JPH03207290A - Driver for brushless motor - Google Patents

Driver for brushless motor

Info

Publication number
JPH03207290A
JPH03207290A JP2000412A JP41290A JPH03207290A JP H03207290 A JPH03207290 A JP H03207290A JP 2000412 A JP2000412 A JP 2000412A JP 41290 A JP41290 A JP 41290A JP H03207290 A JPH03207290 A JP H03207290A
Authority
JP
Japan
Prior art keywords
time
switching element
element group
brushless motor
signal
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.)
Pending
Application number
JP2000412A
Other languages
Japanese (ja)
Inventor
Atsushi Kobayashi
淳 小林
Shigeru Oshiro
滋 大城
Masahiro Sumino
角野 政浩
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.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial Co Ltd
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 Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP2000412A priority Critical patent/JPH03207290A/en
Publication of JPH03207290A publication Critical patent/JPH03207290A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To prevent abnormal vibration, damage of a switching element group by measuring a rotation signal time interval from an armature winding to a switching element group, and regarding as being a stepout if it is shorter than the interval at the time of normal to restart it. CONSTITUTION:A time detector 7 for detecting a rotation signal time interval from an armature winding 3 to a switching element group 1 detects a time interval at normal time, and sends it to a microcomputer 6. If a stepout occurs at time T1, it alters to time interval data of D2. Since set time DS having relationship of D1>DS>D2 is stored in the microcomputer 6, if the data D2 is input, an operation signal is interrupted, rotation of a rotary magnet is stopped or and the operation signal, a restart signal are generated to a position detecting rotation controller 5, after a rotary magnet is stopped or after predetermined time. Accordingly, even if the stepout occurs, the restart control is applied immediately to restart its operation.

Description

【発明の詳細な説明】 (産業上の利用分野) 本発明は、ブラシレスモータにかかり電機子巻線に誘起
される誘起電圧によって、磁石回転子と電機子巻線との
相対的位置を検出するブラシレスモータの駆動装置に関
する。
Detailed Description of the Invention (Industrial Application Field) The present invention detects the relative position of a magnet rotor and an armature winding by an induced voltage applied to a brushless motor and induced in an armature winding. The present invention relates to a drive device for a brushless motor.

(従来の技術) 従来、この種のブラシレスモータは特公昭59−365
19号公報に記載され第4図に示すような構成となって
いる。第4図において、1はスイッチング素子群、2は
ブラシレスモータであって、電機子巻線3及び磁石回転
子4を備えている。5は位置検出回転制御装置である。
(Prior art) Conventionally, this type of brushless motor was
It is described in Japanese Patent No. 19 and has a configuration as shown in FIG. In FIG. 4, 1 is a switching element group, 2 is a brushless motor, and includes an armature winding 3 and a magnet rotor 4. 5 is a position detection rotation control device.

位置検出回転制御装置5は電機子巻線3に接続され、磁
石回転子4が回転することによって発生する誘起電圧を
入力する0位置検出回転制御装置5は入力された誘起電
圧に基づいて回転制御信号を生成してスイッチング素子
群1におくり磁石回転子4を回転させる。
The position detection rotation control device 5 is connected to the armature winding 3, and inputs the induced voltage generated by the rotation of the magnet rotor 4. The zero position detection rotation control device 5 controls rotation based on the input induced voltage. A signal is generated and sent to the switching element group 1 to rotate the magnet rotor 4.

回転信号の発生方法は特公昭59−36519号公報に
詳細に述べられているので省略する。
The method of generating the rotation signal is described in detail in Japanese Patent Publication No. 59-36519, and will therefore be omitted here.

(発明が解決しようとする課題) しかしながら、上記従来の構成では、ブラシレスモータ
の負荷が急変したり、位置検出回転制御装置5に外乱が
入ったりすると位置検出回転制御装置5の回転制御信号
が乱れ、磁石回転子4が回転を停止する。いわゆる脱調
に陥りブラシレスモ−タの運転ができなくなってしまう
、さらに脱調に陥るとブラシレスモータが異常振動や音
を発生したり、ひいては、大電流がスイッチング素子群
1をながれスイッチング素子群1を破損したりスイッチ
ング素子群1に電力を供給する電源装置を破損するとい
った重大な問題があった。
(Problem to be Solved by the Invention) However, in the conventional configuration described above, when the load of the brushless motor suddenly changes or a disturbance enters the position detection rotation control device 5, the rotation control signal of the position detection rotation control device 5 is disturbed. , the magnet rotor 4 stops rotating. If the brushless motor falls into a so-called step-out, it becomes impossible to operate the brushless motor.If the brushless motor falls into a step-out, the brushless motor may generate abnormal vibrations or noise, and even a large current may flow through the switching element group 1. There were serious problems such as damage to the switching element group 1 and damage to the power supply device that supplies power to the switching element group 1.

