JPH0342999A - Silencing device for radiation noise in opening section - Google Patents

Silencing device for radiation noise in opening section

Info

Publication number
JPH0342999A
JPH0342999A JP1177312A JP17731289A JPH0342999A JP H0342999 A JPH0342999 A JP H0342999A JP 1177312 A JP1177312 A JP 1177312A JP 17731289 A JP17731289 A JP 17731289A JP H0342999 A JPH0342999 A JP H0342999A
Authority
JP
Japan
Prior art keywords
noise
opening
signal
additional sound
sound
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
JP1177312A
Other languages
Japanese (ja)
Inventor
Yasushi Yoshimura
康史 吉村
Kentaro Matsumoto
健太郎 松本
Ryusuke Gotoda
龍介 後藤田
Taku Kuribayashi
栗林 卓
Minoru Takahashi
稔 高橋
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.)
Hitachi Plant Technologies Ltd
Original Assignee
Hitachi Plant Technologies 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 Hitachi Plant Technologies Ltd filed Critical Hitachi Plant Technologies Ltd
Priority to JP1177312A priority Critical patent/JPH0342999A/en
Publication of JPH0342999A publication Critical patent/JPH0342999A/en
Pending legal-status Critical Current

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  • Soundproofing, Sound Blocking, And Sound Damping (AREA)
  • Filters That Use Time-Delay Elements (AREA)

Abstract

PURPOSE:To realize a radiation noise silencer in an opening section not hindering the passing of a person or a commodity by generating an additional sound having opposite phase and the same sound pressure to a noise radiating from an opening section based on a signal from a noise information detection means and an error microphone. CONSTITUTION:A sensor microphone SM is arranged to the intake side of a ventilation port 14 and detects a noise radiating from a machine 10 via the ventilation port 14 and outputs its detection signal to a controller 20. A speaker S is arranged in the vicinity of the outlet of the ventilation port 14 and generates additional sound to cancel the noise radiating from the ventilation port 14 with a driving signal from the controller 20. An error microphone EM is arranged to a prescribed position in a direction where the noise radiates from the ventilation port 14, detects a sound wave after the additional sound from the speaker S and the noise are interfered with each other and outputs its detection signal (error signal) to the controller 20. The controller 20 outputs a signal with a prescribed amplitude and phase characteristic to the speaker S radiating the silencing sound wave so as to minimize the error signal E.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は開口部放射騒音用消音装置に係り、特に工場建
屋等の壁に設けられた換気口や人の出入口などの開口部
から放射する騒音を消音する開口部放射騒音用消音装置
に関する。
[Detailed Description of the Invention] [Field of Industrial Application] The present invention relates to a silencing device for radiating noise from openings, and in particular, the present invention relates to a silencing device for radiating noise from openings, and in particular from openings such as ventilation holes provided in the walls of factory buildings, entrances and exits for people, etc. The present invention relates to a silencing device for aperture radiated noise that mutes noise.

〔従来の技術〕[Conventional technology]

従来、この種の消音装置は、第7図に示すように換気口
2から延出するダクト4と、このダクト4内に内貼りさ
れた吸音材6とから構成されていた。
Conventionally, this type of silencer has been comprised of a duct 4 extending from a ventilation opening 2 and a sound absorbing material 6 lined inside the duct 4, as shown in FIG.

〔発明が解決しようする課題〕[Problem to be solved by the invention]

しかし、上記従来の消音装置は、吸音材6自身が低周波
の吸音能力に劣ることから、低周波騒音を放射する機械
設備などが設置されている工場建屋に適用してもあまり
効果がなかった。また、消音効果を上げるために、ダク
ト4を適当な形状に曲げるようにしたものがあるが、そ
の場合には圧力損失が増し、換気効率が低下するととも
に、ダクトが大型化してit自体の設置スペースが大き
くなるなどの問題があった。
However, the above-mentioned conventional sound damping device was not very effective even when applied to a factory building where machinery and equipment that emit low-frequency noise were installed, because the sound-absorbing material 6 itself had poor low-frequency sound absorption ability. . In addition, in order to increase the noise reduction effect, there are some models in which the duct 4 is bent into an appropriate shape, but in that case, pressure loss increases, ventilation efficiency decreases, and the duct becomes larger, making it difficult to install the IT itself. There were problems such as increased space.

