JPH049535A - Air conditioning network system - Google Patents

Air conditioning network system

Info

Publication number
JPH049535A
JPH049535A JP2109522A JP10952290A JPH049535A JP H049535 A JPH049535 A JP H049535A JP 2109522 A JP2109522 A JP 2109522A JP 10952290 A JP10952290 A JP 10952290A JP H049535 A JPH049535 A JP H049535A
Authority
JP
Japan
Prior art keywords
air conditioner
telephone
information
air
set temperature
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
JP2109522A
Other languages
Japanese (ja)
Other versions
JP2800363B2 (en
Inventor
Sakuo Sugawara
菅原 作雄
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.)
Mitsubishi Electric Corp
Original Assignee
Mitsubishi Electric Corp
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 Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Priority to JP2109522A priority Critical patent/JP2800363B2/en
Publication of JPH049535A publication Critical patent/JPH049535A/en
Application granted granted Critical
Publication of JP2800363B2 publication Critical patent/JP2800363B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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  • Air Conditioning Control Device (AREA)

Abstract

PURPOSE:To cause a surrounding environment of an occupant to be coincided with a preference of the occupant by a method wherein as a feeling of the occupant is input through a near-by telephone set, a system controller controls a relative intensity between the telephone set and an air conditioner, calculates a set temperature correction range in response to the feeling information and controls the air conditioner in reference to the stored data. CONSTITUTION:As information of an inter-office telephone exchange 11 is received, a relative intensity is calculated in reference to a telephone address and a set temperature correction range of each of air conditioners 18 is calculated. Operation temperature of each of the air conditioners 18 is calculated in reference to the temperature information of an environment sensor 3 of the telephone set 1. Since one air conditioner 18 has a plurality of telephone sets 1, temperature information is averaged by a weigh average method with the relative intensity so as to calculate a set temperature of each of the air conditioners 18. Each of the air conditioners 18 is operated to get this set temperature, the aforesaid operation is repeated for a specified period of time. A feeling information from each of the telephone sets 1 is received, the set temperature of each of the air conditioners 18 having the relative intensity is varied, a mean set temperature is calculated in response to the set temperature of each of the air conditioners stored and then it is specified. With such an arrangement, the environment is set in response to the averaged preference of the occupant.

Description

【発明の詳細な説明】 [産業上の利用分野] 本発明は、複数の電話機と空調機を有し、電話機周囲の
居住者の環境を複数の空調機で制御し。
DETAILED DESCRIPTION OF THE INVENTION [Industrial Application Field] The present invention has a plurality of telephones and an air conditioner, and the environment of a resident around the telephone is controlled by the plurality of air conditioners.

快適な環境を得ようとする空調システムの制御に関する
ものである。
It concerns the control of air conditioning systems to provide a comfortable environment.

[従来の技術] 空調機は、居住者周囲の環境を制御し、快適な環境にす
るために使われるものである。特に、オフィスにおいて
は、仕事の能率改善につながるために、多く使われてい
る。
[Background Art] Air conditioners are used to control the environment around residents and make them comfortable. In particular, it is widely used in offices to improve work efficiency.

また、オフィスにおいては、温度、湿度等の空調環境の
押押や、防災システムの制御のため、環境情報の収集が
行われている。第8図から第10図は5例えば特開平1
−141454号公報に示された環境上収集システムを
示すものである。第8図は原理構成図であり、構内電話
交換機(11)に接続されている複数の電話機(11に
センサ部(3)が設けられ、センサ部(3)により検出
した環境情報evは。
Furthermore, in offices, environmental information is collected in order to control the air-conditioned environment, such as temperature and humidity, and to control disaster prevention systems. Figures 8 to 10 are 5, for example, JP-A-1
This figure shows an environmental collection system disclosed in Japanese Patent No. 141454. FIG. 8 is a diagram showing the basic configuration, in which a plurality of telephones (11) connected to a private branch exchange (11) are provided with a sensor section (3), and environmental information ev detected by the sensor section (3) is displayed.

