JPS60200495A - Illumination control system - Google Patents

Illumination control system

Info

Publication number
JPS60200495A
JPS60200495A JP59056120A JP5612084A JPS60200495A JP S60200495 A JPS60200495 A JP S60200495A JP 59056120 A JP59056120 A JP 59056120A JP 5612084 A JP5612084 A JP 5612084A JP S60200495 A JPS60200495 A JP S60200495A
Authority
JP
Japan
Prior art keywords
lighting
control system
operation panel
card
main operation
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP59056120A
Other languages
Japanese (ja)
Other versions
JPH0447955B2 (en
Inventor
堀 虹子
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Toshiba Electric Equipment Corp
Toshiba Denzai KK
Original Assignee
Toshiba Electric Equipment Corp
Toshiba Denzai KK
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Toshiba Electric Equipment Corp, Toshiba Denzai KK filed Critical Toshiba Electric Equipment Corp
Priority to JP59056120A priority Critical patent/JPS60200495A/en
Publication of JPS60200495A publication Critical patent/JPS60200495A/en
Publication of JPH0447955B2 publication Critical patent/JPH0447955B2/ja
Granted legal-status Critical Current

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  • Photometry And Measurement Of Optical Pulse Characteristics (AREA)
  • Circuit Arrangement For Electric Light Sources In General (AREA)

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】[Detailed description of the invention]

