JP4888101B2 - Power converter - Google Patents

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JP4888101B2
JP4888101B2 JP2006339575A JP2006339575A JP4888101B2 JP 4888101 B2 JP4888101 B2 JP 4888101B2 JP 2006339575 A JP2006339575 A JP 2006339575A JP 2006339575 A JP2006339575 A JP 2006339575A JP 4888101 B2 JP4888101 B2 JP 4888101B2
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JP2008154361A (en
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清太郎 大田
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Yaskawa Electric Corp
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Description

本発明は、例えば、工作機械におけるテーブルやロボットアームのような負荷機械を駆動する電力変換装置に関する。   The present invention relates to a power conversion device that drives a load machine such as a table or a robot arm in a machine tool.

従来の電力変換装置は、電圧指令Vrefと測定電流Ifbとを電流オブザーバ部に入力し、生成される電流推定信号Iobを電流フィードバック制御部で使用することで、良好な電流応答特性を得られるようにしていた(例えば、特許文献1参照)。
図5は従来の電力変換装置のブロック図である。図5において、101は直流電動機、102は電力変換回路、103は実電流観測部、104は電流フィードバック制御部、105は電流オブザーバ部である。
The conventional power converter can obtain a good current response characteristic by inputting the voltage command Vref and the measurement current Ifb to the current observer unit and using the generated current estimation signal Iob in the current feedback control unit. (For example, refer to Patent Document 1).
FIG. 5 is a block diagram of a conventional power converter. In FIG. 5, 101 is a DC motor, 102 is a power conversion circuit, 103 is an actual current observation unit, 104 is a current feedback control unit, and 105 is a current observer unit.

図5を用いて従来の電力変換装置の動作を説明する。電流指令Irefと電流推定信号Iobとを電流フィードバック制御部104に入力し、モータ電圧指令Vrefを生成する。電流フィードバック制御部104の動作は式(1)のようにフィードバックゲインをkaとする比例制御で構成される。
Vref=ka*(Iref−Iob) (1)
電流フィードバック制御部104は比例制御としたが、式(2)のように比例積分制御で構成してもよい。電力変換回路102は電圧指令Vrefを入力して直流電動機101の駆動電流を生成する。実電流観測部103は直流電動機101の駆動電流を検出し、測定電流Ifbとして出力する。モータ電圧指令Vrefと測定電流Ifbとを電流オブザーバ部105に入力し、電流オブザーバ105は次のようにして電流推定信号Iobを生成する。ただし、sは微分演算子、Rは抵抗、Lはインダクタンスを示す。L1、L2はオブザーバのゲインである。
Iob*s=−R*Iob/L+L1*(Ifb−Iob)+(Vob+Vref)/L
Vob*s=L2*(Ifb−Iob) (2)
このように、従来の電力変換装置は、電流オブザーバ105の出力である推定電流信号Iobを用いて電流フィードバック制御部104のフィードバック信号として使用することで、フィードバックゲインを高く設定することができるので、温度などの影響による直流電動機101と電力変換回路102とパラメータ変動や、電源の変動などが生じる際も、良好な電流応答特性を得られる。
特開2003−143896(第5−6頁、図1)
The operation of the conventional power conversion device will be described with reference to FIG. The current command Iref and the current estimation signal Iob are input to the current feedback control unit 104, and a motor voltage command Vref is generated. The operation of the current feedback control unit 104 is configured by proportional control with a feedback gain ka as shown in Equation (1).
Vref = ka * (Iref−Iob) (1)
Although the current feedback control unit 104 is proportional control, it may be configured by proportional-integral control as shown in Equation (2). The power conversion circuit 102 receives the voltage command Vref and generates a drive current for the DC motor 101. The actual current observation unit 103 detects the drive current of the DC motor 101 and outputs it as the measurement current Ifb. The motor voltage command Vref and the measured current Ifb are input to the current observer unit 105, and the current observer 105 generates the current estimation signal Iob as follows. Here, s is a differential operator, R is a resistance, and L is an inductance. L1 and L2 are observer gains.
Iob * s = −R * Iob / L + L1 * (Ifb−Iob) + (Vob + Vref) / L
Vob * s = L2 * (Ifb-Iob) (2)
Thus, since the conventional power converter can be used as a feedback signal of the current feedback control unit 104 using the estimated current signal Iob that is the output of the current observer 105, the feedback gain can be set high. Good current response characteristics can also be obtained when there are fluctuations in parameters, power supply fluctuations, and the like between the DC motor 101 and the power conversion circuit 102 due to the influence of temperature or the like.
JP2003-143896 (page 5-6, FIG. 1)

