控制早兀1〇亦比較該封包(命令訊號)中之辨識石馬 31 201117508 與該控制終端自己的控制終端辨識碼。在此情況下,該封 包(命令訊號)包含該辨識碼,該辨識碼等於該等控^終 端1C及1D之控制終端辨識碼。因此,該控制終端及 1D之每-控制單元1G辨識對應於該控制終端自己的辨識 碼之控制資訊。隨後,該終端1C及1D的每一控制單元基 於該封包(命令訊號)之控制資訊產生控制訊^,並將二 控制訊號(用於控制該等負載以打開、及操作受該控制訊 號指示的調光位準)發送至該負載作業單幻4。根據自該 控制單元ίο傳送之控制訊號’該負載作業單元14控制該 驅動電路’以便調整每單位時間供應至該貞載之^功率 量。此外,自触該㈣命令起_ —預定特時間段之 後,該等控制終端1C及1D之每-控制單元產生封包(狀 態訊號)。賊包(狀態職)包含目的地位址、源位址、 及育料。該目的地位址等於所接收封包(命令訊號)之控 制命令中的源位址。該源位址等於該控制終端自己^的控^ 終&辨識碼。該資 *在料域受該 =該等負載的該等狀態。然後,該控制單元二該封 匕(狀態訊號)發达至該訊號線^。即,該控制單元川在 一預定時刻將該封包(狀態訊號)發送至該訊號線。此外, 该控制早兀1G控制該控制終端自己的顯示器15,以便在該 ^負,由該負載作業料14控制之後,該顯示器15顯示 該寺負載L的該等狀態。 =該操作終端2B中’當該通信單元22接收該封包(狀 ’ __^22將_包(狀態訊 雜制早元2G。該控制單元2〇自所接收封包(狀態訊號) 32 201117508 辨識π亥等負载L的目前狀態,且將該义 ==該記憶體23。然後,當該控制單元2〇== 今等ί有㈣L麟包(狀態職),域封包係受 3控=端以1D控制且屬於對應於該操作開關啦 杈式群組時,,該控制單元20控制該顯示器24,以 便打,4光發射元件LD62。藉由點亮該光發射元件Ldq, 通知该等負載L基於該第二模式控制所操作之條件。此外, 在f控制單元2G自該等控制終# 1A iL 1D接收用於通知 乂寻負載L之該等狀態的封包(狀態訊號)後,該控制單 元20產生一控制命令,用於將該等負載L之該等最新狀態 (自所接收封包獲得)傳送至其他操作終端2a。隨後,該 控制單元20產生—封包(傳送訊號),該封包具有目的地 位址(設定為該第二多點傳送位址)、源位址(設定為該操 作終鳊2B自己的操作終端辨識碼)、及資料(設定為基於 所接收封包產生之控制命令)。然後,該控制單元20將該 封包(傳送訊號)自該通信單元22發送至該訊號線Ls。該 封包(傳送訊號)被其他操作終端2A接收。該操作終端 2A之控制單元20將「該等負載L的該等最新狀態」及「在 該等負載L由該控制終端控制之前該等負載L的該等狀態」 儲存至該操作終端2A之記憶體23。應注意,該第一模式 控制之操作與該第二模式控制之操作相同。因此,在此省 略忒第一模式控制之操作的說明。 如上所述,在此具體實施例中之負載控制系統中,可 藉由操作該控制終端1之該等操作開關S11的方式,直接 控制受該控制終端1控制的該等負載L。此外,亦可藉由操 33 201117508 作透過該訊號線LS連接至該控解端丨之操作終端2之該 等操作開關S51的方式,而從遠端控制受該控制終端1控 制的該等負載L。此外,該等操作終端2及該等控制終端i 透過該訊麟LS ’將包含馳制命令之封包發送至其他終 端。因此,即使該操作終端2或該控制終端i失敗,或該 訊號線Ls情,不存在不發生㈣停之可能性。此外,當 j操作終端2心端控制區塊巾之複數個該等控制終端^ 時,該操作終端2藉助廣播傳輸(祕咖(聰 將具有該控制命令的封包(命令訊號)發送至複數 ^寻控制終端卜(當該操作終端2從遠端控制區塊中之 =數個該等控制終端1時,該操作終端2不藉助任何單點 (unicast transmissi〇n),而將具有該控制命令的封 ^ U令訊號)發送至複數個該等控制終端卜)因此,該 仰_區塊中受該等操作終端2操作控制 :::負載L。即’與習知之中央控制類型系統相比,該系 U可提两負載控制之響應能力及穩定性的優勢。 關传登錄該批量控_對於該操作終端2之 係表示群組控制中之群組、及模式控制 登錄群組控社群組至賴祕端 及圖8之序_明。應注意,「操_」==圖_7 上述_別控制或該批量控制之正常操作模式。 仃 百先,當該操作終端2Α之輸入接收單元以 擇開關(未顯示)㈣作時L接 制指令(其相當於储存指令)。接收到該儲=收: 34 201117508 入接收單=21將操作減發送至該控制單元2()。根據自該 輸+接收單it 21接收到该操作訊號,該控制單元將操 作模式切換至登錄模式。應注意,該輸入接收單元21無需 配備模式選擇開關’即可將操作模式切換至登錄模式。可 利用該輸入接收單元2卜其被設定成當該操作開關在-預 定期間按下時’偵測將正常模式切換至登錄模式之指令。 在此情況下,偵❹道正常模式城至登_式之指令 時,該輸人接收單元21傳送將模式切換至登錄模式之操作 訊號。 虽在雜作終端2&具有登賴式之條件下,該操作终 端2A的操作開_ S51被按下時,該輸入接收單元宜 接收該控俯旨令)_作訊號發送至該控制單元2G。該控 制單元2G傳送控制訊號,以便強制該顯示器24閃燦對^ 於該操作開關S51之光發射元件咖,藉此該顯示器^ ^ ΐ使操作終端2A具有登錄模式。此外,該控制 早產生—控制命令,而該控制命令指示該控制级端i = 料切魅絲料。紐,該控制 早 產生封匕(登錄訊號),而該封包具有控制命令、 目的=位址(設定為該多點傳送位址)、及源位址(設 該細作終端自己的操作終端辨識碼; 通信=:封包(登錄訊號)發送至該; 自_作終端2接收到該封包(登錄訊號 制終端1之控制單元10根據自該操 錄訊號)山中的控制命令將操作模式切換至登錄模式H = 控制終端1具有登錄模式時’可藉助在一預定期間按; 35 201117508Also (will be controlled by 5 Hai special control terminals 1A to 1D ΓοΓ) L, the latest state and (the control terminals 1A to (by the terminal identification code 'both of which correspond to the operation signal (from 4 to open) If the state of the load L is changed, then the control order = the control command of the state of the second L, and the load Lu is related to the load obtained from the memory 23: (In particular, if all loads are: state: then the control unit 20 generates a control indicating that the load L is off = /. Conversely, if all the loads L are off, then The control list indicates the control command of the load "Don't open.) In addition, the control 20 generates the (4) (set to the control private 2 () production = command), the destination is healthy (set to the multicast Address), and 丄 address (& is set to its own operating terminal identification = unit 2. The product is the packet of the command signal. On the early 7L 20 from the 仏 仏 22 (command signal) is sent to line 4 Ls. It should be noted that 'this control command has command information (here In the silver=column, the load control of tf as shown in FIG. 4(b), the control terminal identification code, the control terminals 1A to .1D controlled by the operation terminal 2), and the control resource 26 201117508 = in this embodiment The load that will be turned on or off =, the packet with the destination address found in the multicast address, is received by all control terminals 1 and all operating terminals 2 that construct the load control system. 四 (4), know Every two: the control terminal accepts the "call" through the communication unit 12, and transmits the packet to the control unit 10. The control is earlier than 0. The packet is received (command signal), and then the packet is checked. Whether the identification code in the control command of the (command minus) includes "the control terminal's own control terminal identification code". If the control unit 10 recognizes that the identification code in the sealed nP command includes the control terminal's own identification code Then, the control unit generates a control signal. The control signal is based on the control associated with the identification code. In addition, the control signal is used to turn the load L on or off. Then, The control unit 1 transmits the control call to the unicorn industry unit 14. With the control signal indication, the ho ho load unit 14 turns off or turns on the relay to turn the load L on or off. After one of the operations of the relay, the control unit 10 generates a packet (which is defined as a status signal). The packet (status signal) has a destination address, a source address, and the states of the loads L. The address is set to the source address of the packet (command signal) received by the control terminal, thereby setting the destination address as the operation terminal 2A. The source address is set to the control terminal's own control terminal identification code. The states of the loads L indicate the states of the loads L after the loads 1 are controlled. In particular, the states of the loads 1 indicate the states L of the loads after the loads L are turned "on" or "off". Subsequently, the control unit 10 transmits the packet (status signal) 27 201117508 from the communication unit 12 to the signal line Ls. In addition, the control unit 10 is plugged into the display I5 to display the states of the loads L after the loads are controlled. On the other hand, the packet terminal 2 receives the packet (form, 4 signal) via the communication unit 22, and then transmits the packet (status signal) to the control unit 7〇20. The control unit 20 stores the equivalent g of the load L in the memory 23 in the packets (status signals). Then, when the control unit 20 receives the packet (state signal) of the state L of the load under the control of the control terminals 1A to 1D corresponding to the operation switch S51, the control unit 20 operates. The display 24 is shown to be loaded after the load L is controlled [for example, when all loads L (four) are in the active state, the light emitting element ld $] Disabled. On the contrary, when all the loads [closed and hung in the off state, the light-emitting element LD 5U is turned on, by which it is opened in the '4. In the money mode, the axis (four)% indicates the states of all the loads L by the state of =1. (When the I emission (10) LD5i is in an open state, the light emitting parts are fingered = the load L is in the off state. When the light emitting element is =:; the light emitting clock is all the load is required; '光发===== Terminal 2 does not receive the edit packet (status signal) from the control terminal ia-, the operation terminal ^^ 28 201117508 Unit 20 will generate the packet (reporting terminal 2A cannot be from The control (two handles). The following describes the operation of ra, ', 鸲m to receive the indication of the load L (state signal) of the load L. When the operation terminal 2 can control from this The terminal 1D receives the packet phantom when the 兮 r 贴 ^ 该 该 该 ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' ' Equivalent to the fall, second, domain 4 yards, the destination record of the reduced denim is equal to the control ID. The control command contains the control that allows the control, 'winter h 1D to load the temple's 兮望仙# ._ 寺The control unit 2 that is sent to the terminal 2A of the operation terminal 2A 〇 the packet (re-communication unit) 22 is sent to the signal line. Therefore, when the S will carry: gas, etc.: underload = packet (retry signal), the control terminal will operate the terminal from, and thus the packet (status signal) is returned to the load. The state storage two sends the packets with the load L, and the operation terminal 2A still cannot control the packets of the load L from the control port 7 (State end ^ 2 eight touches an error in the control terminal 1D. The terminal 2A is controlled by flashing the light