電話線で構内電話交換機(11)に転送される。構内電
話交換機(11)では、受信した各電話機対応の環境情
報evを収集して一定の情報処理を加え、環境情報EV
として監視センターに渡す。環境情報センターでは、構
内電話交換機(11)に置かれ各電話機(1)からの収
集情報に処理を加える。第9図はフロア区画の例示図、
第1O図は、処理内容を表現する機能図である。X座標
をA、B、C・・・で区分し、Y座標を1.2.3・・
・で区分すれば1例えば7区画(A、2)での環境情報
evは電話アドレス2002の電話機(1)より検出さ
れる。同様に区画(A。
It is transferred to a private telephone exchange (11) via a telephone line. The private telephone exchange (11) collects the received environmental information EV corresponding to each telephone, performs certain information processing, and converts it into environmental information EV.
and pass it on to the monitoring center. The environmental information center is placed in a private branch exchange (11) and processes the information collected from each telephone (1). FIG. 9 is an illustration of floor divisions;
FIG. 1O is a functional diagram expressing processing contents. Divide the X coordinate into A, B, C... and the Y coordinate by 1.2.3...
If the environment information is divided by 1, for example, 7 sections (A, 2), the environmental information ev will be detected from the telephone (1) having the telephone address 2002. Similarly, partition (A.

l)での環境情報evは電話アドレス2001の電話機
(月 より検出される。このように電話機のあるところ
の環境情報は、確実に検出でき、監視センターに環境情
報を送ることができる。また、第11図は9例えば実開
平1−153765号公報に示された空調制御システム
であり、電話機に温度検知センサを設は電話機のある部
屋の空調機を制御を制御している。図において、空調機
(18)の設けられた部屋に備えられた電話機(1)の
内蔵温度検知センサにより検知した温度データおよび外
部電話機から設定された温度情報を電話線(2)および
構内交換機(11)を介してあらかじめ設定された通報
先である主空調制御装置(20)に伝送する。主空調制
御装置(20)受信した温度データに基づいて内蔵の空
調コントローラ (21)により温度検知センサ内蔵電
話機(1)のある部屋の空調機を制御する。このように
温度検知センサ内蔵電話機のある部屋の空調機は主空調
制御装置に内蔵の空調コントローラにより制御できる。
The environmental information ev in l) is detected from the phone with the phone address 2001 (month).In this way, the environmental information where the phone is located can be reliably detected and the environmental information can be sent to the monitoring center. FIG. 11 shows an air conditioning control system shown in, for example, Japanese Utility Model Application Publication No. 1-153765, in which a temperature detection sensor is installed in a telephone to control the air conditioner in the room where the telephone is located. The temperature data detected by the built-in temperature detection sensor of the telephone (1) installed in the room where the telephone (18) is installed and the temperature information set from the external telephone are transmitted via the telephone line (2) and the private branch exchange (11). Based on the temperature data received by the main air conditioning control device (20), the built-in air conditioning controller (21) transmits the information to the main air conditioning control device (20), which is the preset notification destination. Controlling the air conditioner in a certain room.In this way, the air conditioner in the room where the telephone with a built-in temperature detection sensor is located can be controlled by the air conditioning controller built into the main air conditioning control device.

[発明が解決しようとする課題] 従来の環境情報収集システムは以上のように構成されて
いるので、このように電話機のあるところの環境情報は
、確実に検出でき、監視センターに環境情報を送ること
ができる。環境情報は確実に検出できるが、その情報を
使用し、快適なオフィス環境になるように制御すること
に使用されない。
[Problem to be solved by the invention] Since the conventional environmental information collection system is configured as described above, it is possible to reliably detect the environmental information where the telephone is located and send the environmental information to the monitoring center. be able to. Although environmental information can be detected reliably, this information is not used to control the environment to create a comfortable office environment.

また、従来の温度検知センサ内蔵電話機を使用した空調
制御システムは以上のように構成されているので、温度
検知センサ内蔵電話機の温度情報により環境制御は可能
である。しかし9人の温熱感覚は温度だけで決まるもの
ではなく他の環境要素である湿度、気流、輻射やこれら
の分布の影響を受け、さらに人の着衣や活動量の影響を
受ける。オフィスには複数の在室者がおり、環境の分布
や感覚の相違により、在室者の温熱感覚は異なっている
。オフィスは広く、在室者の近くの環境がその近くの一
台の空調機だけで環境が決まることはなく、在室者の感
覚に合致した環境を創出することは困難である。
Furthermore, since the conventional air conditioning control system using a telephone with a built-in temperature detection sensor is configured as described above, environmental control is possible using temperature information from the telephone with a built-in temperature detection sensor. However, the thermal sensation of nine people is not determined only by temperature, but is also influenced by other environmental factors such as humidity, airflow, radiation, and their distribution, as well as by the person's clothing and activity level. There are multiple people in the office, and the thermal sensations of the people in the room differ due to the distribution of the environment and differences in their senses. Offices are large, and the environment near the occupants is not determined by just one air conditioner nearby, making it difficult to create an environment that matches the sensibilities of the occupants.