[発明の分野1 本発明は、多数の照明f2 (a+を複数の端末(幾を
介して主操作盤から集中の前制御Jる照明制御システム
に関し、特に児t?ンリにJ、る調圧制illをt−1
イ1うセンサ出力範囲をマークシ−1〜i+式等のカー
トによって指定できるJ、うにしたシス−7ノ\に関す
る3゜[発明の前頭1 従来、複数の端末機の各々に接わ1;された単数または
複数の照明負荷を主操作盤からの制御信号に基づき、集
中的に制御Jる照明制御シスラl\が知られている。こ
のようなシステム、には単数」、たは複数の光センサが
設けられ−Cおり、かつ各光センサに対応して可変抵抗
器智が設(Jられ−Cいた。ぞして、該可変抵抗器等に
よって各>Y、 l=ンリの感1αおよび出力レベル等
を各)v、L−ンリの設置。\れだ場所の状況等に応じ
て補正していI、二。 しかしながら、このような従来形にJ3いでは、各光セ
ンサごとに調節手段を要Jるためシステムが複雑になり
コストが1−賓り−るど共に、0I変低(f″L器等を
手動により調節Jるため無駄な人手を要しかつ調節精度
を高めることがC′きイfいという不都含があった。 1発明の屹I−3よび[1的1 本発明の目的は、前)!1;の従来形にc1月ノる間ν
+’+ t:、+に鑑み、照明制御システムにおいてジ
−クシ−1一方式等のカードによって尤1ビンリの出力
範囲を指定しこの範囲内で調光制御を行なり()めると
いうM4想に基づぎ、シスvi\をm1略化しC−iス
トをfl(下させると共に、感厄補i1E ¥jのため
の調節を[バ“i lliかつ確実に行なうことができ
る、1、うにtすることにある。 本発明は、主操作盤、該=1−操4’L Pi)Iと伝
j2:線を介して接続されかつそれぞれ甲数、1、たは
複数の照明0荷が接続された複数の端末(幾、および単
数ま/jは複数の光センサを具1#fi I)、該−1
−操イ′1盤り目)制御信号を伝送Jることに、1−り
各照明tb イ、hの照!σ制御l+動作を行なう照明
制御システムにおいて、該1操作盤にカードリーダを設
置J、ノJ−ドによっC1各光センサの出力レベルの範
囲を指定し、各光ヒンザの実際の出力レベルが指定され
た範囲内にあるどき対応J−る照明り仙の調光制御を行
<−ffiうことを特徴とJ−る。 [実施例の説明I Jス下、図面にJ、り木フチ明の実/Ifji例を説明
りる。。 第1図は、本発明の1実施例の係わる照明制御システム
の構成を示Joli−i1図のシスtLLよ、I F/
: l’+盤1、主操作盤1と伝jX線24介しく1)
(続、きれ!、:複数の端末113−1.3−2、・・
・、;3−n、各OJ:末機に接続された11数:1、
た(よ複数の照明f;i lI?i /I、おにび光レ
ンリ5−1、;)−2、・・・、り1丁1等(ご」;っ
て構成される1、;1[た、1操V1熊1)Jll、カ
ー川・リーダ6および図示しイ<いゾ[Iレツリ等を(
I’Iろ、。 第1図のシステムにおいC1−1操イ′1fI31は/
°
[Field of the Invention 1] The present invention relates to a lighting control system in which a large number of lights (a+) are centrally controlled from a main operation panel via a plurality of terminals, and in particular, the present invention relates to a lighting control system in which a large number of lights (a+) are centrally controlled from a main operation panel via a plurality of terminals. ill to t-1
A1 The sensor output range can be specified using a cart such as the Marksee-1 to i+ type. A lighting control system is known that centrally controls one or more lighting loads based on control signals from a main operation panel. In such a system, one or more light sensors are provided, and a variable resistor is provided corresponding to each light sensor. Using resistors, etc., set the sensitivity 1α and the output level, etc. of each > Y, l = unri, etc.) v, l = unri. \Corrected according to the situation of the location etc. I, 2. However, in contrast to this conventional type, the J3 requires adjustment means for each optical sensor, making the system complex and increasing the cost. Since the adjustment is performed manually, there are disadvantages in that it requires unnecessary manpower and it is difficult to improve the adjustment accuracy. , previous)!1; in the conventional form c1 month gnorunma ν
+'+ t:, In view of +, M4 specifies an output range of 1 to 1 in the lighting control system using a card such as the Zixie-1 one-way type, and performs dimming control within this range. Based on the idea, we can abbreviate cisvi\ to m1 and lower C-i to fl(, and also make adjustments for compensation i1E ¥j. The present invention is to provide a main operation panel, which is connected to the main operation panel through a line, and which has one or more lights, respectively. A plurality of terminals (number and singular or /j are connected to a plurality of optical sensors 1#fi I), the -1
-Operation A'1) In order to transmit the control signal, the light of each lighting tb and h is transmitted! In a lighting control system that performs σ controll+ operation, a card reader is installed on the first operation panel, and the output level range of each optical sensor is specified by the node, and the actual output level of each optical hinge is The feature is that the dimming control of the corresponding illumination lamp is performed whenever the light falls within a specified range. [Description of Embodiments IJ Below, an example of Riki Fuchi Akira no Mi/Ifji will be explained in the drawings. . FIG. 1 shows the configuration of a lighting control system according to an embodiment of the present invention.
: l' + panel 1, main operation panel 1 and X-ray transmission 24 1)
(continue!,: multiple terminals 113-1.3-2,...
・, ;3-n, each OJ: 11 number connected to terminal machine: 1,
(multiple lights f;i lI?i /I, Onibi Hikari Renri 5-1,;)-2,..., ri1cho1 etc. (go';) 1,; 1 [Ta, 1 operation V1 Bear 1) Jll, Ka River Leader 6 and illustrated
I'I. In the system shown in Figure 1, C1-1 operation I'1fI31 is /
°