従来の電力変換装置は、電流フィードバック制御部のフィードバック信号として電流オブザーバ部により生成される推定電流信号を用いているので、オブザーバ部のモデルが電力変換回路のモデルと一致しない場合や、電流検出値に誤差がある場合は理想的な推定電流信号を得ることができないので良好な電流応答特性を得ることができないという問題があった。
本発明はこのような問題点に鑑みてなされたものであり、検出電流信号から電流応答に影響を与える振動成分のみを除去することで、オブザーバのモデルが一致しない場合でも良好な電流応答特性を得ることができる電力変換装置を提供することを目的とする。
Since the conventional power conversion device uses the estimated current signal generated by the current observer unit as the feedback signal of the current feedback control unit, if the model of the observer unit does not match the model of the power conversion circuit, the current detection value When there is an error, an ideal estimated current signal cannot be obtained, so that a good current response characteristic cannot be obtained.
The present invention has been made in view of such problems, and by removing only the vibration component that affects the current response from the detected current signal, a good current response characteristic can be obtained even when the observer models do not match. It aims at providing the power converter device which can be obtained.

上記問題を解決するため、本発明は、次のように構成したのである。   In order to solve the above problem, the present invention is configured as follows.

本発明の代表的な構成は、電流指令と電流信号に基づいて電圧指令を生成する電流制御器と、キャリア信号を発生するキャリア信号発生器と、前記キャリア信号と前記電圧指令とを比較しゲート信号を生成する比較器と、前記ゲート信号から駆動電圧を生成するインバータ回路と、を備えた電力変換装置において、モータの検出電流信号と前記電圧指令に基づいて振動成分を除去した電流信号を生成する電流信号生成器を備え、前記電流信号生成器は、前記検出電流信号と前記電圧指令に基づいて電流推定信号を生成するオブザーバと、前記検出電流信号から前記電流推定信号を減じて推定差電流信号を生成する第1減算器と、前記推定差電流信号の振動成分を抽出する振動成分抽出器と、前記検出電流信号から前記振動成分を減じる第2減算器と、を有するものである。
A representative configuration of the present invention includes a current controller that generates a voltage command based on a current command and a current signal, a carrier signal generator that generates a carrier signal, a gate that compares the carrier signal and the voltage command, A power conversion device including a comparator that generates a signal and an inverter circuit that generates a drive voltage from the gate signal, and generates a current signal from which vibration components are removed based on the detected current signal of the motor and the voltage command A current signal generator that generates an estimated current signal based on the detected current signal and the voltage command; and an estimated difference current obtained by subtracting the estimated current signal from the detected current signal A first subtractor for generating a signal; a vibration component extractor for extracting a vibration component of the estimated difference current signal; and a second subtraction for subtracting the vibration component from the detected current signal. And vessels, is shall to have a.

