JPH05347770A - Chrominance signal processor - Google Patents

Chrominance signal processor

Info

Publication number
JPH05347770A
JPH05347770A JP4156413A JP15641392A JPH05347770A JP H05347770 A JPH05347770 A JP H05347770A JP 4156413 A JP4156413 A JP 4156413A JP 15641392 A JP15641392 A JP 15641392A JP H05347770 A JPH05347770 A JP H05347770A
Authority
JP
Japan
Prior art keywords
signal
amplitude
circuit
color
conversion
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
JP4156413A
Other languages
Japanese (ja)
Inventor
Osamu Hosoi
修 細井
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 JP4156413A priority Critical patent/JPH05347770A/en
Publication of JPH05347770A publication Critical patent/JPH05347770A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To reduce difference between the amplitude of reproducing chrominance signal output by separating a chrominance signal to an amplitude signal and a phase signal, delaying only the amplitude signal by one vertical period, and taking the mean value of the amplitude signal delayed by one verical period and an original amplitude signal. CONSTITUTION:This processor is equipped with an A/D converter 4 which converts a reduction conversion chrominance signal outputted from a head 1 to a digital signal, and a demodulation circuit 5 which demodulates a digitized reduction conversion chrominance signal to two color difference signals. Also, it is equipped with a conversion circuit 6 which outputs the amplitude and the phase of the chrominance signal from the two color difference signals, a delay circuit 7 which delays the amplitude signal outputted from the conversion circuit 6 by one vertical period, and an averaging circuit 8 which takes the mean value of the amplitude signal outputted from the conversion circuit 6 and the one outputted from the delay circuit 7.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、ビデオテープレコーダ
ーの再生時に用いられる色信号処理装置に関するもので
ある。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a color signal processing device used when reproducing a video tape recorder.

【0002】[0002]

【従来の技術】近年、民生用のビデオテープレコーダー
(以下VTRと略す)は高画質化に対する要求が高まっ
ており、ディジタル信号処理技術を用いたものが増えて
いる。
2. Description of the Related Art In recent years, demands for high image quality of consumer video tape recorders (hereinafter abbreviated as VTRs) are increasing, and those using digital signal processing technology are increasing.

【0003】以下に、従来のVTRの再生時の色信号処
理装置について説明する。図2は、従来の色信号処理装
置の一例を示すものである。
A color signal processing device for reproducing a conventional VTR will be described below. FIG. 2 shows an example of a conventional color signal processing device.

【0004】図2に示すように、ヘッド1,増幅回路
2,低減通過フィルタ3,A/D変換器4,復調回路
5,変調回路11,D/A変換器10で構成されてい
る。
As shown in FIG. 2, it comprises a head 1, an amplifier circuit 2, a reduction pass filter 3, an A / D converter 4, a demodulation circuit 5, a modulation circuit 11, and a D / A converter 10.

【0005】以上のように構成された従来の色信号処理
回路について、以下図2を用いてその動作を説明する。
The operation of the conventional color signal processing circuit configured as described above will be described below with reference to FIG.

【0006】上記構成において、ヘッド1から出力され
た再生信号は、増幅回路2で増幅され、低減通過フィル
タ3で低減変換色信号が取り出される。前記低域変換色
信号はA/D変換器4に入力されディジタル信号に変換
される。ディジタル信号に変換された低域変換色信号
は、復調回路5で2つの色差信号に復調される。この復
調回路には、ACC,APC,各水平期間ごとの位相の
復元,クロストーク除去のためのくし形フィルタなど再
生色信号処理に必要な回路が含まれている。復調された
2つの色差信号は、変調回路11で搬送色信号に変換さ
れる。前記搬送色信号は、D/A変換器10でアナログ
信号に変換される。
In the above structure, the reproduction signal output from the head 1 is amplified by the amplifier circuit 2 and the reduced conversion color signal is extracted by the reduction pass filter 3. The low-pass conversion color signal is input to the A / D converter 4 and converted into a digital signal. The low-pass conversion color signal converted into a digital signal is demodulated by the demodulation circuit 5 into two color difference signals. This demodulation circuit includes circuits required for reproduction color signal processing such as ACC, APC, phase restoration for each horizontal period, and comb filter for crosstalk removal. The demodulated two color difference signals are converted into carrier color signals by the modulation circuit 11. The carrier color signal is converted into an analog signal by the D / A converter 10.