emitting element of the display % = self =;: r error. In addition, when the hall has 5 hai temple control When the terminal 1-8 to 1D receives the packet (status signal) indicating the '4', the control unit 2 will use the packet (transmission signal) for obtaining the packet (status signal) 29 201117508. The latest state of the load, that is, the packet (transmission signal) has a control command It terminal 2B. The source address, the command command instruction, and the command is obtained from the load and the signal. L of the ^ w Yu 匕 (formed as the terminal 2B instructions. Ye Mu & + ' t transmitted to He operates the address, which is equal to = 2 bits = judged as - second multicast = terminal identification code is determined. Then, the control == has been (transported «) sent to the signal line Ls. When the operation terminal 2A receives the packet from the operation terminal 、, the control unit 2B of the operation terminal 2B will control the control terminals after obtaining the control terminal from the "Haohai II" Huangkong 迗 signal The "1" state" and "the negative ^ 3 = state before the control terminal controls" are stored in the memory q, and the unicast unicasts the ACK (confirm ^ =) Send to the terminal -. However, when the ==receive_ACK packet, the terminal 2A resends the block 0 for transmitting the states of the load L·. + Next, the mode control of the operation terminal 2b (second mode control) will be described with reference to FIG. When the operation of the operation terminal 2B is opened, the read-in receiving unit 21 outputs the operation signal to the control unit 20 committed by the operation terminal. The control unit 2G is connected to the (four) operation signal and then accesses the "remember" to obtain the relationship. Then, the control unit 20 obtains (the control terminal K: and 1D) the secret terminal and the financial control (about the load L controlled by the control terminal and 1D), both of which come from The control command of the backup switch S62 is associated. The control terminals 201117508 identification codes indicate the control terminals 1C and 1D. The control information includes instructions for the loads L controlled by the control terminals 1C and 1D. When the negative is controlled by the control terminals 1C and 1D, the control information 1 includes the dimming level of the loads L. According to the control obtained from the memory 23, the control unit 20 generates a control command, and the control terminal 1 (: the load L under control is turned on to the 7G% dimming level; and the control terminal is 〇 The controlled load L is turned on to the 3G% dimming level. Subsequently, the control unit 20 of the control unit 20B generates a packet (command signal) having the information: the destination address, and the source address. The destination address is set to ^ multi-point transport address. The source address is set to the operation terminal assigned to the operation terminal itself. New, the (4) unit 2 () from the inspection unit ^ the packet (command The signal is sent to the signal line u. It should be noted that the control command has no control information and does not have the identification of the control terminals 1A and iB because the control terminals i A and 1β do not belong to the second mode group °. 0 In each of the control terminals 1A 1D, when the communication unit 12 receives the packet (command call), the miscellaneous material 12 sends a packet transmission signal to the control unit 1 . The control terminals ω of the control terminals ia and 汨 compare the identification code in the packet with the control terminal identification code of the secret terminal. Lang, the material packet does not contain an identification code equal to the control terminal identification code of the control terminals 1 and 1Β. Therefore, each 箄 = terminal Μ and Β does not control any load, and generates a packet = number with information indicating the current state of the load (lighted or not lit). Subsequently, the control unit 1 compares the generated packet (the data is sent to the signal. On the other hand, the (4) terminal ic^id is controlled as early as 1 〇 and the identification stone in the packet (command signal) is also compared. Ma 31 201117508 and the control terminal's own control terminal identification code. In this case, the packet (command signal) contains the identification code, which is equal to the control terminal identification code of the control terminals 1C and 1D. The control terminal and the control unit 1G of the 1D recognize the control information corresponding to the identification code of the control terminal itself. Subsequently, each control unit of the terminals 1C and 1D generates a control signal based on the control information of the packet (command signal). ^, and send two control signals (used to control the load to open, and operate the dimming level indicated by the control signal) to the load job ticket 4 4. According to the control signal transmitted from the control unit ίο The load operating unit 14 controls the driving circuit 'to adjust the amount of power supplied to the load per unit time. Further, after the (4) command is touched, the predetermined time period is after the predetermined time period. Each control unit of the terminals 1C and 1D generates a packet (status signal). The thief packet (status job) includes a destination address, a source address, and a nurturing material. The destination address is equal to the control of the received packet (command signal). The source address in the command. The source address is equal to the control terminal's own control and identification code. The resource* is subject to the state of the load in the material area. Then, the control unit 2 The sealing (status signal) is developed to the signal line ^. That is, the control unit sends the packet (status signal) to the signal line at a predetermined time. In addition, the control controls the control terminal itself as early as 1G. The display 15 is configured to display the states of the temple load L after being controlled by the load material 14. In the operation terminal 2B, 'when the communication unit 22 receives the packet (like '___ ^22 will be _ packet (state message omnipotent 2G. The control unit 2 所 from the received packet (status signal) 32 201117508 recognizes the current state of the load L such as π hai, and the meaning == the memory 23. Then, when the control unit 2〇== When there is (4) L-Linbao (state job), the domain packet is controlled by 3D = the terminal is controlled by 1D and belongs to the group corresponding to the operation switch, the control unit 20 controls the display 24 to play, 4 The light emitting element LD62, by illuminating the light emitting element Ldq, notifies the load L to control the operating condition based on the second mode. Further, the f control unit 2G receives from the control terminals #1A iL 1D for receiving After notifying the packet (state signal) of the state of the load L, the control unit 20 generates a control command for transmitting the latest state of the load L (obtained from the received packet) to the other operation terminal. 