更に、このような消音装置の場合、人及び物品が通過す
るような出入口(開口部ンには設置できないという問題
があった。
Furthermore, in the case of such a silencer, there is a problem that it cannot be installed at an entrance/exit (opening) through which people and goods pass.

本発明はこのような事情に鑑みてなされたもので、低周
波騒音の消音にも効果があり、圧力損失が少なく、人、
物品などの通過の妨げとならないような開口部放射騒音
用消音装置を提供することを目的とする 〔課題を解決する為の手段〕 本発明は前記目的を達成する為に、騒音源から壁に設け
られた開口部を介して放射される騒音の情報を検知する
騒音情報検知手段と、前記開口部の近傍に配設され、該
開口部から放射される騒音を打ち消すための付加音を発
生する付加音発生手段と、前記開口部から騒音が放射さ
れる方向の所定位置に配設され、該開口部から放射され
た騒音と前記付加音発生手段から発生された付加音とが
音波干渉した以後の音波を検出するエラーマイクと、前
記騒音情報検知手段及びエラーマイクからの信号に基づ
いて、前記開口部から放射される騒音に対して逆位相で
且つ同一音圧の付加音を前記付加音発生手段から発生さ
せるための駆動信号を作成する制御手段と、を備えたこ
とを特徴としている。
The present invention was made in view of these circumstances, and is effective in muffling low-frequency noise, with little pressure loss, and is safe for people and
It is an object of the present invention to provide a silencing device for radiated noise from an opening that does not obstruct the passage of articles etc. a noise information detection means for detecting information on noise radiated through the provided opening; and a noise information detection means disposed near the opening to generate additional sound for canceling the noise radiated from the opening. Additional sound generating means is disposed at a predetermined position in the direction in which noise is radiated from the opening, and after the noise radiated from the opening and the additional sound generated from the additional sound generating means cause sonic interference. an error microphone that detects a sound wave; and an error microphone that generates an additional sound having an opposite phase and the same sound pressure as the noise radiated from the opening, based on signals from the noise information detection means and the error microphone. The invention is characterized by comprising a control means for creating a drive signal to be generated from the means.

〔作用〕[Effect]

本発明は能動型の消音装置、即ち騒音源から伝播してき
た騒音に対し、同一音圧、逆位相の付加音を放射し、音
波干渉により消音効果を強制的に生じさせる電子消音シ
ステムが、低周波騒音に効果があることを確認し、電子
消音システムの構成要素の1つである付加音発生手段か
ら発生される付加音が、壁の開口部から放射される騒音
と干渉するように前記付加音発生手段を開口部近傍に配
置するようにしている。また、消音効果を評価するため
のエラーマイクも開口部から騒音が放射される方向の所
定位置に配設されている。
The present invention is an active silencing device, that is, an electronic silencing system that radiates additional sound of the same sound pressure and opposite phase to the noise propagating from the noise source, and forcibly produces a silencing effect by sonic interference. After confirming that it is effective against frequency noise, the additional sound generated from the additional sound generating means, which is one of the components of the electronic silencing system, interferes with the noise radiated from the opening in the wall. The sound generating means is arranged near the opening. Furthermore, an error microphone for evaluating the silencing effect is also placed at a predetermined position in the direction in which noise is radiated from the opening.

〔実施例〕〔Example〕

以下添付図面に従って本発明に係る開口部放射騒音用消
音装置の好ましい実施例を詳説する。
DESCRIPTION OF THE PREFERRED EMBODIMENTS Preferred embodiments of the silencing device for aperture radiated noise according to the present invention will be described in detail below with reference to the accompanying drawings.

第1図において、騒音の発生源となる機械10は、防音
カバー12によって囲まれている。この防音カバー12
の壁部には換気口14が懲戒され、換気口14には換気
扇16が取り付けられている。
In FIG. 1, a machine 10, which is a source of noise, is surrounded by a soundproof cover 12. This soundproof cover 12
A ventilation opening 14 is provided on the wall of the room, and a ventilation fan 16 is attached to the ventilation opening 14.