本発明は、このような問題点を解消するためになされた
もので、使用者が自分の感覚を入力するだけで、使用者
の周囲の環境を制御し、快適な環境を得ることを目的と
しており、さらに、空調機の運転効率を上げ省エネルギ
ーで低コストの空調環境制御方法を提供することを目的
とするものである。
The present invention was made to solve these problems, and the purpose of the present invention is to control the environment around the user and create a comfortable environment just by inputting the user's senses. Furthermore, it is an object of the present invention to provide an air conditioning environment control method that improves the operating efficiency of air conditioners, saves energy, and is low cost.

[課題を解決するための手段] 本発明に係わる空調ネットワークシステムは。[Means to solve the problem] The air conditioning network system according to the present invention is as follows.

在室者の空調環境に対する感覚を入力する感覚入力部と
、この情報を自動的に送信する自動データ送信手段を備
えた複数の電話機と、この複数の電話機からの信号を受
信する情報受信部、各電話機に対応して分散して設けら
れた複数の空調機と複数の電話機の関係強度および関係
強度によって各空調機の設定温度補正幅が予め定められ
ているデータが記憶されているメモリ、上記情報受信部
からの受信信号を処理しどの電話機からの信号かを特定
し感覚データを選択しこれらのデータから上記の該当関
係強度と各空調機の設定温度補正幅を読みだし上記空調
機の設定条件を演算する演算部、この演算部の演算出力
を空調機への制御信号に変換する空調機設定部を備えた
ものである。
a sensory input unit that inputs the sensation of the air conditioned environment of the person in the room; a plurality of telephones equipped with automatic data transmission means that automatically transmits this information; and an information reception unit that receives signals from the plurality of telephones; A memory storing data in which a set temperature correction width of each air conditioner is predetermined based on the relationship strength between a plurality of air conditioners distributed and provided corresponding to each telephone and the plurality of telephones; Processes the received signal from the information receiving unit, identifies which phone the signal is from, selects the sensory data, reads out the above-mentioned relationship strength and set temperature correction width of each air conditioner from these data, and sets the above-mentioned air conditioner. It is equipped with a calculation section that calculates conditions, and an air conditioner setting section that converts the calculation output of this calculation section into a control signal to the air conditioner.

[作用] 上記のように構成された空調ネットワークシステムでは
、在室者が自分の近くの電話機にある感覚入力部から感
覚をインプットすると、その電話機は内蔵の自動発振機
能により、空調ネ・ソトワークシステム制御装置へその
情報を送信する。空調ネットワークシステム制御装置は
、記憶されているデータからその電話機と各空調機の関
係強度を読みだし、さらにこの関係強度と感覚情報から
各空調機の設定温度補正幅を読みだし空調機の設定条件
を演算し、この演算結果を空調機への制御信号に変換し
空調機を制御するため、在室者の周囲の環境を在室者の
好みに合わせて創出する。
[Function] In the air conditioning network system configured as described above, when a person in the room inputs sensations from the sensory input section of a nearby telephone, the telephone uses its built-in automatic oscillation function to activate the air conditioning network. Send the information to the system controller. The air conditioning network system control device reads the strength of the relationship between the phone and each air conditioner from the stored data, and further reads the set temperature correction range of each air conditioner from this strength of relationship and sensory information, and sets the setting conditions of the air conditioner. In order to control the air conditioner by converting the calculation result into a control signal to the air conditioner, the environment around the person in the room is created to match the preferences of the person in the room.

[実施例] 以下1本発明の一実施例を図を用いて説明する。[Example] An embodiment of the present invention will be described below with reference to the drawings.

第1図はこの発明の構成図であり、(1)はオフィス等
の一部屋に設けられた複数の電話機である。第2図は上
記電話機(1)の外観図、第3図は上記電話機fi+の
機能構成図であり、(2)は電話線、(3)は温度・湿
度などを検出する環境センサ、(4)は使用者の暑い、
寒い等の快適感覚を入力可能な感覚入力部、(5)は電
話線 (2)に接続し9通話、データ通信等の際に電話
線捕捉・確立・復旧等を行う電話回線インタフェース(
NCU)(6)は環境センサの検出データ、感覚入力情
報を電話の音声情報に変換するモデム、(7)は環境セ
ンサ(3)、感覚入力部(4)の情報を決められた電話
に送信する自動ダイヤル部、(8)は環境センサ(3)
、感覚入力部(4)、モデム(6)、電話回線インタフ
ェース(5)等を制御するCPU 、  (9)は通常
の音声情報を送受信するハンドセット、  (101は
ダイアル部、  (11)は、多くのオフィスに設置さ
れ、電話機(1)が複数接続されている構内電話交換機
、  (12)は、電話機(1)同様に構内電話交換機
(11)に接続されている空調システム制御機である。
FIG. 1 is a block diagram of the present invention, and (1) shows a plurality of telephones installed in one room such as an office. Fig. 2 is an external view of the above-mentioned telephone (1), and Fig. 3 is a functional configuration diagram of the above-mentioned telephone fi+, in which (2) is a telephone line, (3) is an environmental sensor that detects temperature and humidity, etc. ) is the user's hot,
(5) is a sensory input section that can input comfortable sensations such as feeling cold; (5) is a telephone line interface (5) that connects to the telephone line (2) and captures, establishes, and restores the telephone line during calls, data communications, etc.;
NCU) (6) is a modem that converts the detection data of the environmental sensor and sensory input information into telephone voice information, (7) transmits the information of the environmental sensor (3) and sensory input unit (4) to a designated telephone. (8) is the environmental sensor (3)
, a CPU that controls the sensory input section (4), modem (6), telephone line interface (5), etc., (9) is a handset that transmits and receives normal voice information, (101 is a dial section, (11) is a (12) is an air conditioning system controller that is connected to the private branch telephone exchange (11) like the telephones (1).