2a. Subsequently, the control unit 20 generates a packet (transmission signal), the packet has a destination address (set to the second multicast address), and a source address (set to the operation terminal 2B its own operation terminal) Identification code), and data (set to control commands based on the received packet). Then, the control unit 20 transmits the packet (transmission signal) from the communication unit 22 to the signal line Ls. The packet (transmission signal) is received by the other operation terminal 2A. The control unit 20 of the operation terminal 2A stores "the latest state of the load L" and "the state of the load L before the load L is controlled by the control terminal" to the memory of the operation terminal 2A. Body 23. It should be noted that the operation of the first mode control is the same as the operation of the second mode control. Therefore, the explanation of the operation of the first mode control is omitted here. As described above, in the load control system of this embodiment, the loads L controlled by the control terminal 1 can be directly controlled by operating the operation switches S11 of the control terminal 1. In addition, the load controlled by the control terminal 1 can be controlled from the remote end by operating 33 201117508 as the operation switch S51 connected to the operation terminal 2 of the control terminal 该 through the signal line LS. L. In addition, the operation terminal 2 and the control terminals i transmit the packet including the customized command to the other terminal through the communication LS '. Therefore, even if the operation terminal 2 or the control terminal i fails, or the signal line Ls, there is no possibility that the (four) stop does not occur. In addition, when j controls the terminal control unit 2 to control a plurality of the control terminals, the operation terminal 2 transmits the packet to the plurality of terminals by means of broadcast transmission (Secret (Cong will send the packet with the control command (command signal) to the plurality ^ The control terminal (when the operation terminal 2 is from the remote control block = several of the control terminals 1 , the operation terminal 2 will have the control command without any single point (unicast transmissi〇n) The message is sent to a plurality of the control terminals. Therefore, the operation block 2 is controlled by the operation terminal 2::: load L. That is, compared with the conventional central control type system. The system U can provide the advantages of the responsiveness and stability of the two load controls. The transfer of the batch control _ for the operation terminal 2 indicates the group in the group control, and the mode control login group control community The group to the secret end and the order of Figure 8 _ Ming. It should be noted that "Operation_" == Figure _7 The above-mentioned _Do not control or the normal operation mode of the batch control. 仃百先, when the operation terminal 2 Α input receiving When the unit is selected as a switch (not shown) (4) Command (which is equivalent to a store command). Received the store = receive: 34 201117508 Incoming receipt = 21 will send the operation minus to the control unit 2 (). The operation signal is received according to the input + itt 21 The control unit switches the operation mode to the login mode. It should be noted that the input receiving unit 21 can switch the operation mode to the login mode without the mode selection switch '. The input receiving unit 2 can be used to be set to The operation switch detects an instruction to switch the normal mode to the login mode when pressed during the predetermined period. In this case, when the detection mode is normal mode to the command, the input receiving unit 21 transmits the mode. Switching to the operation mode of the login mode. Although the operation of the operation terminal 2A is pressed when the operation terminal 2& has been pressed, the input reception unit should receive the control command)_ The signal is sent to the control unit 2G. The control unit 2G transmits a control signal for forcing the display 24 to flash the light emitting component of the operation switch S51, whereby the display causes the operation terminal 2A to have a login mode. In addition, the control generates a control command early, and the control command instructs the control stage i = the material to be cut. New, the control generates a seal (login signal) early, and the packet has a control command, a destination=address (set to the multicast address), and a source address (the terminal terminal's own operation terminal identification code is set) ; communication =: packet (login signal) is sent to this; the slave terminal 2 receives the packet (the control unit 10 of the login signal system terminal 1 switches the operation mode to the login mode according to the control command from the mountain) H = When the control terminal 1 has the login mode 'can be pressed by means of a predetermined period; 35 201117508

f作開關si卜㈣財财餅端丨之下之 疋否包含在該群組控制之群組中 二、载L 在一預定期間按下,㈣舞έ日批=果_作開關如 ⑽的該等負載===行時,該控制终端 的群組控制’該控制終端1A之下 :二被控制。在該等控制終端自操作模式: 二:^Γΐ該群組㈣包含受該控制= S3卜因此,該輸入接貝在預疋期間按下該操作開關 隨後’當輪八接收單元广==組控制的輸入。 制單元iG在當執行該群組控制時, 雜^工t控制終端1之控制終端1的設定為該第二模式 :1生=指示該設定之設定結果。然後該控制單元 ^ r匕(判定封包),該封包包含設定結果及目的地位 止C设疋為該操作終端2A的操作終端辨識碼)。 控,單元1。藉該單點傳播傳輸之方法將該封包(判定封包; 自言!通Ϊ單元發送至該訊號線Ls。應注意,該操作終端2A :控制単元20將來㈣控制終端1C的選擇結果臨時地儲 子至該記憶體23。此外,當該設定結果指示該群組包含有 該,制終端1C時’該控制終端1C之控制單元10控制該顯 示器15以便该光發射元件[則以—第__預定週期閃光。 另一方面,當該設定結果指示該群組不包含有 1C時’該控制終㈣的控制單元10控制該顯示器 便该光發射元件LD31以―比該第—預定週期更短之第二 36 201117508 預定週期閃光。因此,該等控制終端丄向該使用者通知該 群組的輸入。然而,用於顯示該設定是否包含在該群組2 内的裝置並不限於此。 / 在同一步驟中,當該等控制終端1A、18及1D之該 操作開關S11被操作時,該操作終端2A之控制單元2〇八 別將該設定結果臨時地儲存至該等記憶體23。 執行是否將該控制終端认至1D包含在該群組 擇操作之後,該輸人接收單元U在由該❹者執行= 終端2A之模式選擇開關操作時,將切換模式之操作訊 (等於儲存完成指令之控制指令)發送至該控制單元^ 當該控制單元20接收該操作訊號時,該控制單元2 於該群組之該等控祕端1A至1D的控齡端辨識 錄為控制終端的辨識碼,其中該控制終端係當該群心ς 批量控制所控制時而被控制。換言之,當該控制單元2= 收到㈣訊號時,該控制單元2G將「屬於該群組之 制終端以至m的該等控制終端辨識 ^ :辨識碼,其中該控制終端係當該群組受該批量控:二 =被f卜更換言之,當該等控制單^0接收到 ^ 單元2〇將「屬於該群組之該等控制終端u 控制終端辨識碼」重寫為控制終端的以 =。然後,該等控制單元2G將登錄模式娜 ==^皮 押制丄作:=2A的控制單元20產生-控制命令; 控制。p令指不該等控制終端! h -亥 式切換為操作模式。隨後,钟j =料10將登錄模 ㈣傻°哀控制早凡2〇產生-封包(傳 37 201117508 該^包具有控制命令(指令該等控制終端1之該 ?登錄模式切換為操作模式)、目的地位址 牧端Γα 了夕點傳雜址)、及源健(其設定為該操作 =2Α之操作終端辨識碼)。贿,該控制單元烈將該封 終端1之控制單元10將該控 健制。》ιΓ 賴式娜鱗作模式。應注意,當 :二:將登錄模式切換為操作模式時,無論該控制 至二二組至該群組’該控制單元1〇不將任何資訊儲存 作;1二完成自登錄模式至操作模式之切換時,該操 竽顯干考】s :早凡2〇發送控制訊號’以便打開或關閉 ^貝不益15之光發射元件,藉此打_關_光發射元件 。類似地’完成自該登錄模式至操作模式之切換時,节 =終端1之每一控制單元10發送控制訊號,以便打開或 關閉该顯424之光發射元件,藉此打開或關該光發射 順言之,當該等操作終端2之任-者(舉例而言,操 作終端2A)及該控祕端1之控制單元10具有登錄模式 ,,即使該操作終端2㈣操作,該操作終端2B (而_ 細作終端2 A )也;ί;會產生縣、從遠端控綱等控制終端的 封包(命令訊號)。換言之,當該等操作終端2之任一者(舉 例而言’該操作終端2Α)及該等控制終端!之該等控制^ 疋10具有該登錄模式時,即使該操作終端2 (2B)操作,該 操作終端2B (而非該操作終端2A)也不會產生用於執行= 制該等控制終端之模式控綱封包(命令喊)。即,在以 上登錄模式中,在該操作終端2 (26而非該操作終端2a) 38 201117508 控制該等控制終端之模式控制的控制 兮封勺二/Γδί1號)的情況τ,存在該操作終端2因 。亥封包而增加流1的可能性。因此,為防 =終端2之控制單元20(2,而非該操作終二被 =產生及傳相包H在不存在增加 的情況下,即使該操作終端2Β產生及傳送具有用^問^ 遠端控制該等終端之控制命令的封勺,抑有用於執仃從 ^,而該該等操作終端2係被設定成當該等:::=: :、’產生及傳送具有該控制命令之封包(命、= =下’當該操作終端1A具有登賴 ; :=,)被設定成捨棄封包中之二令 相反’甚至當該等操作終端2具有 制終端1能夠在該控制終端1之該等操作開二JJ f 控制受該控制終端自己控制 ^ 呆作時, rr::r 控制一 載L ’亦不存在增加流量之可祕。 、負 應注意,亦可登錄(更新、 於由該操作終端2B藉助以上方式對 模式群組及該第二模式群㈤之 、切、,且(该第- 登錄該辨識碼之該等步驟,因此,在此省略 位準。因此’以下將說明登錄每—==L之調光 驟。 貞戟L之调光位準之步 首先’執行藉由操作該等操作開關S32、S33、S42、 39 201117508 在一預L之調光位準。隨後,當該操作開關S62 之狀熊=絲日按下時’該輸人接收單元21辨識將該負載L 為儲至=制單元20的控制指令。該控制指令定義 寫)註^。…、、後^亥輸入接收單元21將登錄(更新、重 收到^錚狀態的儲存指令傳送至該控制單元20。接 控制:::、載上'狀態的儲存指令時,該操作終端2Β之 石:,二,得該等控制終端1c及1D之控制終端辨識 後,於該操作關啦的第二模式群組。隨 (二二終端2B之控制單元產生-具有命令資料的封包 位其指令傳回該等負載L之目前狀態(調光 碼),廿Μ目的地位^ (其设定為每一該等控制終端辨識 自談通^由該單點傳播傳輸之方式將該封包(請求訊號) μ早70 22發送至該訊號線Ls。 作終端2B接收到該封包(請求訊號)時,每一 g控^終端lc、1D之控制單㈣產生—封包(狀態訊 目^狀: (指示儲存於該記憶體13中之負Μ的 作調光位準))、目的地位址(其設定為來自該操 終端自己^之封包之源位址)、及源位^ (其設定為該控制 芯終端辨識碼)、然後’該控制單元10藉助 -:專播傳輪將該封包(狀態訊號)發送至該訊號線Ls〇 m垃t f終端2B之控制單元20自該等控制終端ic及 辨(狀態訊號),且隨後自該封包(狀態訊號) 目前狀態(調光位準)。隨後,該控制單 疋^等負載L之調光位準的目前狀離為該第_ 控制中各自_的控制指令。咖控制二 40 201117508 指令儲存至該記_。 組控制之操作終端2Α μ 。因此’僅執行群 此’該操作終端Μ無需執行以上登錄載L之調光位準。因 位準)在#負载L之狀態(該等負載L的調光 操作終端2的輸入接收單元21接收用 存ί二ra、重寫)該等負載之該等狀態的控制指令(儲 因此’該控制單元2〇將該負載“々目前狀態與 2λ 〇 ^ '之間的關係登錄(更新、重寫)至該記憶體 m L非專業使用者亦能狗輕鬆登錄用於該批量控制 用二I:/)的關係。在此實施例中,接收該操作訊號以 科負载L狀‘悲'之操作終端2的控制單元2〇發送一 (。月求Λ就)’指不將該負載:之狀態傳回該屬於將要 条該模式群組之控制終端1。然而,如上所述,每次當屬 :該模式群組之控制終端】控制該等負載U =被设定成傳送「在由該控制終端i控制該負載L之後 =、、:載L之狀態」。此外’該控制單元2〇將自該控制終端 C之負載L的狀態臨時地儲存至該記憶體23。因此,該 操作終端2之控制單元2〇可自該記憶體23襲在該控制 ,端1控制下的該負載L之狀態。在前者情況中,無需將 亥控制終端1連接之負載L之狀態儲存至該記憶體23。 因此,前者情況具有一降低該記憶體23之空間耗用量之優 勢。在該後者情況中’無需將指令發送該貞載L之狀態之 封包(晴求訊號)傳輸至該控制終端丨。因此,該後者情況 具有一降低該控制終端1與該操作終端2之間流量之優勢。 41 201117508 順言之’在此實施例中之操作終端2B包括該輸入接收 皁兀21,其被設定成接收一控制指令(儲存指令),該指令 用於當該操作終端2B之操作開關S62在—預定期間按^日; 登錄該負載L之狀態。即,該操作終端2Β之控制單元2〇 被設定成辨識-第-操作輸入及一第二操作輸入。該操作 終端2Β之控制單元2〇被設定成當該操作開關%i(或啦) 5第1定朗按下時,辨賊第—操作輸人。該操作 ,,、端2B之控制單元2〇被設定成當該操作 ㈣第二敢期間按下時,辨識該第二操作輸入 ^期間長於該第—預定_。當該控鄉元20接收該第 操作輸入時,該控制單元2〇執行批量控制(模式控制)。 -反田。亥控制單元2〇接收該第二操作輸入時,該控制單 作!°,了—登錄該負載L之狀態之處理。以此方式,該操 作二端2具有該操作開關S62,其充當—用於產生該第一操 作!^及亦用於產生該第二操作輸入之開關。此外,該操 产二端2不同時執行該模式控制及用於登錄該負載狀態之 口此,此組態使得有可能提升該操作終端之便捷性。 (第二實施例) 圖9顯不此實施例中之系統圖。