【ルッ1」の働ぎにより各端末機1: If続され1
.′照明(1荷の点灯、消灯および調光制御を(1イタ
−う。各端末機3−1、:3−2.・・・、3−8nに
は伝)Z線2を介しC主操作5J1からの制御信yJを
受信りる回路、13J、び受信した制御信号にlitつ
き各照明負A /Iの制御すなわち点灯、開割、おJ、
び調)に舌を行イ「)回路を具備り−る。 各照明負荷の前庭の制御は、例λぽ最A’!I’!<I
 IQの−、′3− 20%から100%ま(パの9わ囲で10%刻みに、す
rリスタ等にJ:り電源の流1m角を制御イ1−i月に
応じて調節することにJ:つC行イi7 ;a′)Il
l、る、1第2図は、第1図のシステムにおい(用いら
れるカードの1例どしてのマークシー1−・1J式のh
 −ドを示す。同図のノノートにおいr 1.1. 、
各>Y、1?ンリ5−1.5−2、・・・、5−mごど
に8)に【ノンリの出力電圧の上限および下限が思マー
ク(・指定される。そして、各光l?ンリの出力がこれ
らの指定、\れた上限および下限にJζつC定めl)れ
る範囲内にある場合は、対応覆る照明tQ Aの調)1
′、制御が?−1なわれる。例えば、光はシリ−5−1
1ζン(+−1) においては、1.OVからLOVの
出力の揚台(J調光制御が行なわれる。 第3図は、第1図のシステムに用いられている主操作盤
の内部構成をポリ−。ず<rわち、主操、作盤は、プロ
セッサ10、各光I2ン(」−からの出力を受Uる入力
回路11、マルチlレタリ12、A D−1ンバータ1
3、入力バッファ14 、1.5 、人出カバツノ、]
16、そして前述のカードリーダ6を貝(411?Jる
。人力回4− 路11は、各光センリからの出力仁シシを増幅すろ11
つ幅器等によって構成される。 第3図の回路にL12い−Cは、カードリーダ6M J
:つて前述のカードの読み取りが行44: :1つれ、
fjaみ取られたカード情報が人力バッフ7’1.’+
を介しく −/’ 11廿ツザ10に入力される。−プ
j、音光1ごンリからの出力は入力回路11におい(増
幅されフルーf/’lノクサ12に入力される。マルヂ
プ1ノクリ12には了1−ド切り換え信号が印加されて
a′−3す、各光IKンリの出力に相当する信号が順次
選択され(△1〕−1ンバータ13に入力される。Δ1
)=1ンバータ1:(【、1.光レンチの出力を順次デ
ジタル顧に変換し人)】バッファ14を介してプロセッ
サ10に人力する1、ノ゛【11?ツリ10はある1つ
の光セン(J−の出力が入力された時、この出力がカー
ドによっ−C指定され1.−電11の範囲内にあるか否
かを判定する。もし、この出力/)り指定された範囲内
にあれば、入出力バッファ16を介して伝送線に制御信
号を)スりえJ応する照明C1荷の調光制御を行なう。 この場合、照明C′1ijiの調光1.1最高照度の2
0%の明るさから 100%の明るさJ、で゛の範囲で
行<ffiわれ、この範囲内(゛例;?、 1.f 1
0%刻みのいずれかの照度で設定される。イしで、カー
トにj;っで指定されlζI!ンリ出力の1−限電月r
’20%の照度になるように設定され、ト限電月(” 
100%の照度になるように設定さねる。t〕Iごが−
)で、尤1?ンサの出ツノがノノードC指’tFlされ
た1−限とF限の電圧の中間の電圧Cある鳴合には比1
&l配分にJ、請求めた照度に設定される。 もし、光センリの出力がカード(゛指定さ1また1限電
圧よりも高い場合にはブ[ルツリ10はi−1応りる照
明負荷の消灯を?1ない、)に(2ンリ出力が[ζ限電
圧よりも低い場合に(,1,100%の照lσに設定り
る。 なお、光廿ンサは各端末機に対応1〕て設り’COJ、
く、あるいは複数の端末機を含むグループごとに設【フ
てもよい。 [発明の効果1 このように、本発明(Jよれば、感度?+Ii il用
のif変低抵抗器が不要に<7り回路が簡略化されイ1
1頼1/1が向−1−する。特に、光レンリの数が多い
場合にはこれらの効果が人ぎくイfす、またバードウr
アの二]ストが」;り低トリーる1、さらに、ノ)−ド
に、J、−)で例えば電圧鎮で光レンリの一1限お、1
.び下限電1[を指定するから、設定)の差がイ4: 
< ’/rす、極めて高精度かつ効宰的に制御1ノ/\
ルの設定を11なうことが11能になる。
Each terminal 1: If connected by the function of [Ru 1]
.. 'Lighting (lighting, turning off, and dimming control of one load (1 cycle). Transmitted to each terminal 3-1, :3-2..., 3-8n) C main via Z line 2 Operation 5: A circuit for receiving the control signal yJ from J1, 13J, and the control of each lighting negative A/I with lit on the received control signal, that is, lighting, splitting, and
The vestibular control of each lighting load is performed using the example λPomax A'!I'!<I
IQ -, '3- From 20% to 100% (in 10% increments in the 9th circle of the P), control the 1m square power flow to the Sr Lister, etc., according to the I1-i month. Especially J: C line i7; a') Il
l, ru, 1 Figure 2 shows the Markcy 1-1J type h in the system of Figure 1 (as an example of the card used).
- Indicates a code. In the note in the same figure, r 1.1. ,
Each>Y, 1? Every 5-1. If these specifications are within the range defined by the upper and lower limits, the corresponding illumination tQ A key) 1
′、Control? -1 is called. For example, light is Siri-5-1
In 1ζn(+-1), 1. The output platform from OV to LOV (J dimming control is performed. Figure 3 shows the internal configuration of the main operation panel used in the system shown in Figure 1. , the production board includes a processor 10, an input circuit 11 that receives output from each optical I2 ('-), a multi-l lettering 12, and an A-D-1 inverter 1.
3, input buffer 14, 1.5, crowd of people,]
16, and the above-mentioned card reader 6 (411?J).
It is composed of width instruments, etc. In the circuit shown in Figure 3, L12-C is the card reader 6M J.
