JPH04106351A - Air-conditioning control system - Google Patents

Air-conditioning control system

Info

Publication number
JPH04106351A
JPH04106351A JP2224106A JP22410690A JPH04106351A JP H04106351 A JPH04106351 A JP H04106351A JP 2224106 A JP2224106 A JP 2224106A JP 22410690 A JP22410690 A JP 22410690A JP H04106351 A JPH04106351 A JP H04106351A
Authority
JP
Japan
Prior art keywords
sensor
air conditioner
signal
self
address
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
JP2224106A
Other languages
Japanese (ja)
Other versions
JP2851147B2 (en
Inventor
Masahiro Inoue
雅裕 井上
Yoshiaki Ito
善朗 伊藤
Tatsuhiko Sugimoto
達彦 杉本
Shigeru Nakayama
茂 中山
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 JP2224106A priority Critical patent/JP2851147B2/en
Publication of JPH04106351A publication Critical patent/JPH04106351A/en
Application granted granted Critical
Publication of JP2851147B2 publication Critical patent/JP2851147B2/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 change the combination of remote sensors with an air conditioner according to splitting or uniting of rooms without altering the wiring by a method wherein the use of a built-in sensor in the air conditioner or remote sensors provided outside the air conditioner can be desirably controlled by a setting device in the manner of remote control. CONSTITUTION:A setting device (1) outputs a control signal to an air conditioner (2); after receiving this control signal, the control part (22) of the air conditioner (2) reads the stored value of the address pertaining to the location of the sensor and then judges whether is belongs to a built-in sensor (26) or to a remote sensor (3). A sensor value inputted to a control part (32) is outputted to a communication part (31), conveyed by a transmission line (6), and received by a communication part (21) of the air conditioner (2), or a sensor value produced by the built-in sensor (26) is outputted to the control part (22); by analyzing such a sensor value the control part (22) sets conditions for optimal air conditioning.

Description

【発明の詳細な説明】 [産業上の利用分野コ 空調機を制御する空調制御システムに関し、特に空調機
と空調機外に設けられた複数のリモートセンサの対応関
係を自由に関係づけられるように設定することに関する
[Detailed description of the invention] [Industrial field of application] Regarding an air conditioning control system that controls an air conditioner, in particular, it is possible to freely associate correspondence between an air conditioner and a plurality of remote sensors installed outside the air conditioner. Concerning setting.

[従来の技術] 第5図に従来の空調制御システムの概念図を示す。[Conventional technology] FIG. 5 shows a conceptual diagram of a conventional air conditioning control system.

システム構成説明 従来の一般的な空調システムは、内蔵センサを有する空
調機(1)と、室内の所定の場所に設置され室内温度等
を感知するリモートセンサ(3)と、空調機(2)の空
調状態を設定する設定装置(])と、から構成される。
System configuration description A conventional general air conditioning system consists of an air conditioner (1) that has a built-in sensor, a remote sensor (3) that is installed at a predetermined location in the room to detect indoor temperature, etc., and an air conditioner (2) that has a built-in sensor. It consists of a setting device (]) that sets the air conditioning status.

システム接続関係説明: 空調機(1)には、リモートセンサ(3)から出力され
る感知信号が入力され、また設定装置(1)から出力さ
れる設定信号が入力される。
System connection relationship description: The air conditioner (1) receives a sensing signal output from a remote sensor (3) and a setting signal output from a setting device (1).

装置動作説明: 設定装置(1)において所望の室内温度等が設定される
と、この設定情報に対応する設定信号が空調機(2)に
出力される。
Device operation description: When a desired indoor temperature, etc. is set in the setting device (1), a setting signal corresponding to this setting information is output to the air conditioner (2).

空調機(2)は入力された設定信号に基づき空調回路が
動作され設定信号に対応して負荷機が制御される。
In the air conditioner (2), the air conditioning circuit is operated based on the input setting signal, and the load machine is controlled in accordance with the setting signal.

リモートセンサ(3)は室内の温度等を感知し、その温
度等に対応する感知信号か空調機(2)に入力されると
、前記設定信号と感知信号との差分に対応する空調制御
がなされる。
The remote sensor (3) senses the indoor temperature, etc., and when a sensing signal corresponding to the temperature, etc. is input to the air conditioner (2), the air conditioning is controlled according to the difference between the setting signal and the sensing signal. Ru.