在此實施例的負載控 相同f中’錢作終端2幾乎與該第—實施例的操作終端2 此外,該操作終端2連接至該負載匕,且被設定成直 接控制該倉·|^τ 长以从、孰換言之’此實施例的負載控制系統包括該 控制終端1Α、f is the switch si (4) under the end of the financial pie, is not included in the group controlled by the group 2, the load L is pressed during a predetermined period, (4) the day of the dance, the fruit = the switch, such as (10) When the load === line, the group control of the control terminal 'below the control terminal 1A: two is controlled. In the control terminal self-operating mode: two: ^ Γΐ the group (four) contains the control = S3 Bu, therefore, the input pin is pressed during the pre-expansion period and then the operation switch is followed by 'when the round eight receiving unit wide == group Control input. When the group unit iG performs the group control, the setting of the control terminal 1 of the control terminal 1 is the second mode: 1 raw = indicates the setting result of the setting. Then, the control unit ^ r匕 (decision packet), the packet containing the setting result and the destination bit C being set as the operation terminal identification code of the operation terminal 2A). Control, unit 1. The packet is transmitted by the method of unicast transmission (determination packet; self-explanatory! The communication unit transmits the signal line Ls. It should be noted that the operation terminal 2A: the control unit 20 temporarily (4) the selection result of the control terminal 1C is temporarily stored. In addition to the memory 23. In addition, when the setting result indicates that the group includes the terminal 1C, the control unit 10 of the control terminal 1C controls the display 15 so that the light emitting element is [-____ On the other hand, when the setting result indicates that the group does not include 1C, the control unit 10 of the control terminal (4) controls the display, and the light-emitting element LD31 is shorter than the first predetermined period. The second 36 201117508 is scheduled to flash. Therefore, the control terminals notify the user of the input of the group. However, the means for displaying whether the setting is included in the group 2 is not limited thereto. In the same step, when the operation switch S11 of the control terminals 1A, 18, and 1D is operated, the control unit 2 of the operation terminal 2A temporarily stores the setting result to the memory 23. If the control terminal recognizes that 1D is included in the group selection operation, the input receiving unit U will switch the mode operation message (equal to the storage completion instruction) when the mode selection switch operation of the terminal 2A is performed by the latter. The control unit is sent to the control unit. When the control unit 20 receives the operation signal, the control unit 2 recognizes the identification code of the control terminal as the control terminal of the control terminals 1A to 1D of the group. Wherein the control terminal is controlled when the group heart is controlled by the batch control. In other words, when the control unit 2 = receives the (four) signal, the control unit 2G will "the terminal belonging to the group to m" The control terminal identifies ^: an identification code, wherein the control terminal is controlled by the batch when the group is controlled by the second batch: when the control unit receives the ^2, the unit 2 belongs to the group. The group of control terminals u control terminal identification code is rewritten to control terminal =. Then, the control unit 2G generates the control mode by the control unit 20 of the login mode:=2A Command; control.p command does not control End! h - Hai type switch to operation mode. Subsequently, clock j = material 10 will be registered mode (four) silly ° sorrow control early 2 〇 generation - packet (transmission 37 201117508 The ^ package has control commands (instruction of these control terminals 1 The login mode is switched to the operation mode), the destination address is 牧α 了 传 ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( ( The control unit 10 of the terminal 1 controls the control system. Γ 赖 赖 娜 娜 鳞 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 。 The control unit 1 does not store any information; 1 2 when the self-registration mode is switched to the operation mode, the operation is checked s: s: 2 〇 send control signal 'to open or close ^ 贝不益15 The light emitting element is thereby used to turn on the light emitting element. Similarly, when the switching from the login mode to the operation mode is completed, each control unit 10 of the node=terminal 1 transmits a control signal to turn on or off the light emitting element of the display 424, thereby turning the light emission on or off. In other words, when the operator terminal 2 (for example, the operation terminal 2A) and the control unit 10 of the secret terminal 1 have a login mode, even if the operation terminal 2 (4) operates, the operation terminal 2B ( _ Fine terminal 2 A) Also; ί; will generate a packet (command signal) from the control terminal of the county, from the remote control. In other words, any of the operating terminals 2 (for example, the operating terminal 2) and the control terminals! When the control mode 10 has the login mode, even if the operation terminal 2 (2B) operates, the operation terminal 2B (rather than the operation terminal 2A) does not generate a mode for executing the control terminal. Control packet (command shouting). That is, in the above login mode, in the case where the operation terminal 2 (26 instead of the operation terminal 2a) 38 201117508 controls the control of the mode control of the control terminals τ, the operation terminal 2 due. The possibility of increasing the flow 1 by packing the package. Therefore, in order to prevent the control unit 20 of the terminal 2 (2, instead of the operation terminal 2 being generated and the phase-transfer packet H is not increased, even if the operation terminal 2 is generated and transmitted, it has a long distance The sealing of the control commands of the terminals is used to execute the slaves, and the operating terminals 2 are configured to generate and transmit the control commands when the::::=::, The packet (life, ==down 'when the operator terminal 1A has a boarding; :=,) is set to discard the second of the packets instead 'even when the terminal 2 has the terminal 1 capable of being at the control terminal 1 When these operations are opened, the JJ f control is controlled by the control terminal itself. When rr::r controls a load L ', there is no secret to increase the flow. If you should pay attention, you can log in (update, cause) The operation terminal 2B cuts the mode group and the second mode group (5) by the above manner, and (the first-steps of registering the identification code, therefore, the level is omitted here. Therefore, the following will explain Log in every -==L dimming step. 贞戟L's dimming level step first 'execute borrowing The operation switches S32, S33, S42, 39 201117508 are operated at a pre-L dimming level. Subsequently, when the operation switch S62 is shaped like a bear = silk day press, the input receiving unit 21 recognizes the load. L is a control command stored in the = unit 20. The control command defines a write), and the input input unit 21 transmits a store command (update, re-receive, to the control unit). 20. Connected control::: When the 'state storage command is loaded, the operation terminal 2 Β石:, 2, after the control terminals of the control terminals 1c and 1D are identified, the second mode in the operation is closed. Group. With the packet generated by the control unit of the 2nd terminal 2B - the packet with the command data is sent back to the current state of the load L (dimming code), the destination bit ^ (which is set to each The control terminal recognizes the self-talking and transmits the packet (request signal) μ early 70 22 to the signal line Ls by the unicast transmission. When the terminal 2B receives the packet (request signal), each g Control terminal lc, 1D control list (four) generation - packet (state message ^ Shape: (indicating the dimming level of the negative 储存 stored in the memory 13), the destination address (which is set as the source address of the packet from the terminal itself), and the source bit ^ (its Set to the control core terminal identification code), and then the control unit 10 sends the packet (status signal) to the control unit 20 of the signal line Ls〇mrapf terminal 2B by means of a -: multicast transmission from the control unit Terminal ic and identification (status signal), and then from the current state (dimming level) of the packet (status signal). Subsequently, the current state of the dimming level of the control L such as the load L is the first _ Control the respective _ control instructions. Coffee Control II 40 201117508 Instructions are stored to the record _. Group controlled operator terminal 2Α μ. Therefore, the operation terminal only performs the operation of the above-mentioned login L. In the state of the load L (the input receiving unit 21 of the dimming operation terminal 2 of the load L receives the state of the load), the control command of the states of the loads (stored therefore) The control unit 2 registers (updates, rewrites) the