:The above card is read at line 44: :One,
fja's stolen card information is transferred to a human buffer 7'1. '+
-/' 11 is input to the user 10 via -/' 11. The outputs from the input circuit 11 and the sound and light 1 switch are amplified and input to the full f/'l node 12.A 1-mode switching signal is applied to the multiple 1 node 12, and the output is a' -3, signals corresponding to the outputs of each optical IK are sequentially selected (△1) and input to the -1 inverter 13. Δ1
) = 1 Inverter 1: ([, 1. Converts the output of the optical wrench sequentially into a digital converter)] 1, No. [11? When the output of one optical sensor (J-) is input, the tree 10 determines whether this output is specified by the card as -C and is within the range of 1.-Electric 11.If this output /) If it is within the specified range, a control signal is sent to the transmission line via the input/output buffer 16 to control the dimming of the corresponding lighting C1. In this case, the dimming of the lighting C′1iji is 1.1 and the maximum illuminance is 2.
From 0% brightness to 100% brightness J, the line <ffi is set in the range of
The illuminance is set in 0% increments. Then, add it to your cart and add it to your cart! 1-limit electric month r of output
'The illuminance is set to 20%,
Set the brightness to 100%. t]I-
) So, 1? When the output horn of the sensor is at the non-node C finger'tFl, the voltage C is intermediate between the voltages of the 1-limit and the F limit, and the ratio is 1.
&lThe allocation is J and the requested illuminance is set. If the output of the optical sensor is higher than the card (specified 1 or 1 limit voltage), the block 10 will turn off the lighting load corresponding to i-1. [When the voltage is lower than the ζ limit voltage (, set to 1,100% illumination lσ. In addition, an optical sensor is installed corresponding to each terminal 1])'COJ,
It may be configured for each group, or for each group containing multiple terminals. [Effect of the invention 1] As described above, the present invention (according to J) eliminates the need for an IF transformer resistor for sensitivity?+Ii il and simplifies the circuit.
1 request 1/1 goes -1-. In particular, when there are a large number of light rays, these effects can be very effective, and also cause bird dows.
A second] strike is ``low tree 1, furthermore, in node 2, J, -), for example, in Voltage Station, Hikaru Renri's 11th period, 1
.. The difference between the lower limit voltage 1 [specifying and setting) is 4:
<'/r, extremely high precision and effective control 1/\
It becomes 11 functions to change the settings of the file to 11.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は本発明の1実7+lii例に係わる照明制御シ
ステムの構成を示1ブ[−1ツク回路図、第2図(,1
第1図のシステムに用いら杓るカートの1例を承りQ’
i而図面そし″C第3図【。j第1図のシステムにJ−
3(−Jる主操作盤の内部構成を;i< −U −7t
:+ツク1ipl路図−t゛8する。 1:主操作盤、2:伝送線、 3−13−2、・・・、3−n ;端末(ツL4;照明
負荷、 5−1.5−2、・・・、5−m;光セン1ノ、6:カ
ードリーダ、10;ゾ1−ルッリ、11;入力回路、1
2;マルチブレクリ−113;Anコンバータ、14.
15:入力バッファ、16:入出力バッフ1゜
FIG. 1 shows the configuration of a lighting control system according to an embodiment of the present invention.
Q'
i The drawing and ``C Figure 3.
3 (-J the internal configuration of the main operation panel; i < -U -7t
:+Tsuku1ipl route map-t゛8. 1: Main operation panel, 2: Transmission line, 3-13-2,..., 3-n; terminal (L4; lighting load, 5-1.5-2,..., 5-m; light Sen 1 No, 6: Card reader, 10; Zo 1-Rulli, 11; Input circuit, 1
2; Multi-break-113; An converter, 14.
15: Input buffer, 16: Input/output buffer 1゜