【0007】[0007]

【発明が解決しようとする課題】しかしながら上記のよ
うな従来の構成では、2つのヘッドの出力ばらつきによ
り、ヘッドから出力される信号の出力差が大きい場合、
復調回路でのACCだけでは2つのヘッドの出力差をと
りきれず、再生色信号出力の振幅に差が生じて、画面上
で色信号がフリッカー状に見えるという問題点があっ
た。
However, in the conventional configuration as described above, when the output difference of the signals output from the two heads is large due to the output variations of the two heads,
The ACC in the demodulation circuit alone cannot completely eliminate the output difference between the two heads, resulting in a difference in the reproduced color signal output amplitude, which causes a problem that the color signal looks like a flicker on the screen.

【0008】本発明は上記課題を解決するもので、色差
信号を振幅信号と位相信号とに分離し、振幅信号だけを
1垂直期間遅延させ、この1垂直期間遅延させた振幅信
号ともとの振幅信号との平均をとることにより、再生色
信号出力の振幅の差を減らすことが可能な色信号処理装
置を提供することを目的としている。
The present invention is to solve the above-mentioned problems. The color difference signal is separated into an amplitude signal and a phase signal, only the amplitude signal is delayed for one vertical period, and the amplitude signal and the original amplitude are delayed for one vertical period. An object of the present invention is to provide a color signal processing device capable of reducing the difference in the amplitude of reproduced color signal outputs by taking the average of the signals.

【0009】[0009]

【課題を解決するための手段】上記目的を達成するため
に本発明の色信号処理装置は、ヘッドから出力された低
域変換色信号をディジタル信号に変換するA/D変換器
とディジタル化された低域変換色信号を2つの色差信号
に復調する復調回路と、復調回路により復調された2つ
の色差信号から色信号の振幅と位相を出力させる変換回
路と、変換回路から出力された振幅信号を1垂直期間遅
延させる遅延回路と、変換回路から出力された振幅信号
と遅延回路から出力された振幅信号との平均をとる平均
回路とを備えている。
In order to achieve the above object, the color signal processing apparatus of the present invention is digitized with an A / D converter for converting the low-frequency converted color signal output from the head into a digital signal. A demodulation circuit that demodulates the low-pass conversion color signal into two color difference signals, a conversion circuit that outputs the amplitude and phase of the color signal from the two color difference signals demodulated by the demodulation circuit, and an amplitude signal output from the conversion circuit Is delayed by one vertical period, and an averaging circuit that averages the amplitude signal output from the conversion circuit and the amplitude signal output from the delay circuit.

【0010】[0010]

【作用】本発明は、上記した構成により、低域変換クロ
マ信号を2つの色差信号に復調した後、前記変換回路に
より前記2つの色差信号を色信号の振幅と位相に変換し
て、前記振幅信号に1垂直期間遅延させる遅延回路を通
し、1垂直期間遅延させた振幅信号と前記変換回路から
出力された振幅信号との平均をとることによって再生色
信号出力の振幅の差を減らすことができる。
According to the present invention, the low-frequency conversion chroma signal is demodulated into two color difference signals by the above-mentioned structure, and then the two color difference signals are converted into the amplitude and the phase of the color signal by the conversion circuit to obtain the amplitude. A delay circuit for delaying one vertical period is passed through the signal, and the amplitude signal delayed for one vertical period and the amplitude signal output from the conversion circuit are averaged to reduce the difference in amplitude of reproduced color signal outputs. .

【0011】[0011]

【実施例】以下本発明の一実施例について図面を参照し
ながら説明する。
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of the present invention will be described below with reference to the drawings.