relationship between the current state and the current state of the load to the memory m L. The non-professional user can also easily log in for the batch control. The relationship of I: /). In this embodiment, the control unit 2 that receives the operation signal to operate the L-shaped 'sad' operating terminal 2 sends a (.month request) to the load: The state returns the control terminal 1 belonging to the mode group of the mode. However, as described above, each time: the control terminal of the mode group] controls the load U = is set to transmit "in the case The control terminal i controls the state of the load L after the load L. Further, the control unit 2 temporarily stores the state of the load L from the control terminal C to the memory 23. Therefore, the control unit 2 of the operation terminal 2 can be brought from the memory 23 to the state of the load L under the control of the terminal 1. In the former case, it is not necessary to store the state of the load L to which the control terminal 1 is connected to the memory 23. Therefore, the former case has an advantage of reducing the space consumption of the memory 23. In the latter case, it is not necessary to transmit a packet (clear signal) of the state in which the command is transmitted to the control terminal 丨. Therefore, the latter case has an advantage of reducing the flow between the control terminal 1 and the operation terminal 2. 41 201117508 In other words, the operation terminal 2B in this embodiment includes the input receiving sapon 21, which is set to receive a control command (storage command) for when the operation switch S62 of the operation terminal 2B is - Press ^ day for the scheduled period; log in to the state of the load L. That is, the control unit 2A of the operation terminal 2 is set to recognize the -first operation input and a second operation input. The control unit 2A of the operation terminal 2 is set to recognize the thief-operation input when the operation switch %i (or 啦) 5 is first pressed. The operation, and the control unit 2 of the terminal 2B is set to recognize that the second operation input ^ period is longer than the first predetermined_time when the operation (4) is pressed during the second dare period. When the control unit 20 receives the first operation input, the control unit 2 performs batch control (mode control). - Anti-field. When the second control input is received, the control unit performs the process of registering the state of the load L. In this way, the operating two end 2 has the operating switch S62 which acts as - for generating the first action! And a switch that is also used to generate the second operational input. In addition, the operation of the second terminal 2 does not simultaneously perform the mode control and the port for logging in to the load state. This configuration makes it possible to improve the convenience of the operation terminal. (Second Embodiment) Fig. 9 shows a system diagram in this embodiment. In the same load control of this embodiment, the 'money terminal 2 is almost the same as the operation terminal 2 of the first embodiment. In addition, the operation terminal 2 is connected to the load port, and is set to directly control the bin. The load control system of this embodiment includes the control terminal 1Α,

至1D 次不同於該控制終端1A之該等控制終端1B 「第—為促進對本發明之理解,該控制終端1A以下稱作 控制終端1A」。該等控制終端1B至id以下稱作「第 42 201117508 一控制終端〗B至ID丨。兮筮—& °X第技制終端1A被設定成從遠 ^具有㈣健健轉敎魏。因此,在具 有徒遠端㈣其他控制終端之功能方面,該第—控制終端 ^不同於該等第二控制終端出至⑴。應注意,此實施例 ^負載控制系統具有基本上等同於該第—實施例之負載控 之該等組件的組件。因此,與該第—實施例相同之 々負載控制线之該等崎具有與第—實施例中相同之元件 付號。 山每-該第二控制終端⑴至①具有與每一該等控制終 ^ 1B至1D之料輯共_組件。此外,絲作終端2 對應於此實施例之第—控制終端1A。該第—㈣終端ιΑ 亦具有與每—該$二控制終端1B至id之該粒件公同的 基本組件。因此,在此省略該第一控制終端u之詳細說明 及圖解說明。 在泫第一控制終端1A中,該操作開關S51對應於第〆 實施例中所說明之群組控制。該等操作開關如及如分 別對應於該第-模式控似該第二模•制。該記憶體13 儲存該等操作開關S51至S53與各自控制終端m至lD之 該等控制終端辨識碼之間的關係,及該等操 丨炱 S53與各自控制終端m至!D之間之控制資訊(調光位準) 之間的關係。換言之’該記憶體13儲存該操作開關S51多 S53及與各自控制終端汨至1D之控制資訊(調光位準) 相關聯之各自控制終端1B纟1D之該等控制終端辨識碼之 間的關係。 43 201117508 作。A偏第-控制終端1A的操作開關s 接收單元^_作喊發送至該控制單元 操作訊號時,該控制單元丨〇存取該記憶體,以便;= ::該=:終Γ至1D之該等負載心最ΐ n亥寺第二控制終端汨至1〇 識碼」,此二者皆對應於當該操作開關S51操作日铸送^ 作訊號。雜制早1G自所獲得的f _賴等負載 該等目前狀態。當該控制單幻G辨識所有負載l具有相同 狀態時,該控制單元10產生一控制命令,以用於將該等負 載L之狀態切換至反轉狀態。(當該控制單元1〇辨識所有 負載^點亮時,該等控制單元1()產生—控制命令以用於關 閉該等負載L。才目反,當該控制單元1〇辨識所有負載l未 點心’ 4控制單元H)產生―控制命令以用於打開該燈 光。^當該控制單元1G辨識該等負載L之—者具有不同於 該等其他負載L之狀態時,該控制單元1〇產生一控制命令 乂用於將所有負载L切換成相同狀態。(當該控制單元1〇 辨識該等-貞載L點亮及料其他貞載l未點亮時,該控 制單元10產生一控制命令以用於打開或關閉該光所有負載 L。、)此外,該控制單元10產生一封包(命令訊號),其具 有資料(其設定為該控制命令)、目的地位址(其設定為該 多點傳送位址)、及源位址(其設定為該控制終端1A之控 制終端辨識碼並將該封包(命令訊號)自該通信單元12 發送至該訊號線Ls。 在該等第二控制終端1B至1D中,當每一該通信單元 201117508 12接收該封包(命令訊號)時,該通信單元12將該封包(命 令訊號)發送至該控制單元10。該控制單元10判斷該封^ (命令訊號)之目的地位址是否等於該第二控制終端自己 的第一控制終端辨識碼。當該控制單元辨識該封包(命令 訊號)之控制命令包含等於該第二控制終端自己的第二二 制終端辨識碼之目的地位址時,該控制單元1G將產生一控 ^訊號,其用於基於對應於該第二控制終端辨識碼的控^ 育訊打開或襲在每-該第二控制終端控制下的該等負載 L。該控制單元10將該控制訊號發送至該負 Μ。接收到該控制訊號時,該負載作業單元Μ根據該控制 訊號打開或關閉該繼電器,藉此該負載作業單元〗4打開或 關閉該等負載L。此外,該控制單元1〇在經過一預定時間 之後產生封包(狀態訊號)。該封包(狀態訊號)具有資料 (其指示在該等負載L被控制之後該等負載L之狀態)、目 的地位址(其等於該第二控制終端接收之封包之源位址的 辨識碼)、及源位址(其設定為該第二控制終端自己的控制 終端辨識碼)。然後該控制單元1()將該封包(狀態訊號) 自e亥通彳§單元12發送至該訊號線Ls。即,該控制單元 在一預定時刻傳送該封包(狀態訊號)。此外,該控制單元 10控制該顯示器15,以便該顯示器15指示在該等負載1 受該等第二控制終端控制後之該等負載L的該等狀態。 另一方面,在該第一控制終端1A中,該通信單元12 接收s亥封包(狀態訊號)’並將該封包(狀態訊號)發送至 该控制單元10。該控制單元1〇自該封包(狀態訊號)辨識 該負載L之目前狀態。該控制單元丨〇將該封包(狀態訊號) 45 201117508 負載L的狀態儲存至該記憶體。然後,去旖類/斜 應於該操作開關ss】之該組中的所有 田_在對 以便改變該it 5亥控制單元10控制該顯示器,The control terminals 1B which are different from the control terminal 1A to the first time are "first to promote the understanding of the present invention, and the control terminal 1A is hereinafter referred to as the control terminal 1A". The control terminals 1B to id are hereinafter referred to as "42th 201117508 a control terminal" B to ID 丨. The 兮筮-& °X technical terminal 1A is set to have a (four) health transition from the far side. The first control terminal is different from the second control terminal to (1) in terms of functions of the remote control terminal (four). It should be noted that the load control system of this embodiment has substantially the same as the first The components of the components of the embodiment are controlled by the load. Therefore, the same load control line as that of the first embodiment has the same component number as in the first embodiment. Mountain per-the second control The terminals (1) to 1 have a common component with each of the control terminals 1B to 1D. Further, the wire terminal 2 corresponds to the first control terminal 1A of this embodiment. The first (four) terminal ιΑ also has Each of the $2 controls the basic components of the terminal of the terminal 1B to the id. Therefore, the detailed description and illustration of the first control terminal u are omitted here. In the first control terminal 1A, the operation switch S51 corresponds to the group described in the third embodiment Controlling the operating switches as and corresponding to the first mode respectively controlling the second mode. The memory 13 stores the operating terminals S51 to S53 and the respective control terminals m to lD for identifying the control terminals The relationship between the codes, and the relationship between the control information S53 and the control information (dimming level) between the respective control terminals m to !D. In other words, the memory 13 stores the operation switch S51 and more S53. And the relationship between the control terminal identification codes of the respective control terminals 1B纟1D associated with the control information (dimming level) of the respective control terminals 11D. 43 201117508 进行.A partial-control terminal 1A When the operation switch s receives the operation signal from the control unit, the control unit accesses the memory, so that: =::=: the final load to the 1D is the most loaded The second control terminal of the temple is connected to the identification code, and both of them correspond to when the operation switch S51 operates the daily casting signal. Miscellaneous 1G self-obtained f _ lai and other loads such current state. When the control phantom G recognizes that all of the loads 1 have the same state, the control unit 10 generates a control command for switching the state of the load L to the inverted state. (When the control unit 1〇 recognizes that all the loads are lit, the control units 1() generate a control command for turning off the loads L. Only when the control unit 1〇 recognizes all the loads l is not The snack '4 control unit H) generates a control command for opening the light. ^ When the control unit 