本発明に係る開口部放射騒音用消音装置は、上記換気口
14から防音カバー12の外に放射される騒音を消音す
るもので、主として騒音情報検知手段としてのセンサー
マイクSMと、付加音発生手段としてのスピーカSと、
消音効果を評価するためのエラーマイクEMと、センサ
ーマイクSMとエラーマイクEMの出力信号に基づいて
スピーカSに駆動信号を出力する制御装置20とから構
成されている。
The silencing device for opening radiated noise according to the present invention is for silencing the noise radiated from the ventilation port 14 to the outside of the soundproof cover 12, and mainly includes a sensor microphone SM as a noise information detecting means and an additional sound generating means. Speaker S as
It is comprised of an error microphone EM for evaluating the silencing effect, and a control device 20 that outputs a drive signal to the speaker S based on the output signals of the sensor microphone SM and the error microphone EM.

センサーマイクSMは換気口14の入口側に配設され、
機械10から換気口14を介して放射される騒音を検出
し、その検出信号を制御装置20に出力する。
The sensor microphone SM is arranged on the entrance side of the ventilation port 14,
Noise emitted from the machine 10 through the ventilation port 14 is detected, and a detection signal thereof is output to the control device 20.

スピーカSは換気口14の出口近傍に配設され、制′a
装置20からのIll信号によって換気口14から放射
される騒音を打ち消すための付加音を発生する。
The speaker S is arranged near the outlet of the ventilation port 14, and
The Ill signal from the device 20 generates additional sound to cancel out the noise emitted from the ventilation port 14.

エラーマイクEMは換気口14から騒音が放射される方
向の所定位置に配設され、騒音とスピーカSからの付加
音とが音波干渉した以後の音波を検出し、その検出信号
(エラー信号)を制!lI装置20に出力する。
The error microphone EM is arranged at a predetermined position in the direction in which noise is radiated from the ventilation port 14, detects the sound waves after the noise and the additional sound from the speaker S interfere with each other, and outputs the detection signal (error signal). Control! It is output to the II device 20.

第2図は上記制御装置20の一実施例を示すブロック図
で、前記センサーマイクSMによって検出され、アンプ
21及びA/D変換器22を介して出力される騒音を示
す信号Xは、FIR適用型ディジタルフィルタ23及び
コントローラ部24に入力される。また、コントローラ
l 241.:l: バニラ−信号Eとしてエラーマイ
クEMの出方信号がアンプ25及びA/D変換器26を
介して入力している。
FIG. 2 is a block diagram showing an embodiment of the control device 20, in which a signal X indicating noise detected by the sensor microphone SM and outputted via the amplifier 21 and the A/D converter 22 is applied to the FIR. The signal is input to a type digital filter 23 and a controller section 24. Also, controller l 241. :l: The output signal of the error microphone EM is input as the vanilla signal E via the amplifier 25 and the A/D converter 26.

コントローラ部24はエラー信号Eが最小となるように
入力信号X及びエラー信号已に基づいてディジタルフィ
ルタ23に付与すべき伝達関数を決定し、その伝達関数
を特定するためのIJiilパラメータであるフィルタ
係数をディジタルフィルタ23に与える。ディジタルフ
ィルタ23では与えらえたフィルタ係数に基づいて人力
信号Xを所定の振幅、位相特性の信号に変換処理する。
The controller unit 24 determines a transfer function to be given to the digital filter 23 based on the input signal is applied to the digital filter 23. The digital filter 23 converts the human signal X into a signal with predetermined amplitude and phase characteristics based on the given filter coefficients.

このディジタルフィルタ23の出力信号はD/A変換器
27でD/A変換されて消音用音波を放射するスピーカ
Sに出力されるのである。このようにしてエラーマイク
EMの位置において騒音源からの伝播音波は消去される
The output signal of this digital filter 23 is D/A converted by a D/A converter 27 and output to a speaker S that emits sound waves for silencing. In this way, the propagating sound waves from the noise source are canceled at the position of the error microphone EM.

ここで重要な問題は前記伝達関数がアンプ、スピーカも
含めた電気系の遅れと、音波がスピーカSからエラーマ
イクEMへ達する間の遅れとを伴っていることである。
The important problem here is that the transfer function is accompanied by a delay in the electrical system including the amplifier and the speaker, and a delay in the time when the sound wave reaches the error microphone EM from the speaker S.

これは、コントローラ部24内のFIRディジタルフィ
ルタで考慮している。
This is taken into consideration by the FIR digital filter in the controller section 24.