通常室内の温度等を快適な温度に空調するためには、部
屋の所望の位置にリモートセンサ(3)を設置して室内
温度を感知することか理想的であるか、空調制御システ
ムの設置工事費用等を安価にしたい場合や部屋の大きさ
が小さい場合はリモートセンサ(3)を使用せず空調機
(2)の内蔵センサを使用する。
Normally, in order to air condition the indoor temperature to a comfortable temperature, it is ideal to install a remote sensor (3) at a desired position in the room to detect the indoor temperature. If you want to keep costs low or if the room is small, use the built-in sensor in the air conditioner (2) instead of the remote sensor (3).

[発明が解決しようとする課題] しかしながら、第6A図に示す空調制御システムにおい
て、一つの部屋に空調機が2台設置され、1台の設定装
置(1)で2台の空調機(2)、(5)が制御されてお
り、また室内の所定の場所に1個のリモートセンサ(3
)が設置され、リモートセンサ(3)が感知している温
度等の感知信号が2台の空調機(2)、(5)に入力さ
れて空調制御されているような場合には、第6B図に示
すように部屋のレイアウト変更等で部屋が2つに間仕切
られて、それぞれの部屋に空調機か存在するようになる
とそれぞれの室内温度等も異なるので別々に室内温度等
を感知する必要がある。第2の空調機(5)は第2の部
屋に存在し更にリモートセンサ(3)も第2の部屋に存
在するので第2の部屋の空調に寄与できるが、しかし第
6B図において第1の空調機(2)は第2の部屋に設置
されているリモートセンサ(3)て第1の部屋の室内温
度等を感知することができないので、第1の空調機(2
)の内蔵センサで室内温度等を感知するように変更する
必要があるがこのような変更はできなかった。
[Problems to be Solved by the Invention] However, in the air conditioning control system shown in FIG. 6A, two air conditioners are installed in one room, and one setting device (1) is used to control the two air conditioners (2). , (5) are controlled, and one remote sensor (3) is installed at a predetermined location in the room.
) is installed, and the sensing signals such as temperature detected by the remote sensor (3) are input to the two air conditioners (2) and (5) to control the air conditioning, the 6B As shown in the figure, when a room is partitioned into two due to a change in the layout of the room, and each room has an air conditioner, the indoor temperature, etc. of each room is different, so it is necessary to sense the indoor temperature, etc. separately. be. Since the second air conditioner (5) exists in the second room and the remote sensor (3) also exists in the second room, it can contribute to the air conditioning of the second room. Since the air conditioner (2) cannot detect the indoor temperature etc. of the first room with the remote sensor (3) installed in the second room, the first air conditioner (2)
), it is necessary to change the built-in sensor to detect indoor temperature, etc., but such a change was not possible.

本発明の目的は、以上の課題に鑑みなされたもので、空
調機と空調機外に設けられたリモートセンサの対応を配
線工事を行うことなく設定を切り換えることが可能な空
調制御システムを提供することにある。
The purpose of the present invention was made in view of the above-mentioned problems, and it is an object of the present invention to provide an air conditioning control system that can switch the settings of an air conditioner and a remote sensor installed outside the air conditioner without performing wiring work. There is a particular thing.

[課題を解決するための手段] 本発明は以上の目的を達成するために、空調制御システ
ムに改良を加えた。
[Means for Solving the Problems] In order to achieve the above objects, the present invention has improved an air conditioning control system.