請求項に記載の発明によると、検出電流信号の振動成分のみを除去することができるので、良好な電流応答特性の電力変換装置を提供することができる。
また、請求項に記載の発明によると、オブザーバに入力する電流値を電流指令とすることで、誤差の少ない推定電流信号を得ることができ、検出電流信号の振動成分の除去精度が上がるため良好な電流応答特性の電力変換装置を提供することができる。
また、請求項に記載の発明によると、オブザーバに入力する信号はフィルタ処理された信号なので、誤差の少ない推定電流信号を得ることができ、検出電流信号の振動成分の除去精度が上がり、良好な電流応答特性の電力変換装置を提供することができる。
また、請求項4または5記載の発明によると、検出電流信号の振動成分のみを除去することができ、良好な電流応答特性の電力変換装置を提供することができる。

According to the first aspect of the present invention, since only the vibration component of the detected current signal can be removed, it is possible to provide a power conversion device with good current response characteristics.
According to the second aspect of the present invention, an estimated current signal with less error can be obtained by using the current value input to the observer as a current command, and the accuracy of removing the vibration component of the detected current signal is increased. A power conversion device having good current response characteristics can be provided.
According to the third aspect of the present invention, since the signal input to the observer is a filtered signal, an estimated current signal with a small error can be obtained, and the accuracy of removing the vibration component of the detected current signal is improved. It is possible to provide a power conversion device having an excellent current response characteristic.
In addition, according to the invention described in claim 4 or 5 , only the vibration component of the detected current signal can be removed, and a power converter having a good current response characteristic can be provided.

以下、本発明の実施の形態について図を参照して説明する。   Hereinafter, embodiments of the present invention will be described with reference to the drawings.

図1は、本発明の電力変換装置の第1実施例の構成を示すブロック図である。図において、1は電力変換装置、2は電流制御器、3は比較器、4はインバータ回路、5はキャリア信号発生器、10は電流信号生成器、11はオブザーバ、12は第1減算器、13は第2減算器、14は振動成分抽出器である。
本発明が従来技術と異なる部分は電流信号生成器がオブザーバと振動成分抽出器と第1減算器、第2減算器とを備えて、モータの検出電流信号の振動成分を除去した電流信号を電流制御器のフィードバック信号として使用している部分である。
図1を用いて、本発明の電力変換装置の動作を説明する。電力変換装置1は電流指令Irefと電流信号Ifb2とを電流制御器2に入力し、電圧指令Vrefを生成する。電流信号Ifb2の生成方法については後述する。電流制御器2が比例制御である場合は、式(3)のようにして電圧指令Vrefを生成する。ただし、kaはフィードバックゲインである。
Vref=ka*(Iref−Ifb2) (3)
電流制御器2は比例積分制御、もしくは比例積分微分制御であってもよい。電流制御器2で生成されたVrefは比較器3に入力されキャリア信号発生器5から出力されるキャリア信号Vcarと比較してVref≧Vcarの時ON、Vref<Vcarの時OFFとなるようなゲート信号を生成する。比較器3から出力されるゲート信号をインバータ回路4にて処理して駆動電圧を生成し負荷であるモータを駆動する。
FIG. 1 is a block diagram showing the configuration of the first embodiment of the power conversion apparatus of the present invention. In the figure, 1 is a power converter, 2 is a current controller, 3 is a comparator, 4 is an inverter circuit, 5 is a carrier signal generator, 10 is a current signal generator, 11 is an observer, 12 is a first subtractor, Reference numeral 13 denotes a second subtracter, and reference numeral 14 denotes a vibration component extractor.
The present invention is different from the prior art in that the current signal generator includes an observer, a vibration component extractor, a first subtractor, and a second subtracter, and a current signal obtained by removing the vibration component of the detected current signal of the motor. This part is used as a feedback signal for the controller.
The operation of the power conversion device of the present invention will be described with reference to FIG. The power converter 1 inputs the current command Iref and the current signal Ifb2 to the current controller 2 and generates a voltage command Vref. A method for generating the current signal Ifb2 will be described later. When the current controller 2 is proportional control, the voltage command Vref is generated as shown in Expression (3). However, ka is a feedback gain.
Vref = ka * (Iref−Ifb2) (3)
The current controller 2 may be proportional-integral control or proportional-integral-derivative control. The Vref generated by the current controller 2 is input to the comparator 3 and compared with the carrier signal Vcar output from the carrier signal generator 5, and is turned on when Vref ≧ Vcar, and turned off when Vref <Vcar. Generate a signal. The gate signal output from the comparator 3 is processed by the inverter circuit 4 to generate a drive voltage to drive a motor as a load.