1G recognizes that the load L has a different state than the other loads L, the control unit 1 generates a control command for switching all the loads L to the same state. (When the control unit 1 recognizes that the load L is lit and the other load 1 is not lit, the control unit 10 generates a control command for turning on or off all the loads L of the light.) The control unit 10 generates a packet (command signal) having data (which is set as the control command), a destination address (which is set to the multicast address), and a source address (which is set to the control) Controlling the terminal identification code of the terminal 1A and transmitting the packet (command signal) from the communication unit 12 to the signal line Ls. In the second control terminals 1B to 1D, each of the communication units 201117508 12 receives the packet (command signal), the communication unit 12 sends the packet (command signal) to the control unit 10. The control unit 10 determines whether the destination address of the seal (command signal) is equal to the second control terminal's own a control terminal identification code. When the control unit recognizes that the control command of the packet (command signal) includes a destination address equal to the second control terminal identification code of the second control terminal, the control The unit 1G will generate a control signal for opening or causing the load L under the control of each of the second control terminals based on the control information corresponding to the second control terminal identification code. The control unit 10 Sending the control signal to the negative signal. When receiving the control signal, the load operation unit turns the relay on or off according to the control signal, whereby the load operation unit 4 turns the load L on or off. The control unit 1 generates a packet (state signal) after a predetermined time has elapsed. The packet (status signal) has data (which indicates the state of the load L after the load L is controlled), and the destination address (its An identification code equal to the source address of the packet received by the second control terminal, and a source address (which is set to the second control terminal's own control terminal identification code). Then the control unit 1() encapsulates the packet ( The status signal is sent to the signal line Ls from the unit 12. That is, the control unit transmits the packet (status signal) at a predetermined time. Further, the control unit 10 controls the display. 15. The display 15 indicates the states of the loads L after the loads 1 are controlled by the second control terminals. On the other hand, in the first control terminal 1A, the communication unit 12 receives s The packet (status signal) transmits the packet (status signal) to the control unit 10. The control unit 1 identifies the current state of the load L from the packet (status signal). The control unit 丨〇 the packet (Status signal) 45 201117508 The state of the load L is stored in the memory. Then, all the fields in the group of the operation switch ss] are in the pair to change the control of the it control unit 10 The display,

打Η拉 之指示。(舉例而言,當所有㈣T = 。減,‘ ί 于该先發射το件LDW打開。)以下 ^不能自該第二控制終端1D 制終 之封包(狀態訊號)。如果該第一侧靖 二控制終端1D$—# 4 &制終4认不能自該第 終端1A之控制單包(狀態訊號),該第一控制 包含目的地位址(i封包(重新f試訊號),其 出之控制終端辨嘴、^;^該未傳送封包之第二控制終端 ==r辨識碼)、及控制命令(其』傳= 封包(重新〜Γ之封包)。然後’該第一控制終端1A將該 狀態訊號)時,該第-控制終端 能儲/A將5亥封包(狀態訊號)中該等負載的狀 ==繼13。相反,當未自該第二控制終端m ^回._包(狀態訊號)時’該控制單元1〇控制該顯示器 使用= Ϊ發射元件LD51 ’藉此該顯示器15向該 從用考通知該錯誤。 n之序列圖說明該模式控制(該第二模 工制)的操# §操作該第一控制終端1A之操作開關 3時,該輸人接收單元u接收控制指令 。接收到該控制 a 7時’ 收單元u將該操作訊號發送至該控制單 46 201117508 元10。當該控制單元10接收該操作訊號時,該控制單元 10存取該記憶體,以便獲得「該等控制終端1(:及1D之該 等控制終端辨識碼」,及「與受每一該控制終端及】D 控制之該等負載L有關之控制指令」,此二者皆與當該操作 開關S53操作時之操作訊號有關。然後,該控制單元⑴基 於來自該記憶體13之控制指令(該第二模式控制)產生二 制命令。該控制命令包含一指示,該指示係該控制終端1C 打開受該控制終端1 c控制的負載L至-70%調光位準。該 控制命令亦包含一指示,該指示係該控制終端1D打開受該 控=終端1D控制的負載L至—3Q%調光位準。然後,該控 制單70 10產生一封包(命令訊號)’其具有資料(其設定 為該控制命令)、目的地位址(其設定為該多轉送位址)' 及源位址(其設定為該控制終端辨識碼1A之控制終端辨識 碼隨後,該控制單元1G將該封包(命令訊號)自該通 信單元12發送至該訊號線Ls。應注意,該控制命令不含該 第匕制、’、;知之控制終端辨識碼、及用於控制該第二 制終端1B之控制資訊。 二 在該第二控制終端〗B至1D中,當該等通信單元12 接收到4封包(命令訊號,該等通信單元丨2將該封包 (命令訊號)發送至該控制單元1〇。在該第二控制終端汨 中。該第一控制終端1B之控制單元1〇辨識該封包(命令 二ϋ)不、有等於该第二控制終端1B之控制終端辨識碼的 辛线I因此’销二控制終端1B不控制受該控制終端 ϋ』】的遠等負載l,藉此在該等控制終端1B控制下的 4等負載L保持目前狀態。此外,該第二控制終端產生 201117508 = 訊號)’其具有指示在該控制終端1B控制下 的該專負載L之目前狀態的資料,並 發送至該訊號線Ls。相反,在該第二控制終端 母一δ亥控制早元10中,該控制單元1〇辨識該 訊號)具有等於該第二控制終端1(:及m之控制^端^ 碼的辨谶碼。因為該控制訊號包含用於將該負載L點^ 某一特定Γ光位準之控制訊號,該控制終端1C及1D:每 -該控制單it 1G將-用於打開於某—特定調綠準之控 訊號傳送至該第二控制終端丨c及1D的每—該負載作^單 疋Η,該調光位準對應於該控制訊號的調光位準。當該負 載作業單元14接收該控制訊號時,該負載作業單元^根 據該控制訊號驅動該驅動電路,以便調整每單位時間供應 至該負載L之電功率量。此外’每一該第二控制終端】c及 1D之控制單元10在經過一預定時間之後產生封 訊號)。該封包(狀態訊號)具有目的地位址(其設定為^ 封包(命令訊號)中之源位址之第一控制終端IA之辨識 碼)、源位址(其設定為每一該控制終端1(:及11:)之控制終 知辨4碼)、及資料(其設定為在該控制終端控制該負載乙 之後遠負載L之狀態)。然後,每一該等控制終端1匚及1 〇 的控制單元10將該封包(狀態訊號)自該通信單元12發 送至该訊唬線Ls。此外,該控制單元1〇控制該控制終端自 己的顯示器15,以便改變該顯示器15之指示。 在該第一控制終端1A中,當該通信單元12接收該封 包(狀態訊號)時,該通信單元12將該封包(狀態訊號) 發送至該通信單元12。接收到該封包(狀態訊號)時,該 48 201117508 5制包中該負載L的狀態儲存至該記憶體 如之第二二;屬及7於_開關 ^ ^ #、控制、、,;鳊ic及1D接收到用於通知Hit the instructions. (For example, when all (4) T = . minus, ‘ ί ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ ̄ If the first side Jing 2 control terminal 1D$_# 4 & system terminal 4 can not control the single packet (status signal) from the first terminal 1A, the first control includes the destination address (i packet (re-f test signal) ), the control terminal that distinguishes it, the second control terminal that does not transmit the packet == r identification code), and the control command (the 』 transmission = packet (re- Γ Γ packet). Then 'the first When the control terminal 1A controls the status signal, the first control terminal can store /A the value of the load in the 5 liter packet (status signal) == 13. Conversely, when the packet is not returned from the second control terminal m_. (the status signal), the control unit 1 controls the display to use the = Ϊ transmitting element LD51 'by the display 15 notifying the error to the slave test . The sequence diagram of n illustrates the operation of the mode control (the second molding system). When the operation switch 3 of the first control terminal 1A is operated, the input receiving unit u receives the control command. Upon receiving the control a 7 'receiving unit u sends the operation signal to the control unit 46 201117508 yuan 10. When the control unit 10 receives the operation signal, the control unit 10 accesses the memory to obtain "the control terminal identification codes of the control terminals 1 (: and 1D), and "and each control" The terminal and the control command related to the load L of the D control, both of which are related to the operation signal when the operation switch S53 is operated. Then, the control unit (1) is based on the control instruction from the memory 13 (the The second mode control generates a binary command. The control command includes an indication that the control terminal 1C turns on the load L controlled by the control terminal 1 c to a -70% dimming level. The control command also includes a Instructed that the indication is that the control terminal 1D turns on the load L to the -3Q% dimming level controlled by the control = terminal 1D. Then, the control sheet 70 10 generates a packet (command signal) 'which has data (its setting For the control command), the destination address (which is set to the multi-forward address) and the source address (which is set to the control terminal identification code of the control terminal identification code 1A, the control unit 1G then applies the packet (command) News It is sent from the communication unit 12 to the signal line Ls. It should be noted that the control command does not include the third system, ',; the control terminal identification code, and the control information for controlling the second terminal 1B. In the second control terminals B to 1D, when the communication units 12 receive 4 packets (command signals, the communication units 丨2 send the packets (command signals) to the control unit 1 〇. In the second control terminal, the control unit 1 of the first control terminal 1B recognizes that the packet (command 2) does not have an octet I equal to the control terminal identification code of the second control terminal 1B. 1B does not control the remote load 1 received by the control terminal, whereby the load 4 of 4 under the control of the control terminal 1B maintains the current state. Further, the second control terminal generates 