つまり、室内の空気状態を調整する空調機と、伝送路を
介して空調機を遠隔制御する設定装置と、空気状態を感
知し伝送路を介して空調機に感知信号を出力する複数の
リモートセンサと、を含む空調制御システムにおいて、
空気状態感知センサの感知信号を出力する制御部と自己
アドレス信号を出力する自己アドレス発生部と制御部出
力信号と自己アドレス発生部出力信号とを編集して伝送
路を介して空調機と信号の送受を行う通信部とを含む複
数のリモートセンサと、リモートセンサの自己アドレス
信号を入力するセンサ位置設定入力部と自己アドレス信
号を出力する自己アドレス発生部と制御部出力信号と自
己アドレス発生部出力信号を編集して伝送路を介して空
調機と信号の送受を行う通信部とを含む設定装置と、自
己アドレス信号を出力する自己アドレス発生手段と選択
するりモートセンサの自己アドレスを記憶するセンサ位
置記憶手段と設定装置から出力された信号によって内蔵
空気状態感知センサの出力信号又はリモートセンサの出
力信号のどちらかを選択処理して負荷機に負荷制御信号
を出力する制御部と制御部出力信号と自己アドレス信号
を編集して伝送路を介して設定装置及びリモートセンサ
と信号の送受を行う通信部とを含む空調機と、から構成
されることを特徴とする。
In other words, an air conditioner that adjusts the indoor air condition, a setting device that remotely controls the air conditioner via a transmission line, and multiple remote sensors that sense the air condition and output sensing signals to the air conditioner via the transmission line. In an air conditioning control system including,
A control unit that outputs the sensing signal of the air condition sensor, a self-address generation unit that outputs a self-address signal, and a control unit output signal and a self-address generation unit output signal that are edited and sent to the air conditioner and the signal via a transmission line. A plurality of remote sensors including a communication section that performs transmission and reception, a sensor position setting input section that inputs the remote sensor's self-address signal, a self-address generation section that outputs the self-address signal, a control section output signal, and a self-address generation section output. A setting device that includes a communication unit that edits signals and sends and receives signals to and from the air conditioner via a transmission path, a self-address generating means that outputs a self-address signal, and a sensor that stores the self-address of the mote sensor. A control unit that selects and processes either the output signal of the built-in air condition sensing sensor or the output signal of the remote sensor according to the signals output from the position storage means and the setting device and outputs a load control signal to the load machine, and the control unit output signal. and an air conditioner including a communication unit that edits a self-address signal and sends and receives signals to and from a setting device and a remote sensor via a transmission path.

[作用] 本発明によれば、異なる位置に設置された複数のリモー
トセンサの感知信号を空調機は受信し、設定装置から出
力される空調機に入力された自己アドレス信号によって
指定されるリモートセンサの感知信号のみを空調負荷機
の制御信号として選択される。つまり設定装置から出力
される選択信号によってどこの位置に設置されているリ
モートセンサの感知信号を空調に関与させるかを自由に
変更できる。よって空調機とリモートセンサの対応を変
更するときに配線工事の変更が不必要となる。
[Operation] According to the present invention, the air conditioner receives sensing signals from a plurality of remote sensors installed at different positions, and selects the remote sensor designated by the self-address signal input to the air conditioner output from the setting device. Only the sensing signal of is selected as the control signal for the air conditioning load machine. In other words, depending on the selection signal output from the setting device, it is possible to freely change at which position the sensing signal of the remote sensor installed is to be involved in air conditioning. Therefore, when changing the correspondence between the air conditioner and the remote sensor, there is no need to change the wiring work.

[実施例コ 本発明に係る空調制御システムの一実施例を説明する。[Example code] An embodiment of the air conditioning control system according to the present invention will be described.

一実施例に係る機能ブソロク図を第1図に示す。A functional logic diagram according to one embodiment is shown in FIG.

装置構成説明 本発明に係る空調制御システムは、設定装置(1)に通
信部(11)と制御部(12)とセンサ位置設定入力部
(13)と自己アドレス発生部(14)を含み、空調機
(2)に通信部(21)と制御部(22)とセンサ位置
アドレス記憶部(23)と内蔵センサ(26)と負荷機
(25)と自己アドレス発生部(24)とを含み、リモ
トセンサ(3)、(4)に通信部(31)、(41)と
制御部(32)、(42)と自己アドレス発生部(34
)、(44)とセンサ(33)、(43)とを含む。
Device Configuration Description The air conditioning control system according to the present invention includes a setting device (1), a communication section (11), a control section (12), a sensor position setting input section (13), and a self-address generation section (14). The device (2) includes a communication section (21), a control section (22), a sensor position address storage section (23), a built-in sensor (26), a load device (25), and a self-address generation section (24), and includes a remote sensor. (3), (4) include communication units (31), (41), control units (32), (42), and self-address generation unit (34).
), (44) and sensors (33), (43).