Claims (1)

【特許請求の範囲】 1、主操作盤、該主操作盤と17(送線を介して田続さ
れかつそれぞれ単数J、たt;I: N数の照明(1荷
が接続された複数の端末機、お。j、び甲数まL−は複
数の光ヒンサを興備(]、該a−操作盤から制御1r;
 j’iを伝送することにより各照明fm 1Xllの
前厄制御動1′1を行なう照明制御システl\において
、該主操作?Prにカードリーダを設け、カードにJ、
−)で−各W、 1?ンリの出力レベルの範囲を指定し
、各>1’; Lンリーの実際の出力レベルが指定8れ
た範囲内に(bるとき対応する照明負荷の調光制御を行
なうことを特徴どする照明制御シスデ11゜ 2、前記カードはマークシート方i(のh−ドである特
許請求の範囲第11fl記載の照明制御システム。
[Scope of Claims] 1. A main operation panel, 17 (connected to the main operation panel via a transmission line and each having a singular number J, t; I: N number of lights (a plurality of lights connected to one load) The terminal device, O.J, and A/L- are equipped with multiple optical sensors (), and can be controlled from the a-operation panel 1r;
In the lighting control system l\\ which performs the foreshadowing control operation 1'1 of each lighting fm 1Xll by transmitting the main operation ? A card reader is installed on the Pr, and the card is J.
-) in - each W, 1? A lighting system characterized in that when the actual output level of the lamp is within the specified range (b), the dimming control of the corresponding lighting load is performed. 11. The lighting control system according to claim 11, wherein the control system 11.2 is a mark sheet type i (h-card).
JP59056120A 1984-03-26 1984-03-26 Illumination control system Granted JPS60200495A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP59056120A JPS60200495A (en) 1984-03-26 1984-03-26 Illumination control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP59056120A JPS60200495A (en) 1984-03-26 1984-03-26 Illumination control system

Publications (2)

Publication Number Publication Date
JPS60200495A true JPS60200495A (en) 1985-10-09
JPH0447955B2 JPH0447955B2 (en) 1992-08-05

Family

ID=13018206

Family Applications (1)

Application Number Title Priority Date Filing Date
JP59056120A Granted JPS60200495A (en) 1984-03-26 1984-03-26 Illumination control system

Country Status (1)

Country Link
JP (1) JPS60200495A (en)

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS595597A (en) * 1982-06-30 1984-01-12 松下電工株式会社 Dimming control circuit
JPS5923493A (en) * 1982-07-29 1984-02-06 鹿島建設株式会社 Illumination automatic concentration control system
JPS5960989A (en) * 1982-09-30 1984-04-07 三菱電機株式会社 Illumination control system

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS595597A (en) * 1982-06-30 1984-01-12 松下電工株式会社 Dimming control circuit
JPS5923493A (en) * 1982-07-29 1984-02-06 鹿島建設株式会社 Illumination automatic concentration control system
JPS5960989A (en) * 1982-09-30 1984-04-07 三菱電機株式会社 Illumination control system

Also Published As

Publication number Publication date
JPH0447955B2 (en) 1992-08-05

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