本発明は上記従来の問題を解決するものであり。The present invention solves the above-mentioned conventional problems.

脱調を検出して異常振動や音の発生及びスイッチング素
子群の破損を回避するブラシレスモータの駆動装置を提
供することを目的とするものである。
It is an object of the present invention to provide a brushless motor drive device that detects step-out and avoids generation of abnormal vibrations and sounds and damage to a switching element group.

(課題を解決するための手段) 本発明は上記目的を達成するために、スイッチング素子
群への信号が検出される間隔を計測する時間検出器を設
け、検出される時間が常用回転時よりも短くなることに
より脱調と見なし、脱調再起動運転を行い円滑な回転を
得るようにしたものである。
(Means for Solving the Problems) In order to achieve the above object, the present invention provides a time detector that measures the interval at which signals to the switching element group are detected, and the detected time is longer than during normal rotation. If the length becomes too short, it is regarded as a step-out, and a step-out restart operation is performed to obtain smooth rotation.

(作 用) したがって1本発明によれば、スイッチング素子群と、
磁石回転子とを有し、電機子巻線より生ずる電圧信号を
検出してスイッチング素子群を制御して磁石回転子を回
転させるブラシレスモータにおいて、スイッチング素子
群への信号が出される間隔を計測する時間検出器を設け
、脱調時に通常回転時よりもはるかに短い時間でスイッ
チング素子群に信号が入力されることを利用し、時間検
出器により検出される時間が短くなることにより脱調と
見なし、脱調再起動運転を行い円滑な回転を得ることが
できる。
(Function) Therefore, according to one aspect of the present invention, a switching element group,
In a brushless motor that has a magnetic rotor and detects a voltage signal generated from an armature winding and controls a switching element group to rotate the magnetic rotor, the interval at which signals are output to the switching element group is measured. A time detector is installed to take advantage of the fact that the signal is input to the switching element group in a much shorter time than during normal rotation when a step-out occurs, and the time detected by the time detector is shortened so that it is recognized as a step-out. , it is possible to perform step-out restart operation and obtain smooth rotation.

(実施例) 第1図は本発明の一実施例におけるブラシレスモータの
駆動装置の構成を示すものである。第1図において、1
はスイッチング素子群、2はブラシレスモータ、3は電
機子巻線、4は磁石回転子、5は位置検出回転制御装置
、6はマイクロコンピュータ、7は時間検出器である。
(Embodiment) FIG. 1 shows the configuration of a brushless motor drive device in an embodiment of the present invention. In Figure 1, 1
2 is a switching element group, 2 is a brushless motor, 3 is an armature winding, 4 is a magnet rotor, 5 is a position detection rotation control device, 6 is a microcomputer, and 7 is a time detector.

上記1ないし5は従来例第4図の対応する数字と同様な
機能を有する0時間検出1)7は位置検出回転制御装置
5からのスイッチング素子群1の回転信号の一部を入力
とし、ある回転信号の出力時からその次の回転信号の出
力までの時間を計測してマイクロコンピュータ6にその
データを送る。
1 to 5 above have the same functions as the corresponding numbers in conventional example FIG. The time from when a rotation signal is output to when the next rotation signal is output is measured and the data is sent to the microcomputer 6.

マイクロコンピュータ6は時間検出器7より送られたデ
ータを判断し、所定の時間より短いときに脱調再起動の
制御をする。
The microcomputer 6 judges the data sent from the time detector 7, and controls the restart due to step-out when the time is shorter than a predetermined time.