装置特徴接続関係説明 本発明に係る空調制御システムにおいて設定装置(1)
と空調機(2)とリモートセンサ(3)、(4)は伝送
路(6)によって接続される。
Description of device characteristics and connections Setting device (1) in the air conditioning control system according to the present invention
The air conditioner (2) and remote sensors (3) and (4) are connected by a transmission path (6).

設定装置(1)の通信部(11)の入出力は伝送路(6
)に接続され、空調機(2)の通信部(21)の第1の
入出力は伝送路(6)に接続され、リモートセンサ(3
)、(4)の通信部(31)、(41)の入出力は伝送
路(6)に接続される。
The input/output of the communication section (11) of the setting device (1) is via the transmission path (6).
), the first input/output of the communication section (21) of the air conditioner (2) is connected to the transmission line (6), and the remote sensor (3
), (4), the input and output of the communication units (31) and (41) are connected to the transmission line (6).

設定装置(1)の通信部(11)の第1の入力は自己ア
ドレス発生部(14)の出力に接続され、通信部(11
)の第2の入力は制御部(12)の出力に接続され、制
御部(12)の入力はセンサ位置設定入力部(13)の
出力に接続される。
The first input of the communication section (11) of the setting device (1) is connected to the output of the self-address generation section (14), and
) is connected to the output of the control section (12), and the input of the control section (12) is connected to the output of the sensor position setting input section (13).

空調機(2)の通信部(21)の入力は自己アトルス発
生部(24)の出方に接続され、通信部(21)の第2
の入出力は制御部(22)の第1の入出力に接続され、
制御部(22)の入力は内臓センサ(26)に接続され
、制御部(22)の出力は負荷機(25)の入力に接続
され、制御部(22)の第2の入出力はセンサ位置アド
レス記憶部(23)の入出力に接続される。
The input of the communication unit (21) of the air conditioner (2) is connected to the output of the self-atlus generator (24), and the input of the communication unit (21) is connected to the output of the self-atlus generator (24).
The input/output of is connected to the first input/output of the control unit (22),
The input of the control section (22) is connected to the built-in sensor (26), the output of the control section (22) is connected to the input of the load machine (25), and the second input/output of the control section (22) is connected to the sensor position. It is connected to the input/output of the address storage section (23).

リモートセンサ(3)、(4)の通信部(31)(41
)の第1の入力は自己アドレス発生部(34)、(44
)の出力に接続され、通信部(31)、(41)の第2
の入力は制御部(32)(42)の第1の出力に接続さ
れ、制御部(32)、(42)の人力はセンサ(33)
、(43)の出力に接続される。
Communication section (31) (41) of remote sensor (3), (4)
) is the first input of the self address generator (34), (44
) is connected to the output of the communication section (31), (41).
The inputs of the controllers (32) and (42) are connected to the first outputs of the controllers (32) and (42), and the human power of the controllers (32) and (42) is connected to the sensor (33).
, (43).

装置動作説明 第2図に空調制御システムの動作フローチャトを示す。Device operation description FIG. 2 shows an operational flowchart of the air conditioning control system.

設定装置(1)は空調機(2)に対して制御信号を出力
し、空調機(2)の制御部(22)はこの制御信号を受
信するとセンサ位置アドレスの記憶値を読みだしくステ
ップ1)次にこれか内蔵センサ(26)のものであるの
か、リモートセンサ(3)のものであるかが判断され(
ステップ2)、内蔵センサ(26)であれば、内蔵セン
サ(26)のセンサ値を読み込む(ステップ3)、また
リモートセンサ(3)の場合は制御部(22)は通信部
(21)に対して通信命令を出力し、自己アドレスを付
与してリモートセンサ(3)に制御命令が出力される(
ステップ4)。リモートセンサ(3)の通信部(31)
は入力された制御命令を受信し、制御命令に対して制御
部(32)はセンサ(33)に対してセンサ値の読み出
し要求を出力する。センサ(33)はセンサ値を制御部
(32)に出力する(ステップ5)。制御部(32)に
入力されたセンサ値は通信部(31)に出力され、伝送
路(6)を介して空調機(2)の通信部(21)で受信
され、又は内蔵センサ(26)で感知されたセンサ値は
制御部(22)に出力され制御部(22)でセンサ値を
分析して最適な空調条件が予測される(ステップ6)。
The setting device (1) outputs a control signal to the air conditioner (2), and upon receiving this control signal, the control unit (22) of the air conditioner (2) reads out the stored value of the sensor position address.Step 1 ) Next, it is determined whether this is from the built-in sensor (26) or the remote sensor (3) (
Step 2), if it is a built-in sensor (26), read the sensor value of the built-in sensor (26) (step 3), or if it is a remote sensor (3), the control unit (22) will communicate with the communication unit (21). outputs a communication command, assigns a self-address, and outputs a control command to the remote sensor (3) (
Step 4). Communication section (31) of remote sensor (3)
receives the input control command, and in response to the control command, the control unit (32) outputs a sensor value read request to the sensor (33). The sensor (33) outputs the sensor value to the control unit (32) (step 5). The sensor value input to the control unit (32) is output to the communication unit (31), and is received by the communication unit (21) of the air conditioner (2) via the transmission line (6), or is received by the built-in sensor (26). The sensor values sensed are output to the control unit (22), which analyzes the sensor values and predicts optimal air conditioning conditions (step 6).