【0012】図1に示すように、ヘッド1,増幅回路
2,低域通過フィルタ3,A/D変換器4,復調回路
5,変換回路6,遅延回路7,平均回路8,変調回路
9,D/A変換器10で構成されている。
As shown in FIG. 1, a head 1, an amplifier circuit 2, a low pass filter 3, an A / D converter 4, a demodulation circuit 5, a conversion circuit 6, a delay circuit 7, an averaging circuit 8, a modulation circuit 9, It is composed of a D / A converter 10.

【0013】以上のように構成され色信号処理装置につ
いて、図1を用いてその動作を説明する。
The operation of the color signal processing device configured as described above will be described with reference to FIG.

【0014】上記構成において、ヘッド1から出力され
た再生信号は、増幅回路2で増幅され、低域通過フィル
タ3で低域変換色信号が取り出される。前記低域変換色
信号はA/D変換器4に入力されディジタル信号に変換
される。ディジタル信号に変換された低域変換色信号
は、復調回路5で2つの色差信号に復調される。この復
調回路には、ACC,APC,各水平期間ごとの位相の
復元,クロストーク除去のためのくし形フィルタなど再
生色信号処理に必要な回路が含まれている。復調された
2つの色差信号は、変換回路6で色信号の振幅信号との
位相信号とに変換される。変換回路6から出力される振
幅信号は、遅延回路7で1垂直期間遅延される。遅延回
路7から出力された振幅信号と変換回路6から出力され
た振幅信号とが、平均回路8に入力され、2つの振幅信
号の平均値が出力される。
In the above structure, the reproduction signal output from the head 1 is amplified by the amplifier circuit 2 and the low-pass converted color signal is extracted by the low-pass filter 3. The low-pass conversion color signal is input to the A / D converter 4 and converted into a digital signal. The low-pass conversion color signal converted into a digital signal is demodulated by the demodulation circuit 5 into two color difference signals. This demodulation circuit includes circuits required for reproduction color signal processing such as ACC, APC, phase restoration for each horizontal period, and comb filter for crosstalk removal. The demodulated two color difference signals are converted by the conversion circuit 6 into an amplitude signal and a phase signal of the color signal. The amplitude signal output from the conversion circuit 6 is delayed by the delay circuit 7 for one vertical period. The amplitude signal output from the delay circuit 7 and the amplitude signal output from the conversion circuit 6 are input to the averaging circuit 8, and the average value of the two amplitude signals is output.

【0015】ただし、この平均回路8では、2つの振幅
信号の差がある一定範囲内の時のみ2つの振幅信号の平
均値が出力されるが、2つの振幅信号の差がある一定範
囲より大きい時には、2つの振幅信号の間には相関がな
いと判断し変換回路6から入力される振幅信号を出力す
る。平均回路8から出力された振幅信号と変換回路6か
ら出力された位相信号は、変調回路9で搬送色信号に変
換される。前記搬送色信号は、D/A変換器10でアナ
ログ信号に変換される。
However, the averaging circuit 8 outputs the average value of the two amplitude signals only when the difference between the two amplitude signals is within a certain range, but the difference between the two amplitude signals is larger than the certain range. Sometimes, it is determined that there is no correlation between the two amplitude signals, and the amplitude signal input from the conversion circuit 6 is output. The amplitude signal output from the averaging circuit 8 and the phase signal output from the conversion circuit 6 are converted into carrier color signals by the modulation circuit 9. The carrier color signal is converted into an analog signal by the D / A converter 10.

【0016】このような構成により、低域変換クロマ信
号を2つの色差信号に復調した後、前記変換回路により
前記2つの色差信号を色信号の振幅と位相に変換して、
前記振幅信号に1垂直期間の遅延回路を通し、1垂直期
間遅延させた振幅信号と前記変換回路から出力された振
幅信号との平均をとることによって再生色信号出力の振
幅の差を減らすことができ、再生画像の品位を高めるこ
とができる。
With this configuration, the low-frequency conversion chroma signal is demodulated into two color difference signals, and then the two color difference signals are converted into the amplitude and phase of the color signals by the conversion circuit,
The amplitude signal is passed through a delay circuit for one vertical period, and the amplitude signal delayed for one vertical period and the amplitude signal output from the conversion circuit are averaged to reduce the difference in the amplitude of the reproduced color signal output. Therefore, the quality of the reproduced image can be improved.