第2図は本発明の実施例の動作を示すフローチャートで
あり、マイクロコンピュータ6の中で行われる制御を示
している。第2図において、まず。
FIG. 2 is a flowchart showing the operation of the embodiment of the present invention, and shows the control performed in the microcomputer 6. As shown in FIG. In Figure 2, first.

同期信号運転起動あるいは位置決め起動などの方法でブ
ラシレスモータが運転している(81)、ここでマイク
ロコンピュータ6は時間検出器7よりある回転信号の出
力時からその次の回転信号の出力までの時間を受は取る
(8り、そしてマイクロコンピュータ6は内部に記憶し
ている時間設定データと比較して検出時間が短いと脱調
と判断する(S、)、その後脱調の再起動の制御を行う
、脱調再起動の制御はまず、ブラシレスモータ2の回転
が停止しくS、)、ブラシレスモータ2の回転が停止し
たことを確認してCBS>、起動制御を行う(S、)、
この起動制御は運転時の起動方法と同じでも異なってい
てもよい。
The brushless motor is operated by a method such as synchronous signal operation start or positioning start (81). Here, the microcomputer 6 calculates the time from when a certain rotation signal is output from the time detector 7 to when the next rotation signal is output. The microcomputer 6 determines that the detection time is short compared to the internally stored time setting data (S,), and then controls the restart of the step-out. To control the step-out restart, first, the rotation of the brushless motor 2 is stopped (S,), and after confirming that the rotation of the brushless motor 2 has stopped, CBS>, the startup control is performed (S,).
This starting control may be the same as or different from the starting method during operation.

第3図は本発明の一実施例のタイムチャートを示してい
る。第3図には、位置検出回転制御装置5からスイッチ
ング素子群1に出力される信号、時間検出器7からマイ
クロコンピュータ6に出力される信号、マイクロコンピ
ュータから位置検出回転制御装置5に出力される運転信
号と再起動信号をそれぞれ示している。第3図において
1時刻T1で脱調が発生したとする0時間検出器7は常
時検出時間をマイクロコンピュータ6に送っている。正
常時にはD□というデータを送り脱調時はD3というデ
ータを送るとする1時刻T2で時間検出データD3をマ
イクロコンピュータ6に送る参マイクロコンピュータ6
には D□>DS>D。
FIG. 3 shows a time chart of one embodiment of the present invention. FIG. 3 shows a signal output from the position detection rotation control device 5 to the switching element group 1, a signal output from the time detector 7 to the microcomputer 6, and a signal output from the microcomputer to the position detection rotation control device 5. The operation signal and restart signal are shown respectively. In FIG. 3, the 0-time detector 7, which assumes that step-out occurs at 1 time T1, constantly sends the detected time to the microcomputer 6. The reference microcomputer 6 sends time detection data D3 to the microcomputer 6 at time T2, assuming that it sends data D□ during normal operation and sends data D3 when it loses synchronization.
For D□>DS>D.

の関係を持つ設定時間DSが記憶されており1時間検出
データD2が入力されると運転信号を切り、磁石回転子
4の回転が停止あるいは一定時間後運転信号、再起動信
号を位置検出回転制御装置5に発する。したがって、脱
調してもすぐに再起動制御がかけられ運転を再開するこ
とができる。
A set time DS having the following relationship is stored, and when the 1-hour detection data D2 is input, the operation signal is cut off, and the rotation of the magnet rotor 4 is stopped or after a certain period of time, the operation signal and restart signal are used for position detection rotation control. emit to device 5. Therefore, even if the engine steps out, restart control is immediately applied and operation can be resumed.