次に、電流検出信号Ifb2を生成するための動作について説明する。電流信号Ifb2は電流検出信号生成器10にて生成される。モータ電圧指令Vrefとモータの検出電流信号Ifbとをオブザーバ11に入力して、式(4)のように状態変数を推定電流信号Iobs、推定外乱電圧Vobsとする2次のオブザーバとして構成する。ただし、sは微分演算子、Rは抵抗、Lはインダクタンスを示す。L1、L2はオブザーバのゲインである。
Iobs*s=−R*Iobs/L+L1*(Ifb−Iobs)
+(Vobs+Vref)/L
Vobs*s=L2*(Ifb−Iobs) (4)
また、オブザーバ11は推定電流信号Iobsを状態変数とする1次のオブザーバであってもよい。オブザーバ11を1次のオブザーバとして構成する場合は式(5)のようして推定電流信号Iobsを生成する。ただし、L3はオブザーバのゲインである。
Iobs*s=−R*Iobs/L+L3(Ifb−Iobs)+Vref/L (5)
オブザーバ11により生成された推定電流信号Iobs、およびモータの電流信号Ifbは減算器13に入力され、電流信号Ifbから推定電流信号Iobsを減算する処理を行って推定差電流信号Idifを生成する。推定差電流信号Idifは振動成分抽出器14に入力される。振動成分抽出器14では、推定差電流信号Idifから除去したい振動成分Ivibのみを抽出するフィルタとなっている。除去したい振動成分Ivibがある周波数帯域以上の信号であれば振動成分抽出器14をハイパスフィルタとして構成すればよい。また、除去したい振動成分Ivibがある周波数帯域以下の信号であれば振動成分抽出器14をローパスフィルタとして構成すればよい。また、除去したい振動成分Ivibがある範囲の周波数帯域であれば振動成分抽出器14を帯域通過フィルタとして構成すればよい。また、除去したい振動成分Ivibがある範囲以外の周波数帯域であれば振動成分抽出器14を帯域制限フィルタとして構成すればよい。また、任意のローパスフィルタ、または任意のハイパスフィルタ、または任意の帯域通過フィルタ、または任意の帯域制限フィルタにより抽出された信号に任意のゲインを乗じて出力してもよい。
Next, an operation for generating the current detection signal Ifb2 will be described. The current signal Ifb2 is generated by the current detection signal generator 10. The motor voltage command Vref and the motor detection current signal Ifb are input to the observer 11 and configured as a secondary observer having the state variables as the estimated current signal Iobs and the estimated disturbance voltage Vobs as shown in equation (4). Here, s is a differential operator, R is a resistance, and L is an inductance. L1 and L2 are observer gains.
Iobs * s = −R * Iobs / L + L1 * (Ifb−Iobs)
+ (Vobs + Vref) / L
Vobs * s = L2 * (Ifb-Iobs) (4)
The observer 11 may be a primary observer having the estimated current signal Iobs as a state variable. When the observer 11 is configured as a primary observer, the estimated current signal Iobs is generated as shown in Equation (5). However, L3 is the gain of the observer.
Iobs * s = −R * Iobs / L + L3 (Ifb−Iobs) + Vref / L (5)
The estimated current signal Iobs generated by the observer 11 and the motor current signal Ifb are input to the subtractor 13, and a process of subtracting the estimated current signal Iobs from the current signal Ifb is performed to generate the estimated difference current signal Idif. The estimated difference current signal Idif is input to the vibration component extractor 14. The vibration component extractor 14 is a filter that extracts only the vibration component Ivib to be removed from the estimated difference current signal Idif. If the vibration component Ivib to be removed is a signal having a frequency band or higher, the vibration component extractor 14 may be configured as a high-pass filter. If the vibration component Ivib to be removed is a signal having a frequency band or less, the vibration component extractor 14 may be configured as a low-pass filter. Further, the vibration component extractor 14 may be configured as a band-pass filter if the vibration component Ivib to be removed is in a certain frequency range. Further, the vibration component extractor 14 may be configured as a band limiting filter in a frequency band outside the range where there is a vibration component Ivib to be removed. Alternatively, a signal extracted by an arbitrary low-pass filter, an arbitrary high-pass filter, an arbitrary band-pass filter, or an arbitrary band-limiting filter may be multiplied and output by an arbitrary gain.