【0017】[0017]

【発明の効果】以上本発明によれば、色信号の振幅信号
にのみ1垂直期間の遅延回路を通し、1垂直期間遅延さ
せた振幅信号ともとの振幅信号との平均をとることによ
り、再生信号出力の振幅の差を減らすことが可能で、か
つ色信号の振幅信号だけを1垂直期間遅らせるので遅延
回路として用いられるメモリーの容量が少なくてすむ色
信号処理装置を提供できる。
As described above, according to the present invention, only the amplitude signal of the color signal is passed through the delay circuit for one vertical period, and the amplitude signal delayed for one vertical period and the average of the original amplitude signal are reproduced. It is possible to provide a color signal processing device which can reduce the difference in the amplitude of the signal output and delay only the amplitude signal of the color signal by one vertical period, so that the capacity of the memory used as the delay circuit can be small.

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

【図1】本発明の一実施例の色信号処理装置のブロック
FIG. 1 is a block diagram of a color signal processing device according to an embodiment of the present invention.

【図2】従来の色信号処理装置のブロック図FIG. 2 is a block diagram of a conventional color signal processing device.

【符号の説明】[Explanation of symbols]

1 ヘッド 2 増幅回路 3 低域通過フィルタ 4 A/D変換器 5 復調回路 6 変換回路 7 遅延回路 8 平均回路 9,11 変調回路 10 D/A変換器 DESCRIPTION OF SYMBOLS 1 head 2 amplification circuit 3 low pass filter 4 A / D converter 5 demodulation circuit 6 conversion circuit 7 delay circuit 8 averaging circuit 9,11 modulation circuit 10 D / A converter

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 輝度信号を周波数変調し、色信号を低減
変換して記録する複数のヘッドをもつヘリカルスキャン
タイプのビデオテープレコーダーに内蔵される色信号処
理装置であって、ヘッドから出力された低減変換色信号
をディジタル信号に変換するA/D変換器と、ディジタ
ル化された低減変換色信号を2つの色差信号に復調する
復調回路と、前記復調回路により復調された2つの色差
信号から色信号の振幅と位相を出力させる変換回路と、
前記変換回路から出力された振幅信号を1垂直期間遅延
させる遅延開路と、前記変換回路から出力された振幅信
号と前記遅延回路から出力された振幅信号との平均をと
る平均回路とを備えたことを特徴とする色信号処理装
置。
1. A color signal processing device built in a helical scan type video tape recorder having a plurality of heads for frequency-modulating a luminance signal and reducing and converting a color signal for recording. An A / D converter that converts the reduced conversion color signal into a digital signal, a demodulation circuit that demodulates the digitized reduced conversion color signal into two color difference signals, and a color from the two color difference signals demodulated by the demodulation circuit. A conversion circuit that outputs the amplitude and phase of the signal,
A delay circuit that delays the amplitude signal output from the conversion circuit for one vertical period; and an averaging circuit that averages the amplitude signal output from the conversion circuit and the amplitude signal output from the delay circuit. A color signal processing device characterized by:
JP4156413A 1992-06-16 1992-06-16 Chrominance signal processor Pending JPH05347770A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP4156413A JPH05347770A (en) 1992-06-16 1992-06-16 Chrominance signal processor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP4156413A JPH05347770A (en) 1992-06-16 1992-06-16 Chrominance signal processor

Publications (1)

Publication Number Publication Date
JPH05347770A true JPH05347770A (en) 1993-12-27

Family

ID=15627209

Family Applications (1)

Application Number Title Priority Date Filing Date
JP4156413A Pending JPH05347770A (en) 1992-06-16 1992-06-16 Chrominance signal processor

Country Status (1)

Country Link
JP (1) JPH05347770A (en)

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