求められた空調条件に対応した負荷制御信号が負荷機(
25)に出力される。負荷機(25)はこの負荷制御信
号に基づき空調動作される(ステップ7)。
A load control signal corresponding to the required air conditioning condition is sent to the load machine (
25). The load machine (25) is air-conditioned based on this load control signal (step 7).

第3図を用いて通信シーケンスを示す。The communication sequence is shown using FIG.

設定装置(1)から空調機(2)に対してリモートセン
サ(3)のセンサ値を記憶するように命令信号が出力さ
れると(T1)、空調機(2)は受信命令信号に基づき
センサ位置アドレスとしてリモートセンサ(3)の自己
アドレスが記憶され、記憶が完了すると設定装置(1)
に完了信号か出力される(T2)。次に空調機(2)が
リモートセンサ(3)に対してセンサモニタ要求信号を
出力すると(T3)、リモートセンサ(3)はセンサモ
ニタ要求信号に基づきセンサモニタ応答によってセンサ
値を空調機(2)に出力する(T4)。
When a command signal is output from the setting device (1) to the air conditioner (2) to store the sensor value of the remote sensor (3) (T1), the air conditioner (2) stores the sensor value based on the received command signal. The self-address of the remote sensor (3) is memorized as the position address, and when the memorization is completed, the setting device (1)
A completion signal is output at (T2). Next, when the air conditioner (2) outputs a sensor monitor request signal to the remote sensor (3) (T3), the remote sensor (3) transmits the sensor value to the air conditioner (2) by a sensor monitor response based on the sensor monitor request signal. ) (T4).

この時に伝送される伝送信号の例を第4図に示す。FIG. 4 shows an example of the transmission signal transmitted at this time.

図中、1フレ一ム伝送信号中、先頭から自己アドレス信
号、相手アドレス信号、制御コード、ノ・イト数、セン
サ位置指定コマンド信号、センサ位置アドレス信号、チ
ャンネル信号(温度、湿度、空気成分等に対応する符号
)、フレームチェックコド等の順番で伝送される。
In the figure, one frame of transmission signals starts from the self address signal, the other party's address signal, the control code, the number of nodes, the sensor position designation command signal, the sensor position address signal, and the channel signal (temperature, humidity, air composition, etc.). (corresponding code), frame check code, etc.

また前記(T1)、(T2)で設定されたリモートセン
サ(3)の記憶を解除して、リモートセンサ(4)のセ
ンサ位置アドレスを記憶する場合は、まず設定装置(1
)から空調機(2)に対してリモートセンサ(3)のセ
ンサ位置解除信号が出力され(T5)、空調機(2)の
通信部(21)で受信されると制御部(22)に出力さ
れ、制御部(22)はセンサ位置アドレス記憶部(23
)に解除信号を出力しリモートセンサ(3)の設定が解
除される。解除が完了されると、通信部(21)から設
定装置(1)の通信部(11)に解除完了信号が出力さ
れる(T6)。
In addition, when canceling the memory of the remote sensor (3) set in (T1) and (T2) above and storing the sensor position address of the remote sensor (4), first
) outputs a sensor position release signal for the remote sensor (3) to the air conditioner (2) (T5), and when received by the communication unit (21) of the air conditioner (2), outputs it to the control unit (22). The control section (22) stores the sensor position address storage section (23).
) and the setting of the remote sensor (3) is canceled. When the release is completed, a release completion signal is output from the communication unit (21) to the communication unit (11) of the setting device (1) (T6).