この空調システム制御機(12)は、電話回線インタフ
ェース (13) 、音声信号を感覚情報、環境情報に
変換するモデム (141、メモリ (15) 、上記
電話回線インタフェース(131、モデム(141。
This air conditioning system controller (12) includes a telephone line interface (13), a modem (141) that converts audio signals into sensory information and environmental information, a memory (15), the telephone line interface (131), and a modem (141).

メモリ (15)を制御し、空調機の設定条件を演算す
るCPU f16L この空調機の設定条件を空調機の
制御信号へ変換する空調機設定部(17)により構成さ
れている。なおメモリ (15)には第4図に示すよう
な各電話機と各空調機の関係強度、第5図に示すような
関係強度と設定温度補正幅などが記憶されている。(1
8)は一部屋あるいは各部屋に設定されている複数の冷
暖房機、換気装置などの空調機であり、  (19] 
は空調システム制御機(12)の空調機設定部(17)
の信号を空調機にお(る信号線である。
It is comprised of a CPU f16L that controls the memory (15) and calculates the air conditioner setting conditions; and an air conditioner setting section (17) that converts the air conditioner setting conditions into air conditioner control signals. The memory (15) stores the relationship strength between each telephone and each air conditioner as shown in FIG. 4, the relationship strength and set temperature correction range as shown in FIG. (1
8) is an air conditioner such as multiple air conditioners, heating and cooling units, ventilation equipment, etc. installed in one room or each room, (19)
is the air conditioner setting section (17) of the air conditioning system controller (12)
This is the signal line that sends the signal to the air conditioner.

上記のように構成された空調ネットワークシステムの動
作について説明する。第6図は、システム制御装置(1
2)のメモリ (15)に格納されているプログラムの
フローチャート図である。プログラムがスタートし、構
内電話交換機[1)からの情報をステップ(sooll
で受信すると、ステップ(S0021で電話アドレスか
ら関係強度を演算する。関係強度は、第4図のようにな
っており1例えば電話アドレス2002とすれば、空調
機No、 lとの関係強度は30%、空調機No、 2
との関係強度は20%、その他の空調機の関係強度は0
%と演算される。ステップ(S003)でこの関係強度
から各空調機(18)の設定温度補正幅を演算する。各
空調機(18)の設定温度補正幅は、第5図のようにな
っている。感覚情報が「寒いときJで空調機No、 l
の関係強度は、前例と同様に30%の時+0.6[de
gl 、空調機No、 2の関係強度が20%の時+0
.4 [degl となる。ステップ(SOO41で電
話機(11内蔵の環境センサ(3)の温度情報から各空
調機(18)の運転温度を演算する。−台の空調機(1
8)には複数の電話機(1)があるので、温度情報を関
係強度で重み平均など平均化する必要がある。また、空
調機(18)の設定温度や空調機内蔵室温センサの温度
でも良い。ステップfsOO51で各空調機(18)の
設定温度を算出する。空調機No、 lの運転温度が2
6.0[’C] 、空調機No、 2の運転温度が。
The operation of the air conditioning network system configured as described above will be explained. Figure 6 shows the system control device (1
2) is a flowchart of the program stored in the memory (15). The program starts and collects information from the private branch exchange [1].
When received, the relationship strength is calculated from the telephone address in step (S0021).The relationship strength is as shown in Fig. 4.For example, if the telephone address is 2002, the relationship strength with air conditioner No. 1 is 30. %, air conditioner No. 2
The relationship strength is 20%, and the relationship strength of other air conditioners is 0.
Calculated as %. In step (S003), the set temperature correction width of each air conditioner (18) is calculated from this relationship strength. The set temperature correction width of each air conditioner (18) is as shown in FIG. Sensory information is ``When it's cold, press J to turn the air conditioner on, l.''
As in the previous example, the relationship strength is +0.6 [de
+0 when the relationship strength of gl, air conditioner No. 2 is 20%
.. 4 [degl]. Step (SOO41 calculates the operating temperature of each air conditioner (18) from the temperature information of the environmental sensor (3) built in the phone (11).
Since there are a plurality of telephones (1) in 8), it is necessary to average the temperature information using a weighted average based on the strength of the relationship. Alternatively, the set temperature of the air conditioner (18) or the temperature of a room temperature sensor built into the air conditioner may be used. In step fsOO51, the set temperature of each air conditioner (18) is calculated. The operating temperature of air conditioner No. 1 is 2.
6.0 ['C], the operating temperature of air conditioner No. 2.