振動成分抽出器14により生成された振動成分Ivib、および検出電流信号Ifbは減算器12に入力されて検出電流信号Ifbから振動成分Ivibを減算して電流信号Ifb2を生成する。   The vibration component Ivib generated by the vibration component extractor 14 and the detected current signal Ifb are input to the subtractor 12, and the vibration component Ivib is subtracted from the detected current signal Ifb to generate a current signal Ifb2.

このように電流制御器2で用いる電流信号Ifb2は検出電流信号Ifbから任意の振動成分が除去された信号であるため、良好な電流応答を得ることができる。   As described above, the current signal Ifb2 used in the current controller 2 is a signal obtained by removing an arbitrary vibration component from the detected current signal Ifb, so that a good current response can be obtained.

図2は、本発明の電力変換装置の第2実施例の構成を示すブロック図である。本発明の第2実施例の電力変換装置は、第1実施例の電力変換装置と電流検出信号生成器が異なるだけであるため、図2における電流検出信号生成器10´の動作について説明する。電流信号生成器10´は電流信号生成器10と同じく、オブザーバ11と第1減算器12と第2減算器13と振動成分抽出器14とを備えているが、オブザーバ11に入力される信号が電圧指令Vrefと電圧指令Irefとなっている。したがって、オブザーバ11が状態変数を推定電流信号Iobs、推定外乱電圧Vobsとする2次のオブザーバとして構成した場合、式(6)のようにして推定電流信号Iobsを生成する。
Iobs*s=−R*Iobs/L+L1*(Iref−Iobs)
+(Vobs+Vref)/L
Vobs*s=L2*(Iref−Iobs) (6)
また、オブザーバ11が推定電流信号Iobsを状態変数とする1次のオブザーバとして構成した場合は式(7)のようにして推定電流信号Iobsを生成する。
Iobs*s=−R*Iobs/L+L3(Iref−Iobs)+Vref/L (7)
オブザーバ11により生成された推定電流信号Iobs、および検出電流信号Ifbは第2減算器13に入力され、検出電流信号Ifbから推定電流信号Iobsを減算する処理を行い、振動成分抽出器14に入力される。振動成分抽出器14では、除去したい振動成分Ivibのみを抽出するフィルタとなっている。除去したい振動成分Ivibがある周波数帯域以上の信号であれば振動成分抽出器14をハイパスフィルタとして構成すればよい。また、除去したい振動成分がある周波数帯域以下の信号であれば振動成分抽出器14をローパスフィルタとして構成すればよい。また、除去したい振動成分Ivibがある範囲の周波数帯域であれば振動成分抽出器14を帯域通過フィルタとして構成すればよい。また、除去したい振動成分Ivibがある範囲以外の周波数帯域であれば振動成分抽出器14を帯域制限フィルタとして構成すればよい。また、任意のローパスフィルタ、または任意のハイパスフィルタ、または任意の帯域通過フィルタ、または任意の帯域制限フィルタにより抽出された信号に任意のゲインを乗じて出力してもよい。
FIG. 2 is a block diagram showing the configuration of the second embodiment of the power converter of the present invention. Since the power conversion device of the second embodiment of the present invention is different from the power conversion device of the first embodiment only in the current detection signal generator, the operation of the current detection signal generator 10 ′ in FIG. 2 will be described. Similar to the current signal generator 10, the current signal generator 10 ′ includes an observer 11, a first subtractor 12, a second subtractor 13, and a vibration component extractor 14, but a signal input to the observer 11 is received. The voltage command Vref and the voltage command Iref are provided. Therefore, when the observer 11 is configured as a secondary observer having the state variables as the estimated current signal Iobs and the estimated disturbance voltage Vobs, the estimated current signal Iobs is generated as shown in Equation (6).
Iobs * s = −R * Iobs / L + L1 * (Iref−Iobs)
+ (Vobs + Vref) / L
Vobs * s = L2 * (Iref−Iobs) (6)
When the observer 11 is configured as a primary observer using the estimated current signal Iobs as a state variable, the estimated current signal Iobs is generated as shown in Expression (7).
Iobs * s = −R * Iobs / L + L3 (Iref−Iobs) + Vref / L (7)
The estimated current signal Iobs and the detected current signal Ifb generated by the observer 11 are input to the second subtractor 13, a process of subtracting the estimated current signal Iobs from the detected current signal Ifb, and input to the vibration component extractor 14. The The vibration component extractor 14 is a filter that extracts only the vibration component Ivib to be removed. If the vibration component Ivib to be removed is a signal having a frequency band or higher, the vibration component extractor 14 may be configured as a high-pass filter. If the vibration component to be removed is a signal having a frequency band or less, the vibration component extractor 14 may be configured as a low-pass filter. Further, the vibration component extractor 14 may be configured as a band-pass filter if the vibration component Ivib to be removed is in a certain frequency range. Further, the vibration component extractor 14 may be configured as a band limiting filter in a frequency band outside the range where there is a vibration component Ivib to be removed. Alternatively, a signal extracted by an arbitrary low-pass filter, an arbitrary high-pass filter, an arbitrary band-pass filter, or an arbitrary band-limiting filter may be multiplied and output by an arbitrary gain.