次にリモートセンサ(4)を空調機(2)のセンサ位置
アドレス記憶部(2B)に記憶する場合は、前記(T〕
)から(T4)と同じ通信要領で(T7)から(TIO
)の通信シーケンスで設定記憶される。
Next, when storing the remote sensor (4) in the sensor position address storage unit (2B) of the air conditioner (2), the above (T)
) to (T4) using the same communication procedure as (T7) to (TIO
) settings are stored in the communication sequence.

[発明の効果] 以上説明したように本発明によれば、空調機に内蔵され
たセンサの使用、空調機の外に設けられたリモートセン
サの使用を自由に設定装置で遠隔制御され、切り換えら
れるため次のような効果が期待できる。
[Effects of the Invention] As explained above, according to the present invention, the use of a sensor built into an air conditioner or a remote sensor provided outside the air conditioner can be remotely controlled and switched freely by a setting device. Therefore, the following effects can be expected.

部屋の分割・併合に対してリモートセンサと空調機の組
み合わせを配線工事の変更を行うことなく切り換えるこ
とができる。
When dividing or merging rooms, the combination of remote sensors and air conditioners can be switched without changing the wiring.

空WJ機の設置場所に対応して空調機内蔵のセンサを使
用するかまたは外部リモートセンサを使用するか容易に
設定ができる。
Depending on the installation location of the WJ machine, it is possible to easily set whether to use the air conditioner's built-in sensor or an external remote sensor.

顧客の要求機能や設置費用に対応して、空調機内蔵のセ
ンサを使用する低費用方式またはリモトセンサを使用す
る高機能方式を提供できる。
Depending on the customer's requested functions and installation costs, it is possible to provide a low-cost method that uses sensors built into the air conditioner or a high-performance method that uses remote sensors.

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

第1図は本発明に係る空調制御システムの一実施例を示
す機能ブロック図、第2図は第1図の空調制御システム
の動作フローチャート、第3図は第1図の空調制御シス
テムの通信シーケンス図、第4図は第1図の空調制御シ
ステムの伝送路で送受される伝送信号の信号形式を示す
図、第5図は従来の空調制御システムの使用概念図、第
6図は従来の空調制御システムの問題点を表す概念図で
あり、第6A図は一つの部屋に空調機を2台使用してい
る場合の空調概念図、第6B図は第6A図において部屋
の間仕切りを付加した場合の空調概念図、である。 図中、(1)は設定装置、(2)、(5)は空調機、(
3)、(4)はリモートセンサ、(6)は伝送路、(1
1)、(21)、(31)、(41)は通信部、(12
)、(22)、(32)、(42)は制御部、(13)
はセンサ位置設定入力部、(14)、(24)、(34
)、(44)は自己アドレス発生部、(23)はセンサ
位置アドレス記憶部、(25)は負荷機、(26)は内
蔵センサ、(33)、(43)はセンサ、である。 なお、図中同一符号は同一または相当部分を示す。
Fig. 1 is a functional block diagram showing an embodiment of the air conditioning control system according to the present invention, Fig. 2 is an operation flowchart of the air conditioning control system shown in Fig. 1, and Fig. 3 is a communication sequence of the air conditioning control system shown in Fig. 1. Figure 4 is a diagram showing the signal format of the transmission signal sent and received on the transmission path of the air conditioning control system in Figure 1, Figure 5 is a conceptual diagram of the usage of the conventional air conditioning control system, and Figure 6 is the conventional air conditioning control system. These are conceptual diagrams showing problems with the control system. Figure 6A is a conceptual diagram of air conditioning when two air conditioners are used in one room, and Figure 6B is a diagram when a room partition is added to Figure 6A. This is a conceptual diagram of air conditioning. In the figure, (1) is a setting device, (2) and (5) are air conditioners, (
3), (4) are remote sensors, (6) is transmission line, (1
1), (21), (31), and (41) are communication parts, (12
), (22), (32), (42) are control units, (13)
are sensor position setting input sections, (14), (24), (34
), (44) are self-address generation units, (23) are sensor position address storage units, (25) are load machines, (26) are built-in sensors, and (33) and (43) are sensors. Note that the same reference numerals in the figures indicate the same or corresponding parts.