201117508 = signal) The data indicating the current state of the special load L under the control of the control terminal 1B is sent to the signal line Ls. Conversely, in the second control terminal, the control unit 1〇 Identify the signal) The identification code is equal to the control code of the second control terminal 1 (: and m). Since the control signal includes a control signal for the specific L light level of the load L, the control terminal 1C And 1D: each - the control unit it 1G will be used to open a certain specific green control signal transmitted to the second control terminals 丨c and 1D each of the load is made, the dimming The level corresponds to the dimming level of the control signal. When the load operating unit 14 receives the control signal, the load operating unit ^ drives the driving circuit according to the control signal to adjust the supply to the load L per unit time. The amount of electric power is further increased by the control unit 10 of each of the second control terminals c and 1D after a predetermined time has elapsed. The packet (status signal) has a destination address (which is set to the identification code of the first control terminal IA of the source address in the packet (command signal)), and a source address (which is set for each of the control terminals 1 ( : and 11:) The control knows the 4 code) and the data (which is set to the state of the far load L after the control terminal controls the load B). Then, each of the control terminals 1 and 1 of the control unit 10 transmits the packet (status signal) from the communication unit 12 to the communication line Ls. In addition, the control unit 1 controls the control terminal's own display 15 to change the indication of the display 15. In the first control terminal 1A, when the communication unit 12 receives the packet (status signal), the communication unit 12 transmits the packet (status signal) to the communication unit 12. Upon receiving the packet (status signal), the state of the load L in the 48 201117508 5 package is stored to the second part of the memory; the genus and the 7 _ switch ^ ^ #, control, ,,; 鳊ic And 1D received for notification

(狀態訊號)時’該控制單元10操作該 ° 打開该光發射元件LD53。因此,H =:;=r,該第,= 、乂弟―枳式控制相同。因 模式控制之操作的說明。 纽4略料- 匕戶轭例中,與該第一實施例相同,當該第一 ==選擇開關(未顯示)被設定成從』執= 槿七時,該控制終端1A之控制單元10自操作 、工刀、至登錄模式。此外,該控制單以 ,將該具有該指示自操作模式切換至登錄:= 二訊號)自該通信單元12發送至該訊號線 、、後’虽母一該第二控制終端1B至id之控制單元⑺ 封包(錄訊號)時,每—該控制單元ig自操作模 工刀、至登顧式。應注意,在登賴式巾,將該二 =、、、端1B至1D之辨識碼登錄至受該第一控制終端认 組之該等步驟與該第—實施财之該等步驟相 °因此,在此省略將該等第二控制終端1Β至iD之兮耸 ^識石馬登錄至受該第一控制終端1A控制之群組之步^說 明。在此,存找貞餘·統具有複數 端執行該控制(批量控制)之第—控· 在此情況下,當該第-控制終端i的—控制單元i 一模式選·關之㈣自操賴式切換至登_式時^ 49 201117508 π)自齡科城㈣賴式,並狀雜制 為錄模式之-中心。因此,無論該ς ==操作開關之操作而分組,將選定該等第—控: 終、1而非該登錄模式之中心。 利 姐情況下,首先,該負载L之調綠準藉助操(State signal) When the control unit 10 operates the °, the light-emitting element LD53 is turned on. Therefore, H =:;=r, the first, =, and the younger-style control are the same. Description of the operation due to mode control. In the case of the shackle yoke, as in the first embodiment, when the first == selection switch (not shown) is set to YES = 槿7, the control unit 10 of the control terminal 1A Self-operating, tool-knife, to login mode. In addition, the control unit is configured to switch from the communication unit 12 to the signal line with the indication from the operation mode to the login: = two signals, and then control the second control terminal 1B to the id. Unit (7) When the package (recording number) is used, each control unit ig operates from the mold cutter to the board. It should be noted that, in the sacred towel, the steps of registering the identification codes of the two =, , and the ends 1B to 1D to the group recognized by the first control terminal are the same as the steps of the first implementation. The description of the second control terminals 1 to iD is omitted here to log in to the group controlled by the first control terminal 1A. Here, the search and find system has a plurality of terminals to perform the control (batch control) of the first control. In this case, when the control terminal i of the first control terminal i is selected and closed (four) self-operating Lai type switch to Deng _ type ^ 49 201117508 π) from the age of the city (four) Lai, and the miscellaneous system is the center of the recording mode. Therefore, regardless of the operation of the ς == operation switch, the first control: end, 1 is selected instead of the center of the login mode. In the case of Li Jie, first of all, the load L is adjusted by the green

1C' 1D # tn s, Γ ° ^ ? 1A ^ 麵作開關S53在-預定期間按下時, 收該控制指令,然後將用於登::° :接 - m „ , T°S員載狀態之#作訊號發 亥控制早7° I接收_操作職時,該第-控制故 之控制私1()獲得「該負似的目 ^「屬 :第二:莫,之該等控制終端ic及一 應於,操,開關S53。錢,該控制單元 /、載之目則狀悲為该第二模式控制中每一嗲等 =載L的控制資訊,並將該控制資訊儲存至該記憶體=。 =而,如在該第-實施例巾所朗,討_助傳送具有 狀態之指令的封包(命令訊號),而細^ 【圖式簡單說明】 圖1顯示該第—實施例中之負載控制系統之概念圖。 圖2顯示該第—實施例中之控制終端之方塊圖。 圖3顯示該第一實施例中之操作終端之方塊圖。 圖4(a)及(b)圖顯示該第一實施例中之封包。 圖5顯示用於說明該第一實施例中之操作序列。 圖6顯示用於說明該第一實施例中之操作序列。 201117508 圖7顯示用於說明該第一實施例中之登錄模式之下之 操作序列。 圖8顯示用於說明該第一實施例中之登錄模式之下之 操作序列。 圖9顯示該第二實施例中之負載控制系統之概念圖。 圖10顯示用於說明該第二實施例中之操作序列。 圖11顯示用於說明該第二實施例中之操作序列。 圖12顯示習知負載控制系統中之概念圖。 圖13顯示習知負載控制系統中之傳輸訊號之說明圖。 【主要元件符號說明】 1 控制終端 2 操作終端 10 控制單元 11 輸入接收單元 12 通信單元 13 記憶體 14 負載作業單元 15 顯示器 16 電源 20 控制單元 21 操作輸入單元 22 通信單元 23 記憶體 24 顯示器 25 電源 201117508 100 傳輸控制單元 102 操作終端 103 控制終端 104 照明負載 ΙΑ 控制終端 IB 控制終端 1C 控制終端 ID 控制終端 2B 操作終端 2A 操作終端 L 負載 LD11 光發射元件 LD21 光發射元件 LD22 光發射元件 LD31 光發射元件 LD41 光發射元件 LD51 光發射元件 LD52 光發射元件 LD53 光發射元件 LD61 光發射元件 LD62 光發射元件 Lp 電源線 Ls 訊號線 SI 操作開關 Sll 操作開關 52 201117508 S2 操作開關 S21 操作開關 S22 操作開關 S3 操作開關 S31 操作開關 S32 操作開關 S33 操作開關 S41 操作開關 S42 操作開關 S43 操作開關 S51 操作開關 S52 操作開關 S53 操作開關 S61 操作開關 S62 操作開關 Vs 傳輸訊號 531C' 1D # tn s, Γ ° ^ 1 1A ^ When the face switch S53 is pressed during the predetermined period, the control command is received, and then it will be used for the board::°: connect - m „ , T°S load status #的信号号魏海控制早7° I Receive_Operational time, the first-controlling control private 1() gets "The negative-like object": The second: Mo, the control terminals ic And one should, operate, switch S53. Money, the control unit /, the purpose of the load is the control information of each of the second mode control = L, and store the control information to the memory Body =. = and, as in the first embodiment, to help transfer the packet (command signal) with the state of the instruction, and fine ^ [schematic description] Figure 1 shows the first embodiment Figure 2 shows a block diagram of the control terminal in the first embodiment. Figure 3 shows a block diagram of the operation terminal in the first embodiment. Figure 4 (a) and (b) The packet in the first embodiment is shown. Fig. 5 is a view for explaining the operation sequence in the first embodiment. Fig. 6 is a view for explaining the operation sequence in the first embodiment. 201117508 Fig. 7 shows a sequence of operations for explaining the login mode in the first embodiment. Fig. 8 shows a sequence of operations for explaining the login mode in the first embodiment. Fig. 9 shows the second Figure 1 is a diagram showing the sequence of operations in the second embodiment. Figure 11 is a diagram showing the operation sequence in the second embodiment. Figure 12 shows a conventional load control. Figure 13 shows an explanatory diagram of the transmission signal in the conventional load control system. [Main component symbol description] 1 Control terminal 2 Operation terminal 10 Control unit 11 Input reception unit 12 Communication unit 13 Memory 14 Load operation Unit 15 Display 16 Power supply 20 Control unit 21 Operation input unit 22 Communication unit 23 Memory 24 Display 25 Power supply 201117508 100 Transmission control unit 102 Operation terminal 103 Control terminal 104 Lighting load ΙΑ Control terminal IB Control terminal 1C Control terminal ID Control terminal 2B Operation Terminal 2A operation terminal L load LD11 light emitting element LD21 light emitting element LD22 light emitting element LD31 light emitting element LD41 light emitting element LD51 light emitting element LD52 light emitting element LD53 light emitting element LD61 light emitting element LD62 light emitting element Lp power line Ls signal line SI operation switch S11 operation switch 52 201117508 S2 Operation switch S21 Operation switch S22 Operation switch S3 Operation switch S31 Operation switch S32 Operation switch S33 Operation switch S41 Operation switch S42 Operation switch S43 Operation switch S51 Operation switch S52 Operation switch S53 Operation switch S61 Operation switch S62 Operation switch Vs Transmission signal 53