26.5[’C] とすると、空調機No、 lの設定
温度は26.0+ 0.6=26.6 [’C] 、空
調機No、 2の設定温度は26.5十0.4・26.
9[’C] と演算される。新しい設定温度は、現在の
運転温度を基準に決められているので、どのような感覚
入力でも適切に設定温度が決められる。ステップ(50
06)でこの空調機の設定温度を記憶し、ステップ(S
OO7)で設定温度を空調機設定部(177、信号! 
(191を介して空調機(18)に指示を送る。各空調
機(18)は、この設定温度になるように運転を行う。
26.5 ['C], the set temperature of air conditioner No. 1 is 26.0 + 0.6 = 26.6 ['C], and the set temperature of air conditioner No. 2 is 26.5 + 0.4・26.
It is calculated as 9['C]. Since the new set temperature is determined based on the current operating temperature, the set temperature can be appropriately determined based on any sensory input. Step (50
06), the set temperature of this air conditioner is memorized, and step (S
OO7) to set the temperature in the air conditioner setting section (177, signal!
(Instructions are sent to the air conditioners (18) via 191. Each air conditioner (18) operates to reach this set temperature.

電話機(1)に感覚入力をインプットすることにより、
その電話機は)の周囲の環境が、複数の空調m (18
1により制御される。しかし、各電話機(1)からの情
報は、バラバラに空調機システム制御機(12)に入力
されるのが通常であり1種々の情報で設定温度がふらつ
くなどの減少が考えられる。本実施例では、ステップ(
50061、ステップ(5008)以降で設定温度のふ
らつきの解消をはかっている。ステップfsOO8)で
5分程度の一定時間の間、ステップ(SOOI)からス
テップ(5007)までを繰返し、いろいろな電話機(
1)からの感覚情報を受信し、関係強度の存在する各空
調機(18)の設定温度を変化する。一定時間経過する
とステップfsOO9)に進み、ストアした各空調機の
設定温度から平均設定温度を演算し、ステップ(SOI
O)で各空調機(18)に設定温度を指示している。こ
れにより、一定時間毎に各空調機の設定温度が平均化さ
れ、平均化された居住者の好みに環境が設定される。
By inputting sensory input into the telephone (1),
If the surrounding environment of the phone is multiple air conditioners (18
1. However, the information from each telephone (1) is normally input to the air conditioner system controller (12) separately, and it is conceivable that the set temperature may fluctuate due to various pieces of information. In this example, step (
Step 50061, after step (5008), attempts are made to eliminate fluctuations in the set temperature. In step fsOO8), steps (SOOI) to (5007) are repeated for a fixed period of about 5 minutes, and various telephones (
1) and changes the set temperature of each air conditioner (18) for which there is a related strength. After a certain period of time has elapsed, the process proceeds to step fsOO9), where the average set temperature is calculated from the stored set temperatures of each air conditioner, and step (SOI
O) instructs each air conditioner (18) to set temperature. As a result, the temperature settings of each air conditioner are averaged at regular intervals, and the environment is set to the averaged preferences of the resident.

第7図は、上記実施例とは別の動作例を示すシステム制
御装置(12)のメモリ (15)に格納されているプ
ログラムのフローチャート図である。
FIG. 7 is a flowchart of a program stored in the memory (15) of the system control device (12) showing an operation example different from the above embodiment.