Claims (1)

【特許請求の範囲】 室内の空気状態を調整する空調機と、伝送路を介して空
調機を遠隔制御する設定装置と、空気状態を感知し伝送
路を介して空調機に感知信号を出力する複数のリモート
センサと、を含む空調制御システムにおいて、 空気状態感知センサの感知信号を出力する制御部と、自
己アドレス信号を出力する自己アドレス発生部と、制御
部出力信号と自己アドレス発生部出力信号とを編集して
伝送路を介して空調機と信号の送受を行う通信部と、を
含む複数のリモートセンサと、 リモートセンサの自己アドレス信号を入力するセンサ位
置設定入力部と、自己アドレス信号を出力する自己アド
レス発生部と、制御部出力信号と自己アドレス発生部出
力信号を編集して伝送路を介して空調機と信号の送受を
行う通信部と、を含む設定装置と、 自己アドレス信号を出力する自己アドレス発生部と、選
択するリモートセンサの自己アドレスを記憶するセンサ
位置アドレス記憶部と、設定装置から出力された信号に
よって内蔵空気状態感知センサの出力信号又はリモート
センサの出力信号のどちらかを選択処理して負荷機に負
荷制御信号を出力する制御部と、制御部出力信号と自己
アドレス信号を編集して伝送路を介して設定装置及びリ
モートセンサと信号の送受を行う通信部と、を含む空調
機と、 から構成されることを特徴とする空調制御システム。
[Claims] An air conditioner that adjusts the indoor air condition, a setting device that remotely controls the air conditioner via a transmission line, and a setting device that senses the air condition and outputs a sensing signal to the air conditioner via the transmission line. In an air conditioning control system including a plurality of remote sensors, a control unit that outputs a sensing signal of the air condition sensing sensor, a self-address generation unit that outputs a self-address signal, a control unit output signal and a self-address generation unit output signal. a communication section that sends and receives signals to and from the air conditioner via a transmission path; a sensor position setting input section that inputs the self-address signal of the remote sensor; a setting device that includes a self-address generation unit that outputs a self-address signal; a communication unit that edits the control unit output signal and the self-address generation unit output signal and sends and receives signals to and from the air conditioner via a transmission path; A self-address generation unit to output, a sensor position address storage unit to store the self-address of the remote sensor to be selected, and a signal output from the built-in air condition sensor or the remote sensor depending on the signal output from the setting device. a control unit that selectively processes and outputs a load control signal to the load machine; a communication unit that edits the control unit output signal and the self-address signal and sends and receives signals to and from the setting device and the remote sensor via a transmission path; An air conditioning control system comprising: an air conditioner including;
JP2224106A 1990-08-24 1990-08-24 Air conditioning control system Expired - Fee Related JP2851147B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2224106A JP2851147B2 (en) 1990-08-24 1990-08-24 Air conditioning control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2224106A JP2851147B2 (en) 1990-08-24 1990-08-24 Air conditioning control system

Publications (2)

Publication Number Publication Date
JPH04106351A true JPH04106351A (en) 1992-04-08
JP2851147B2 JP2851147B2 (en) 1999-01-27

Family

ID=16808636

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2224106A Expired - Fee Related JP2851147B2 (en) 1990-08-24 1990-08-24 Air conditioning control system

Country Status (1)

Country Link
JP (1) JP2851147B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2015118629A1 (en) * 2014-02-05 2015-08-13 三菱電機株式会社 Communications device, communications method, and program

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2015118629A1 (en) * 2014-02-05 2015-08-13 三菱電機株式会社 Communications device, communications method, and program
JP5933142B2 (en) * 2014-02-05 2016-06-08 三菱電機株式会社 COMMUNICATION DEVICE, COMMUNICATION METHOD, AND PROGRAM
US9842079B2 (en) 2014-02-05 2017-12-12 Mitsubishi Electric Corporation Communication apparatus, communication method, and computer readable medium

Also Published As

Publication number Publication date
JP2851147B2 (en) 1999-01-27

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