また、制御開始時の伝達関数は予め擬似信号にて作成し
ておき、制御装置20はその擬似信号発生手段(図示せ
ず〉を備えている。
Further, the transfer function at the start of control is created in advance using a pseudo signal, and the control device 20 is equipped with pseudo signal generating means (not shown).

即ち、システムを稼働する前に擬似信号をスピーカSに
出力して音波の伝播領域に音波を放射し、エラーマイク
EMの出力信号に基づいてその出力信号が最小となるよ
うに伝達関数を特定し、その特定された伝達関数を考慮
して所定の適応アルゴリズムに基づいてディジタルフィ
ルタ23に付与すべき伝達関数を特定とするフィルタ係
数を決定する。
That is, before operating the system, a pseudo signal is output to the speaker S to radiate a sound wave to the sound wave propagation region, and a transfer function is specified based on the output signal of the error microphone EM so that the output signal is minimized. , in consideration of the specified transfer function, filter coefficients that specify the transfer function to be applied to the digital filter 23 are determined based on a predetermined adaptive algorithm.

そして、システム稼働時にはこのフィルタ係数を固定し
てVS−LMSアルゴリズムによりディジタルフィルタ
23が適応制御される。
When the system is in operation, the filter coefficients are fixed and the digital filter 23 is adaptively controlled by the VS-LMS algorithm.

尚、上記実施例では、制御装置20は一括して説明した
が、第4図のように換気口14の周囲に配設された複数
のスピーカ56〜Sd に対してスピーカの数に対応し
て複数の制御装置20a〜20dを設けるようにしても
よい。
In the above embodiment, the control device 20 has been explained collectively, but as shown in FIG. A plurality of control devices 20a to 20d may be provided.

また、第4図及び第5図はそれぞれスピーカの他の配置
例を示すもので、第4図に示すスピーカSはその付加音
の放射方向が騒音の伝播方向に対して直交するように配
置されており、第4図に示すスピーカSは換気口14か
ら離間して配置されている。
Further, FIGS. 4 and 5 each show other examples of speaker arrangement, and the speaker S shown in FIG. The speaker S shown in FIG. 4 is placed apart from the ventilation port 14.

更に、本実施例では、消音装置を換気口に配設した場合
について説明したが、これに限らず、第6図に示すよう
に工場建屋内の機械lOが配置された領域と人の居る領
域を区画する壁の開口部に本発明の消音装置を配設し、
人の居る領域に放射される騒音を消音するようにしても
よい。
Furthermore, in this embodiment, the case where the silencer is installed in the ventilation hole is explained, but this is not limited to this, and as shown in FIG. The silencer of the present invention is disposed in an opening in a wall that partitions the
Noise radiated to areas where people are present may be muted.

〔発明の効果〕〔Effect of the invention〕

以上説明したように本発明に係る開口部放射騒音用消音
装置によれば、壁に設けられた換気口や人の出入口など
の開口部から放射する騒音を消音することができ、特に
吸音材等によって除去しきれない低周波騒音に対して大
きな効果が期待できる。
As explained above, according to the silencing device for radiated noise from openings according to the present invention, it is possible to muffle the noise radiated from openings such as ventilation holes provided in walls and entrances and exits for people. It can be expected to have a great effect on low-frequency noise that cannot be completely removed.

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

第1図は本発明に係る開口部放射騒音用消音装置の一実
施例を示す全体構成図、第2図は第1図の制御装置の構
成例を示すブロック図、第3図は複数の制御装置を設け
た例を示す図、第4図及び第5図はそれぞれスピーカの
他の配置例を示す図、第6図は本装置の換気口以外の開
口部への配置態様を示す図、第7図は従来の消音装置の
一例を示す図である。 10・・・騒音源〈機械〉、  12・・・防音カバー
14・・・換気口、 20.20a〜20d・・・制御
装置、 22.26・・・A/D変換器、 23・・・
FIR適応型ディジタルフィルタ、  24・・・コン
トローラ部、 26・・・A/D変換器、 SM・・・
センサーマイク、  S、S、  〜S、・・・スピー
カ、  EM・・・エラーマイク。
FIG. 1 is an overall configuration diagram showing one embodiment of the silencing device for opening radiated noise according to the present invention, FIG. 2 is a block diagram showing an example of the configuration of the control device shown in FIG. 1, and FIG. 3 is a block diagram showing a configuration example of the control device shown in FIG. FIGS. 4 and 5 are diagrams showing other examples of speaker arrangement, respectively. FIG. FIG. 7 is a diagram showing an example of a conventional muffling device. DESCRIPTION OF SYMBOLS 10... Noise source (machine), 12... Soundproof cover 14... Ventilation opening, 20.20a-20d... Control device, 22.26... A/D converter, 23...
FIR adaptive digital filter, 24... Controller section, 26... A/D converter, SM...
Sensor microphone, S, S, ~S,...Speaker, EM...Error microphone.