振動成分抽出器14により生成された振動成分Ivib、および検出電流信号Ifbは第1減算器12に入力されて検出電流信号Ifbから振動成分Ivibを減算して電流信号Ifb2を生成する。   The vibration component Ivib generated by the vibration component extractor 14 and the detected current signal Ifb are input to the first subtractor 12, and the vibration component Ivib is subtracted from the detected current signal Ifb to generate a current signal Ifb2.

このように電流制御器2で用いる電流信号Ifb2は検出電流信号Ifbから任意の振動成分Ivibが除去された信号であるため良好な電流応答を得ることができる。また、オブザーバに入力される電流値として電流指令Irefを用いることで、検出電流信号Ifbの検出誤差が多い場合であっても精度良く検出電流信号Ifbの振動を除去することができるため、良好な電流応答を得ることができる。   As described above, the current signal Ifb2 used in the current controller 2 is a signal obtained by removing an arbitrary vibration component Ivib from the detected current signal Ifb, so that a good current response can be obtained. Further, since the current command Iref is used as the current value input to the observer, the vibration of the detection current signal Ifb can be accurately removed even when the detection error of the detection current signal Ifb is large. A current response can be obtained.

図3は、本発明の電力変換装置の第3実施例の構成を示すブロック図である。本発明の第3実施例の電力変換装置は、第1実施例の電力変換装置と電流信号生成器が異なるだけであるため、図3における電流信号生成器10´´の動作について説明する。電流信号生成器10´´は、オブザーバ11と第1減算器12と第2減算器13と振動成分抽出器14とフィルタ15とフィルタ16とを備えていて、オブザーバ11には検出電流信号Ifbをフィルタ15でフィルタ処理した信号と、モータ電圧指令Vrefをフィルタ16でフィルタ処理した信号とを入力して推定電流信号Iobsを生成する。図3では検出電流信号Ifbと電圧指令Vrefとの両方の信号をフィルタ処理しているが、どちらか一方の信号をフィルタ処理しても良い。オブザーバ11と第1減算器12と第2減算器13と振動成分抽出器14の動作は第1の実施例と同じである。   FIG. 3 is a block diagram showing the configuration of the third embodiment of the power converter of the present invention. Since the power converter of the third embodiment of the present invention is different from the power converter of the first embodiment only in the current signal generator, the operation of the current signal generator 10 ″ in FIG. 3 will be described. The current signal generator 10 ″ includes an observer 11, a first subtracter 12, a second subtractor 13, a vibration component extractor 14, a filter 15, and a filter 16, and the observer 11 receives the detected current signal Ifb. The estimated current signal Iobs is generated by inputting the signal filtered by the filter 15 and the signal obtained by filtering the motor voltage command Vref by the filter 16. In FIG. 3, both the detection current signal Ifb and the voltage command Vref are filtered, but either signal may be filtered. The operations of the observer 11, the first subtractor 12, the second subtractor 13, and the vibration component extractor 14 are the same as those in the first embodiment.