(発明の効果) 本発明は上記実施例から明らかなように、3相結線され
た電機子巻線と、6個の制御電極付き半導体スイッチン
グ素子を3相ブリッジ接続して形成したスイッチング素
子群と、磁石回転子とを有し、前記電機子巻線より生ず
る電圧信号を検出して前記スイッチング素子群を制御し
て前記磁石回転子を回転させるブラシレスモータにおい
て、常用回転時よりも速い前記スイッチング素子群の入
力信号を検出することによって脱調を発見し、脱調再起
動運転を行うことを特徴とするブラシレスモータの駆動
装置によれば、確実に脱調を検出することができ、脱調
に陥ることによるブラシレスモータの異常振動や音、ひ
いては、大電流がスイッチング素子群1をながれスイッ
チング素子群1を破損したりスイッチング素子群1に電
力を供給する電源装置を破損する欠点を回避することが
でき、安定したブラシレスモータの運転をすることがで
きるという効果を有する。
(Effects of the Invention) As is clear from the above embodiments, the present invention has a switching element group formed by three-phase connected armature windings and six semiconductor switching elements with control electrodes connected in a three-phase bridge. , a brushless motor that has a magnet rotor and detects a voltage signal generated from the armature winding to control the switching element group to rotate the magnet rotor, wherein the switching element rotates faster than during normal rotation. According to a brushless motor drive device that detects a step-out by detecting a group input signal and performs a step-out restart operation, it is possible to reliably detect a step-out and prevent the step-out from occurring. It is possible to avoid abnormal vibrations and noise of the brushless motor caused by the brushless motor falling, and furthermore, the drawbacks that a large current flows through the switching element group 1 and damages the switching element group 1 or the power supply device that supplies power to the switching element group 1. This has the effect that the brushless motor can be operated stably.

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

第1図は本発明の一実施例におけるブラシレスモータの
駆動装置の構成図、第2図は本発明の実施例の動作を示
すフローチャート、第3図は本発明の実施例のタイムチ
ャート、第4図は従来のブラシレスモータの駆動装置の
構成図である。 1・・・スイッチング素子群、 2・・・ブラシレスモ
ータ、 3・・・電機子巻線、 4・・・磁石回転子、
 5・・・位置検出回転制御装置。 6・・・マイクロコンピュータ、 7・・・時間検出器
FIG. 1 is a block diagram of a brushless motor drive device according to an embodiment of the present invention, FIG. 2 is a flowchart showing the operation of the embodiment of the present invention, FIG. 3 is a time chart of the embodiment of the present invention, and FIG. The figure is a configuration diagram of a conventional brushless motor drive device. DESCRIPTION OF SYMBOLS 1... Switching element group, 2... Brushless motor, 3... Armature winding, 4... Magnet rotor,
5...Position detection rotation control device. 6...Microcomputer, 7...Time detector.

Claims (1)

【特許請求の範囲】[Claims] 3相結線された電機子巻線と、6個の制御電極付き半導
体スイッチング素子を3相ブリッジ接続して形成したス
イッチング素子群と、磁石回転子とを有し、前記電機子
巻線より生ずる電圧信号を検出して前記スイッチング素
子群を制御して前記磁石回転子を回転させるブラシレス
モータにおいて、常用回転時よりも速い前記スイッチン
グ素子群の入力信号を検出することによって脱調を発見
し、脱調再起動運転を行うことを特徴とするブラシレス
モータの駆動装置。
It has an armature winding connected in three phases, a switching element group formed by connecting six semiconductor switching elements with control electrodes in a three-phase bridge, and a magnet rotor, and the voltage generated from the armature winding is In a brushless motor that detects a signal and controls the switching element group to rotate the magnet rotor, step-out is detected by detecting an input signal to the switching element group that is faster than during normal rotation, and the step-out is detected. A brushless motor drive device characterized by restart operation.
JP2000412A 1990-01-08 1990-01-08 Driver for brushless motor Pending JPH03207290A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2000412A JPH03207290A (en) 1990-01-08 1990-01-08 Driver for brushless motor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2000412A JPH03207290A (en) 1990-01-08 1990-01-08 Driver for brushless motor

Publications (1)

Publication Number Publication Date
JPH03207290A true JPH03207290A (en) 1991-09-10

Family

ID=11473086

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2000412A Pending JPH03207290A (en) 1990-01-08 1990-01-08 Driver for brushless motor

Country Status (1)

Country Link
JP (1) JPH03207290A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10271872A (en) * 1997-03-21 1998-10-09 Kondo Kogyo Kk Fan filter unit mounted with dc motor fan
KR100548843B1 (en) * 1998-03-30 2006-02-06 산요덴키가부시키가이샤 A method for controlling dc brushless motor

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10271872A (en) * 1997-03-21 1998-10-09 Kondo Kogyo Kk Fan filter unit mounted with dc motor fan
KR100548843B1 (en) * 1998-03-30 2006-02-06 산요덴키가부시키가이샤 A method for controlling dc brushless motor

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