Claims (1)

【特許請求の範囲】 騒音源から壁に設けられた開口部を介して放射される騒
音の情報を検知する騒音情報検知手段と、前記開口部の
近傍に配設され、該開口部から放射される騒音を打ち消
すための付加音を発生する付加音発生手段と、 前記開口部から騒音が放射される方向の所定位置に配設
され、該開口部から放射された騒音と前記付加音発生手
段から発生された付加音とが音波干渉した以後の音波を
検出するエラーマイクと、前記騒音情報検知手段及びエ
ラーマイクからの信号に基づいて、前記開口部から放射
される騒音に対して逆位相で且つ同一音圧の付加音を前
記付加音発生手段から発生させるための駆動信号を作成
する制御手段と、 を備えたことを特徴とする開口部放射騒音用消音装置。
[Scope of Claims] Noise information detection means for detecting information on noise emitted from a noise source through an opening provided in a wall; an additional sound generating means for generating additional sound to cancel the noise generated by the opening; and an additional sound generating means disposed at a predetermined position in the direction in which the noise is radiated from the opening, the noise radiated from the opening and the additional sound generating means. an error microphone that detects the sound waves after the generated additional sound has caused sonic interference; and an error microphone that is in opposite phase to the noise radiated from the opening and based on signals from the noise information detection means and the error microphone. A silencing device for opening radiated noise, comprising: a control means for creating a drive signal for causing the additional sound generation means to generate additional sound of the same sound pressure.
JP1177312A 1989-07-10 1989-07-10 Silencing device for radiation noise in opening section Pending JPH0342999A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1177312A JPH0342999A (en) 1989-07-10 1989-07-10 Silencing device for radiation noise in opening section

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1177312A JPH0342999A (en) 1989-07-10 1989-07-10 Silencing device for radiation noise in opening section

Publications (1)

Publication Number Publication Date
JPH0342999A true JPH0342999A (en) 1991-02-25

Family

ID=16028781

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1177312A Pending JPH0342999A (en) 1989-07-10 1989-07-10 Silencing device for radiation noise in opening section

Country Status (1)

Country Link
JP (1) JPH0342999A (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07121186A (en) * 1993-10-27 1995-05-12 Matsushita Electric Ind Co Ltd Sound-proof device
US5548652A (en) * 1992-03-11 1996-08-20 Mitsubishi Denki Kaibushiki Kaisha Silencing apparatus
US5727071A (en) * 1995-01-27 1998-03-10 Nec Corporation Noise silencing device
KR100759705B1 (en) * 2007-01-29 2007-09-17 한밭대학교 산학협력단 Noise attenuation device for machinery using active noise control
JP2015169663A (en) * 2014-03-04 2015-09-28 株式会社竹中工務店 Noise reduction device and system

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6458200A (en) * 1987-08-28 1989-03-06 Hitachi Plant Eng & Constr Co Electronic silence system

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS6458200A (en) * 1987-08-28 1989-03-06 Hitachi Plant Eng & Constr Co Electronic silence system

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5548652A (en) * 1992-03-11 1996-08-20 Mitsubishi Denki Kaibushiki Kaisha Silencing apparatus
JPH07121186A (en) * 1993-10-27 1995-05-12 Matsushita Electric Ind Co Ltd Sound-proof device
US5727071A (en) * 1995-01-27 1998-03-10 Nec Corporation Noise silencing device
KR100759705B1 (en) * 2007-01-29 2007-09-17 한밭대학교 산학협력단 Noise attenuation device for machinery using active noise control
JP2015169663A (en) * 2014-03-04 2015-09-28 株式会社竹中工務店 Noise reduction device and system

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