図4は、本発明の電力変換装置の第4の実施例の構成を示すブロック図である。本発明の第4実施例の電力変換装置は第2実施例の電力変換装置と電流信号生成器が異なるだけであるため、図4における電流信号生成器10´´´の動作について説明する。電流信号生成器10´´´は、オブザーバ11と第1減算器12と第2減算器13と振動成分抽出器14とフィルタ16とフィルタ17とを備えていて、オブザーバ11には電圧指令Vrefをフィルタ16でフィルタ処理した信号と電流指令Irefをフィルタ17でフィルタ処理した信号とを入力して推定電流信号Iobsを生成する。図4では電流指令Irefと電圧指令Vrefとの両方の信号をフィルタ処理しているが、どちらか一方の信号をフィルタ処理しても良い。オブザーバ11と第1減算器12と第2減算器13と振動成分抽出器14の動作は第2の実施例と同じである。   FIG. 4 is a block diagram showing the configuration of the fourth embodiment of the power converter of the present invention. Since the power converter of the fourth embodiment of the present invention is different from the power converter of the second embodiment only in the current signal generator, the operation of the current signal generator 10 '' 'in FIG. 4 will be described. The current signal generator 10 ″ ″ includes an observer 11, a first subtracter 12, a second subtractor 13, a vibration component extractor 14, a filter 16 and a filter 17, and the observer 11 receives a voltage command Vref. The signal filtered by the filter 16 and the signal obtained by filtering the current command Iref by the filter 17 are input to generate the estimated current signal Iobs. In FIG. 4, both signals of the current command Iref and the voltage command Vref are filtered, but either signal may be filtered. The operations of the observer 11, the first subtractor 12, the second subtractor 13, and the vibration component extractor 14 are the same as those in the second embodiment.

負荷としては、主に直流モータ、交流モータなどの電気モータに適用される。   The load is mainly applied to an electric motor such as a DC motor or an AC motor.

本発明の第1実施例を示す電力変換装置のブロック図The block diagram of the power converter device which shows 1st Example of this invention. 本発明の第2実施例を示す電力変換装置のブロック図The block diagram of the power converter device which shows 2nd Example of this invention. 本発明の第3実施例を示す電力変換装置の電流検出信号生成器のブロック図The block diagram of the electric current detection signal generator of the power converter device which shows 3rd Example of this invention. 本発明の第4実施例を示す電力変換装置の電流検出信号生成器のブロック図The block diagram of the electric current detection signal generator of the power converter device which shows 4th Example of this invention. 従来の電力変換装置のブロック図Block diagram of a conventional power converter