プログラムがスタートシ、構内電話交換機(11)から
の情報をステップ(slol、1で受信すると、ステッ
プfs102)で各電話機(1)からの情報をストアす
る。ステップ(s103)で電話アドレスから関係強度
を演算する。関係強度は、第4図のようになっており1
例えば電話アドレス2002とすれば、空調機No、 
1との関係強度は30%、空調機NO12との関係強度
は20%、その他の空調機の関係強度は0%と演算され
る。ステップ(S104)でこの関係強度などから各空
調機(18)の吹出風量、吹出風向などを演算し、空調
機設定部(17) 、信号線(19)を介して空調機(
18)に指示を送る。感覚入力が「寒いときjの冷房時
は、吹出風量を減らし、感覚入力が「暑いとき」の冷房
時は、吹出風量を増やすように空調機(18)の指示を
送る。ステップfs1051で5分程度の一定時間の間
、ステップ(SIOI)からステップfs104)まで
を繰返し、いろいろな電話機filからの感覚情報を受
信し、関係強度の存在する各空調機(18)の吹出風量
、吹出風向を設定する。この一定時間の間、各空調機(
18)の設定温度の変更はしない。一定時間経過すると
ステップ(S1061に進み、ストアした各電話機毎に
情報(感覚)を整理する。例えば、IF’寒いとき」−
「暑いとき」−r寒いとき」の時は、最後のr寒いとき
jという情報にする。「寒いときj−1暑いときjの時
は、「暑いときJの情報にするなど適切に情報を整理す
る。ステップ1s107)では、ステップ(51061
で整理した各電話機(1)の感覚情報をもとに第4図か
ら各空調機(18)の関係強度を演算する。ステップ(
5108)では、関係強度をもとに第5図から各空調機
(18)の設定温度幅を演算しストアし、ステップ(S
1091で空調機毎に平均設定温度補正幅を演算する。
When the program receives information from the private telephone exchange (11) at step (slol, 1), it stores the information from each telephone (1) at step fs102. In step (s103), the relationship strength is calculated from the telephone address. The relationship strength is as shown in Figure 4.1
For example, if the phone address is 2002, the air conditioner No.
The relationship strength with No. 1 is calculated as 30%, the relationship strength with air conditioner No. 12 is calculated as 20%, and the relationship strength with other air conditioners is calculated as 0%. In step (S104), the airflow volume, airflow direction, etc. of each air conditioner (18) are calculated from this relationship strength, etc., and the air conditioner (18) is connected to the air conditioner (
Send instructions to 18). Sends an instruction to the air conditioner (18) to reduce the airflow volume during cooling when the sensory input is ``when it is cold'', and to increase the airflow volume during cooling when the sensory input is ``when it is hot''. In step fs1051, steps (SIOI) to step fs104) are repeated for a certain period of time of about 5 minutes, and sensory information from various telephones fil is received, and the blowing air volume of each air conditioner (18) for which there is a relationship strength is , set the blowout direction. During this certain period of time, each air conditioner (
18) Do not change the set temperature. After a certain period of time has elapsed, proceed to step (S1061) and organize information (feelings) for each stored phone. For example, IF 'When it's cold'.
In the case of "when it is hot" - r when it is cold, the information is set to the last r when it is cold. "When it's cold, it's j-1 when it's hot, it's j. Organize the information appropriately, such as "When it's hot, it's J." In step 1s107, step (51061
The relationship strength of each air conditioner (18) is calculated from FIG. 4 based on the sensory information of each telephone (1) organized in the above. Step (
5108), the set temperature range of each air conditioner (18) is calculated and stored from FIG. 5 based on the relationship strength, and the step (S
In step 1091, an average set temperature correction width is calculated for each air conditioner.

ステップ(SIIO)では、各電話機(11情報から各
空調機(18)の設定温度を演算する。各空調機(18
)の設定温度は、第4図の関係強度の重み平均で求める
のが良い。ステップ(Sill)で各空調機(18)の
設定温度を演算し、ステップ(S112)で設定温度を
空調機設定部(17) 、信号線(19)を介して空調
機(18)に指示を送る。ステップ(S1131で各空
調機(18)の吹出風量、吹出風向を指示しているのは
、ステップ+51041での指示を元に戻すためである
。これは、感覚情報をインプットしても、空調機(18
)の設定温度が一定時間後しか行われないため、感覚情
報を受付けた直後に在室者の分りやすい空調機(18)
の吹出風量、吹出風向を変化させ、在室者の満足感を上
げようとするものである。
In step (SIIO), the set temperature of each air conditioner (18) is calculated from the information of each telephone (11).
) is preferably determined by the weighted average of the relationship strengths shown in FIG. In step (Sill), the set temperature of each air conditioner (18) is calculated, and in step (S112), the set temperature is instructed to the air conditioner (18) via the air conditioner setting section (17) and the signal line (19). send. The reason why the blowout air volume and blowout direction of each air conditioner (18) are instructed in step (S1131) is to restore the instruction in step +51041.This is because even if sensory information is input, the air conditioner (18
) is set only after a certain period of time, so the air conditioner (18) is easily understood by the occupants immediately after receiving sensory information.
The aim is to increase the satisfaction of the people in the room by changing the amount and direction of the air being blown out.