Claims (1)

201117508 七、申請專利範圍: 卜-種負載控制系統,其用於控制至少—負載,該負载控 制系統包括: 至少一控制終端及至少一操作終端; 該控制終端連接至該至少一負載, 該操作終端透過訊號線連接至該控制終端之至少一者, 每一該控制終端單獨具有控制終端辨識碼, 每一該操作終端單獨具有操作終端辨識碼, 該控制終端包含第-輸人接收裝置、第—控制裝置,及 第一通信裝置, 該第一輸人接收裝置具有至少—第—操作開關,以用於 輸入第一控制指令, ^第控制裝置被⑦定成在該第—輸人接收裝置接收 ,第-控制指令時,控制預定負載,以回應該第一控制 々曰7 4預^:負載對應於該第—控制指令,且將藉由該 第一控制裝置控制, 、記憶體、第二控制 該操作終端具有第二輸入接收裝置 裝置及第二通信裝置, 該第二輸人接收裝置具有至少H作開關,以用於 輸入第二控制指令, 、 該記憶體儲存該第二控制指令及與控制資訊相關聯之 —V A拴制、,’ς鳊辨識碼之間的關係,該控制資訊指示預 疋=感’且促使*該控制終端控制之至少_貞载進入該 預定狀態, °Λ 54 201117508 5亥第二通信裝置與該第一通信裝置通信, 該第二控制裝置被設定成辨識該第二控制指令,其由該 第二輸入接收裴置接收,及自該記憶體獲得與該第二控 制指令相關之該控制終端辨識碼及該控制資訊,該第二 控制裝置被設定成產生控制命令,以用於在獲得控制資 汛之基礎上將戎負載控制於該預定狀態,以及透過該訊 號線自該第二通信裝置傳送命令訊號至該控制終端,該 中令吼號包含該控制命令、及獲得控制終端辨識碼, 5亥控制終端被設定成接收經由該第一通信裝置透過該 訊號線而自該第二通信裝置傳送之命令訊號,及在該命 々戒號之控制終端辨識碼等於該控制終端自己的控制 終端辨識碼時,根據該控制命令將該預定負載控制於該 預定狀態, ' 其中 該第一控制裝置被設定成在預定時刻將狀態訊號發送 至該操作終端,該狀態訊號指示受該控制終端控制之預 定負載的目前狀態,以及 該第二控制裝置被設定成辨識該預定負載之目前狀 態,以便判定該目前狀態為該負載之預定狀態,及被設 定成當該第二輸入接收裝置接收到該第二輸入接收裝 置的儲存指令時,將該目前狀態與該控制終端辨識碼之 間的關係儲存至該記憶體。 2、如申請專利範圍第1項所述之負载控制系統,其中 s亥苐一控制裝置被設定成當該第一控制裝置控制該負 55 201117508 載時,傳送狀態訊號,其指示該預定負載的目前狀態, 該第二控制裝置被設定成當該第二控制裝置接收該狀 態讯號時,儲存該負載之狀態,其係被包含於該狀態訊 號中, 該第二控制裝置被設定成當該第二輸入接收裝置接收 該儲存指令時,自該記憶體獲得由該控制終端控制之負 載之狀態,該第二控制裝置被設定成產生該負載與自該 S己憶體所獲得負載狀態之間的關係,且將該關係儲存至 該記憶體。 3、如申請專利範圍第1項所述之負載控制系統,其中 S亥第二控制裝置被設定成當該第二輸入接收裝置接收 該儲存指令時,促使該第二通信裝置將請求訊號發送至 該第一通信裝置, 该第一控制裝置被設定成當該第一通信裝置接收到該 請求訊號時’促使該第一通信裝置將該狀態訊號發送至 5亥第二通信裝置,該狀態訊號指示該負載之目前狀態, 以及 〜 。亥第一控制裝置被設定成自該狀態訊號辨來識該負載 之目則狀態、及被設定成產生該負载與該負載狀態之間 的關係,且該第二控制裝置被設定成將該關係儲存至該 記憶體。 如,凊專利範圍第1項所述之負載控制系統,其中 該第一控制裝置被設定成當該第二操作開關操作於第 —期間時,偵測第一操作輸入, 56 201117508 該第二控制裝置被設定成當該第二操作開關操作於一 長於該第一期間之第二期間時,憤測第二操作輸入, 該控制裝置被設定成自該記憶體獲得對應於該第一操 作輸入之控制終频識碼,及被設定成產生用於控制該 等負載之控制命令,該㈣I置被設定成產生具有該控 制命令及自該記憶體獲得之控制終端辨識碼之命令訊 號,且被妓成透過該訊I⑽該命令訊號發送至該控 制終端,以及 該第二控制裝置被設定成當該控制終端接收該第二操 作輸入時,_由該控祕端控制之該等負載的狀離, 且被設定成產生該等負載與該等負載之該等狀態之間 的關係且《亥第一控制裝置被設定成將該關係 記憶體。 、如t請專利範圍第1項所述之負載控制系統,其中 該操作終端連接由該操作終端控制之至少一負载,及 該f二控制裝置被設定成當該第二輸人接收裝置接收 該苐一控㈣令時,控制由該操作終端控制之該等負 57201117508 VII. Patent application scope: A load control system for controlling at least a load, the load control system comprising: at least one control terminal and at least one operation terminal; the control terminal is connected to the at least one load, the operation The terminal is connected to at least one of the control terminals through the signal line, each of the control terminals separately has a control terminal identification code, and each of the operation terminals separately has an operation terminal identification code, and the control terminal includes a first-input receiving device, a control device, and a first communication device, the first input receiving device having at least a first operational switch for inputting a first control command, and wherein the first control device is configured to be at the first input receiver Receiving, at the first control command, controlling the predetermined load to respond to the first control 々曰7 4: the load corresponds to the first control command, and is controlled by the first control device, the memory, the first Controlling the operation terminal to have a second input receiving device device and a second communication device, the second input receiving device having H is a switch for inputting a second control command, the memory stores the second control command and a relationship between the VA system and the 'ς鳊 identification code associated with the control information, the control information indication Presensing = feeling 'and causing * the control terminal to control at least _ 贞 load into the predetermined state, ° 2011 54 201117508 5 第二 second communication device communicates with the first communication device, the second control device is set to recognize the a second control command received by the second input receiving device, and the control terminal identification code associated with the second control command and the control information are obtained from the memory, and the second control device is configured to generate control a command for controlling the load to be in the predetermined state on the basis of the obtained control information, and transmitting a command signal from the second communication device to the control terminal through the signal line, the middle nickname including the control command And obtaining the control terminal identification code, the 5H control terminal is configured to receive the transmission from the second communication device through the signal line via the first communication device The command signal and the control terminal identification code of the life command ring are equal to the control terminal's own control terminal identification code, and the predetermined load is controlled according to the control command to the predetermined state, where the first control device is set Transmitting a status signal to the operation terminal at a predetermined time, the status signal indicating a current status of a predetermined load controlled by the control terminal, and the second control device is configured to recognize a current status of the predetermined load to determine the current status The state is a predetermined state of the load, and is set to store the relationship between the current state and the control terminal identification code to the memory when the second input receiving device receives the storage instruction of the second input receiving device body. 2. The load control system of claim 1, wherein the control device is configured to transmit a status signal indicating the predetermined load when the first control device controls the negative 55 201117508 In the current state, the second control device is configured to store the state of the load when the second control device receives the status signal, which is included in the status signal, and the second control device is configured to be Receiving, by the second input receiving device, the state of the load controlled by the control terminal from the memory, the second control device being set to generate the load and the load state obtained from the S memory Relationship and store the relationship to the memory. 3. The load control system of claim 1, wherein the second control device is configured to cause the second communication device to send the request signal to the second input receiving device when the storage command is received. The first communication device is configured to: when the first communication device receives the request signal, to cause the first communication device to send the status signal to the second communication device, the status signal indication The current state of the load, as well as ~. The first control device is configured to recognize the state of the load from the status signal, and is set to generate a relationship between the load and the load state, and the second control device is set to the relationship Save to this memory. For example, the load control system of claim 1, wherein the first control device is configured to detect the first operational input when the second operational switch is operated during the first period, 56 201117508 the second control The device is configured to invert the second operational input when the second operational switch is operated for a second period longer than the first period, the control device being configured to obtain from the memory corresponding to the first operational input Controlling the final frequency identification code and being configured to generate a control command for controlling the load, the (IV) I setting being set to generate a command signal having the control command and the control terminal identification code obtained from the memory, and being smashed The command signal is sent to the control terminal through the message I(10), and the second control device is set to be a departure of the load controlled by the control terminal when the control terminal receives the second operation input. And being set to generate a relationship between the loads and the states of the loads and the first control device is set to the relationship memory. The load control system of claim 1, wherein the operation terminal is connected to at least one load controlled by the operation terminal, and the f control device is configured to receive the second input receiving device苐一控(四)令, controlling the negative 57 controlled by the operation terminal
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