符号の説明Explanation of symbols

1 電力変換装置
2 電流制御器
3 比較器
4 インバータ回路
5 キャリア信号発生器
10 電流信号生成器
11 オブザーバ
12 第1減算器
13 第2減算器
14 振動成分抽出器
15 フィルタ
16 フィルタ
17 フィルタ
101 直流電動機
102 電力変換回路
103 実電流観測部
104 電流フィードバック制御部
105 電流オブザーバ部
DESCRIPTION OF SYMBOLS 1 Power converter 2 Current controller 3 Comparator 4 Inverter circuit 5 Carrier signal generator 10 Current signal generator 11 Observer 12 First subtractor 13 Second subtractor 14 Vibration component extractor 15 Filter 16 Filter 17 Filter 101 DC motor 102 power conversion circuit 103 real current observation unit 104 current feedback control unit 105 current observer unit

Claims (5)

電流指令と電流信号に基づいて電圧指令を生成する電流制御器と、キャリア信号を発生するキャリア信号発生器と、前記キャリア信号と前記電圧指令とを比較しゲート信号を生成する比較器と、前記ゲート信号から駆動電圧を生成するインバータ回路と、を備えた電力変換装置において、
モータの検出電流信号と前記電圧指令に基づいて振動成分を除去した電流信号を生成する電流信号生成器を備え
前記電流信号生成器は、前記検出電流信号と前記電圧指令に基づいて電流推定信号を生成するオブザーバと、前記検出電流信号から前記電流推定信号を減じて推定差電流信号を生成する第1減算器と、前記推定差電流信号の振動成分を抽出する振動成分抽出器と、前記検出電流信号から前記振動成分を減じる第2減算器と、を有することを特徴とする電力変換装置。
A current controller that generates a voltage command based on a current command and a current signal; a carrier signal generator that generates a carrier signal; a comparator that compares the carrier signal and the voltage command to generate a gate signal; and In a power converter comprising: an inverter circuit that generates a drive voltage from a gate signal;
A current signal generator that generates a current signal from which vibration components are removed based on the detected current signal of the motor and the voltage command ;
The current signal generator includes an observer that generates a current estimation signal based on the detected current signal and the voltage command, and a first subtractor that generates an estimated difference current signal by subtracting the current estimation signal from the detection current signal When the power conversion device according to claim Rukoto that Yusuke a vibration component extractor for extracting a vibration component of the estimated differential current signal, and a second subtractor for subtracting the vibration component from the detected current signal.
前記オブザーバは、前記検出電流信号の代わりに前記電流指令を用い、前記電流指令と前記電圧指令に基づいて電流推定信号を生成することを特徴とする請求項1記載の電力変換装置。 The power converter according to claim 1 , wherein the observer uses the current command instead of the detected current signal, and generates a current estimation signal based on the current command and the voltage command. 前記オブザーバは、前記電圧指令前記検出電流信号前記推定電流信号の少なくともいずれか1つをフィルタリングするフィルタを備えること特徴とする請求項1または2記載の電力変換装置。 The observer, the voltage command, the detection current signal, power converter according to claim 1, wherein further comprising a filter for filtering at least one of the estimated current signal. 前記振動成分抽出器は、任意のローパスフィルタ任意のハイパスフィルタ任意の帯域制限フィルタ任意の帯域通過フィルタのいずれかであることを特徴とする請求項1乃至3のいずれか1項に記載の電力変換装置。 The vibration component extractor may be any of the low-pass filter, according to any one of claims 1 to 3, characterized in that one of any high pass filter, any band-limiting filter, any of the band-pass filter Power converter. 前記振動成分抽出器は、任意の周波数帯域の振動成分を抽出した信号に任意のゲインを乗じた信号を出力することを特徴とする請求項1乃至4のいずれか1項に記載の電力変換装置。
The vibration component extractor, the power conversion device according to any one of claims 1 to 4 and outputs a signal obtained by multiplying the arbitrary gain the extracted signal oscillation component of any frequency bands .
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