なお、感覚情報がない場合も、電話機に設けられた温度
・湿度センサなど環境センサからの信号により、空調機
の設定条件に制御することもできる。
Note that even if there is no sensory information, the air conditioner can be controlled to the set conditions using signals from environmental sensors such as temperature and humidity sensors installed in the phone.

また、感覚情報で空調機の0N10FF制御することも
可能であり、この場合、関係強度の大きい空調機よりO
Nさせ、または、関係強度の小さい空調機より叶Fさせ
ることにより、省エネルギな運転ができる。
It is also possible to perform 0N10FF control of the air conditioner using sensory information; in this case, the O
Energy-saving operation can be achieved by turning the air conditioner to N or turning it to F rather than an air conditioner with a lower relative strength.

ところで、上記説明では、複数の電話機からの情報で、
複数の空調機を制御することを主に述べたが、環境セン
ターに運転状況を送信することも可能であり、また9通
常の電話網としての利用ができることはいうまでもない
By the way, in the above explanation, information from multiple phones,
Although we have mainly described controlling multiple air conditioners, it is also possible to send the operating status to an environmental center, and it goes without saying that it can also be used as a regular telephone network.

[発明の効果] 本発明によれば、一般的なオフィスでは、在室者の近(
に電話機があり、この電話機に設けられた感覚入力部で
感覚をインプットすることができるので、在室者は、自
分の感覚を簡単に空調システムに知らせることができ、
空調システムは、電話機の自動データ送信手段により送
信される感覚情報をもとに、予め決められている各電話
機と空調機の関係強度を演算し、この関係強度から求め
られる設定温度補正幅を演算し、各空調機の設定温度な
ど空調機の設定条件を決めるので、感覚情報のインプッ
トがあった電話機の近くの環境を複数の空調機で制御す
るので、在室者の好みに合せた環境を確実につくること
ができるという効果がある。
[Effects of the Invention] According to the present invention, in a general office, it is possible to
There is a telephone in the room, and the sensory input section on this telephone allows the occupants to input their senses to the air conditioning system.
The air conditioning system calculates the predetermined strength of the relationship between each phone and the air conditioner based on the sensory information sent by the automatic data transmission means of the phone, and calculates the set temperature correction width determined from this strength of relationship. Since the setting conditions of the air conditioners, such as the set temperature of each air conditioner, are determined, the environment near the telephone where sensory information is input is controlled by multiple air conditioners, so the environment can be tailored to the preferences of the occupants. It has the advantage of being able to be produced reliably.

また、各空調機が、関連して制御され、負荷が集中する
ことがなく、適切に制御されるので、空調機の運転効率
を上げ、省エネルギで低コストな運転ができるという効
果がある。
In addition, each air conditioner is controlled in a related manner, and the load is not concentrated, and the air conditioners are appropriately controlled. This has the effect of increasing the operating efficiency of the air conditioner and enabling energy-saving and low-cost operation.

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

第1図は本発明の一実施例を示す構成図、第2図は本発
明の一実施例の電話機の外観図、第3図は第2図の電話
機の機能構成図、第4図は複数の電話機を複数の空調機
の関連を示す関係強度図。 第5図は関係強度と設定温度補正幅の関係特性図、第6
図は本発明の一実施例の動作を示すフローチャート、第
7図は第6図とは別の実施例の動作を示すフローチャー
ト、第8図は従来の空調システムの構成図、第9図はそ
の動作を説明するフロア区画図、第10図はその動作を
説明する説明図、第11図は他の従来例の構成図である
。 図において、(1)は電話機、(4)は感覚入力部、 
 (12)は空調ネットワークシステム制御装置。 (15)はメモリ、  (16)は演算部、  (17
1は空調機設定部である。 なお、各図中同一符号は同一または相当部分を示す。
Fig. 1 is a block diagram showing an embodiment of the present invention, Fig. 2 is an external view of a telephone according to an embodiment of the present invention, Fig. 3 is a functional block diagram of the telephone shown in Fig. 2, and Fig. 4 shows a plurality of A relationship strength diagram showing the relationship between a telephone and a plurality of air conditioners. Figure 5 is a relationship characteristic diagram between relationship strength and set temperature correction width;
7 is a flowchart showing the operation of an embodiment of the present invention, FIG. 7 is a flowchart showing the operation of a different embodiment from FIG. 6, FIG. 8 is a configuration diagram of a conventional air conditioning system, and FIG. FIG. 10 is an explanatory diagram explaining the operation, and FIG. 11 is a configuration diagram of another conventional example. In the figure, (1) is a telephone, (4) is a sensory input unit,
(12) is an air conditioning network system control device. (15) is memory, (16) is arithmetic unit, (17
1 is an air conditioner setting section. Note that the same reference numerals in each figure indicate the same or corresponding parts.

Claims (1)

【特許請求の範囲】 一部屋に分散して設けられた複数の空調機と、居住者の
空調環境に対する感覚を入力する感覚入力部、この情報
を自動的に送信する自動データ送信手段を備え、一部屋
に分散して設けられた複数の電話機と、 上記複数の電話機からの信号を受信する情報受信部、各
電話機に対応して各空調機の関係強度および関係強度に
よって各空調機の設定温度補正幅が予め定められている
データが記憶されているメモリ、 上記情報受信部からの受信信号を処理しどの電話機から
の信号かを特定し感覚データを選択し、これらのデータ
から上記メモリの該当関係強度、各空調機の設定温度補
正幅を読みだし、 上記空調機の設定条件を演算する演算部、 この演算部の演算出力を空調機への制御信号に変換する
空調設定部を備えた空調ネットワークシステム制御装置
とからなることを特徴とする空調ネットワークシステム
[Scope of Claims] A room comprising a plurality of air conditioners distributed in one room, a sensory input section for inputting residents' sensations regarding the air-conditioned environment, and automatic data transmission means for automatically transmitting this information, A plurality of telephones distributed in one room, an information receiving section that receives signals from the plurality of telephones, and a setting temperature of each air conditioner according to the relationship strength of each air conditioner corresponding to each telephone. A memory in which data with a predetermined correction width is stored; Processes the received signal from the information receiving section, identifies which telephone the signal is from, selects sensory data, and selects the sensory data corresponding to the memory from these data. An air conditioner equipped with a calculation unit that reads out the relationship strength and set temperature correction width of each air conditioner and calculates the setting conditions of the air conditioner, and an air conditioning setting unit that converts the calculation output of this calculation unit into a control signal to the air conditioner. An air conditioning network system comprising a network system control device.
JP2109522A 1990-04-25 1990-04-25 Air conditioning network system Expired - Fee Related JP2800363B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2109522A JP2800363B2 (en) 1990-04-25 1990-04-25 Air conditioning network system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2109522A JP2800363B2 (en) 1990-04-25 1990-04-25 Air conditioning network system

Publications (2)

Publication Number Publication Date
JPH049535A true JPH049535A (en) 1992-01-14
JP2800363B2 JP2800363B2 (en) 1998-09-21

Family

ID=14512392

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2109522A Expired - Fee Related JP2800363B2 (en) 1990-04-25 1990-04-25 Air conditioning network system

Country Status (1)

Country Link
JP (1) JP2800363B2 (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2008045779A (en) * 2006-08-11 2008-02-28 Shimizu Corp Air-conditioning control system
JP2009014219A (en) * 2007-07-02 2009-01-22 Sanki Eng Co Ltd Air conditioning system
JP2010048547A (en) * 2002-12-10 2010-03-04 Panasonic Electric Works Co Ltd Environmental equipment control system
JP2013253778A (en) * 2013-09-26 2013-12-19 Azbil Corp Environmental adjustment system
JP2014219234A (en) * 2013-05-02 2014-11-20 日本電信電話株式会社 Sensor information correction system

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61149748A (en) * 1984-12-25 1986-07-08 Toshiba Corp Controlling system for air conditioner
JPS63156970A (en) * 1986-12-19 1988-06-30 Matsushita Seiko Co Ltd Remote control device for air conditioner
JPH01141454A (en) * 1987-11-28 1989-06-02 Mirai Biru Kenkyu Kaihatsu Kk System for collecting environmental information

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61149748A (en) * 1984-12-25 1986-07-08 Toshiba Corp Controlling system for air conditioner
JPS63156970A (en) * 1986-12-19 1988-06-30 Matsushita Seiko Co Ltd Remote control device for air conditioner
JPH01141454A (en) * 1987-11-28 1989-06-02 Mirai Biru Kenkyu Kaihatsu Kk System for collecting environmental information

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010048547A (en) * 2002-12-10 2010-03-04 Panasonic Electric Works Co Ltd Environmental equipment control system
JP2008045779A (en) * 2006-08-11 2008-02-28 Shimizu Corp Air-conditioning control system
JP4706976B2 (en) * 2006-08-11 2011-06-22 清水建設株式会社 Air conditioning control system
JP2009014219A (en) * 2007-07-02 2009-01-22 Sanki Eng Co Ltd Air conditioning system
JP2014219234A (en) * 2013-05-02 2014-11-20 日本電信電話株式会社 Sensor information correction system
JP2013253778A (en) * 2013-09-26 2013-12-19 Azbil Corp Environmental adjustment system

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