JPH06148312A - Target detector - Google Patents

Target detector

Info

Publication number
JPH06148312A
JPH06148312A JP4302755A JP30275592A JPH06148312A JP H06148312 A JPH06148312 A JP H06148312A JP 4302755 A JP4302755 A JP 4302755A JP 30275592 A JP30275592 A JP 30275592A JP H06148312 A JPH06148312 A JP H06148312A
Authority
JP
Japan
Prior art keywords
target
frequency distribution
amplitude
reflected wave
probability
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
JP4302755A
Other languages
Japanese (ja)
Other versions
JP3142400B2 (en
Inventor
Masaharu Akei
正治 明井
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.)
Toshiba Corp
Original Assignee
Toshiba 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 Toshiba Corp filed Critical Toshiba Corp
Priority to JP04302755A priority Critical patent/JP3142400B2/en
Publication of JPH06148312A publication Critical patent/JPH06148312A/en
Application granted granted Critical
Publication of JP3142400B2 publication Critical patent/JP3142400B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

PURPOSE:To extract a reflection wave out of signals which do not require noises by a probability method by obtaining a first frequency distribution for each amplitude of reflection wave in a state where no target exists and a second frequency distribution in a state where the target exists and by calculating the probability for each amplitude where the reflection wave which is received from both distributions is a true target. CONSTITUTION:A first frequency distribution Y1 for each amplitude of reflection wave is obtained by a first frequency device 2 while no target exists. Then, when detecting the target, the reflection wave which is received 1 is added to a second frequency device 3 and a second frequency distribution Y2 is obtained by the device 3. The distribution Y1 is added to a subtractor 4 via a coefficient circuit 3, the substraction of the distributions Y1 and Y2 is performed, and a third frequency distribution Y3 is obtained from the difference. Then, the distributions Y1 and Y3 are added to a probability calculation circuit 5 where a probability M which is the signal from a target is obtained for each amplitude. Then, the probability M is detected 6, the amplitude of the reflection wave is multiplied by the probability for a reflection wave P and those whose multiplication result exceeds a certain value are extracted as a target Q.

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、目標からの反射波の振
幅が小さい場合でも、ノイズなど不要な信号の中から確
率的に反射波を検出できる目標検出装置に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a target detecting device capable of probabilistically detecting a reflected wave from unnecessary signals such as noise even if the amplitude of the reflected wave from the target is small.

【0002】[0002]

【従来の技術】受信されたレ−ダ反射波の中から、クラ
ッタやノイズなど不要な信号と、目標からの信号とを識
別する方法として、例えばスレショ−ルドを用いる方法
がある。
2. Description of the Related Art As a method for discriminating an unnecessary signal such as clutter or noise from a received signal from a target from a received radar reflected wave, for example, there is a method using a threshold.

【0003】[0003]

【発明が解決しようとする課題】ここで、スレショ−ル
ドを用いる方法について説明する。
A method using the threshold will be described below.

【0004】例えば、図2は、受信されたレ−ダ反射波
の一例を示すもので、横軸が距離、そして縦軸が反射波
の振幅である。また、横軸の下方に目標11を例示して
いる。
For example, FIG. 2 shows an example of a received radar reflected wave, where the horizontal axis is the distance and the vertical axis is the amplitude of the reflected wave. Moreover, the target 11 is illustrated below the horizontal axis.

【0005】そして、反射波に対し点線12で示すよう
なスレショ−ルドを設定し、このスレショ−ルド12を
越えるレベルの信号を目標11からの信号として扱うも
のである。
A threshold is set for the reflected wave as shown by the dotted line 12, and a signal having a level exceeding the threshold 12 is treated as a signal from the target 11.

【0006】この場合、例示された目標11のように目
標11からの反射波自身に大小があるとき、スレショ−
ルド12を越えた信号だけを目標からの反射波として扱
うと、大きな目標部分11aのみを目標と判断し、目標
部分11bは目標と判断されず、目標の大きさを実際よ
り小さく判断することになる。
In this case, when the reflected wave from the target 11 has a large or small value like the exemplified target 11, the threshold value is increased.
If only the signal that exceeds the field 12 is treated as a reflected wave from the target, only the large target portion 11a is determined to be the target, the target portion 11b is not determined to be the target, and the target size is determined to be smaller than the actual size. Become.

【0007】このような誤りを避けるために、例えばス
レショ−ルド12を低い値に設定することが考えられ
る。
In order to avoid such an error, it is possible to set the threshold 12 to a low value, for example.

【0008】しかし、スレショ−ルド12を低く設定す
ると、振幅の小さいノイズまで目標として判断してしま
う。
However, if the threshold 12 is set low, even noise with a small amplitude is judged as a target.

【0009】したがって、ノイズなど不要な信号の中か
ら目標を抽出する場合、スレショ−ルドのように振幅で
識別する方法は、目標からの反射波が小さい振幅のとき
に検出できなかったり、また、ノイズを目標と判断した
りすることがある。
Therefore, when a target is extracted from unnecessary signals such as noise, the method of identifying by amplitude like threshold cannot be detected when the reflected wave from the target has a small amplitude, or Noise may be judged as the target.

【0010】本発明は、目標からの反射波の振幅が小さ
い場合でも、ノイズなど不要な信号の中から確率的な方
法で、目標からの反射波を抽出できる目標検出装置を提
供することを目的とする。
It is an object of the present invention to provide a target detecting apparatus capable of extracting a reflected wave from a target by a probabilistic method from unnecessary signals such as noise even if the amplitude of the reflected wave from the target is small. And

【0011】[0011]

【課題を解決するための手段】本発明の目標検出装置
は、目標が存在しない状態で、反射波の振幅別の第一の
度数分布を求める手段と、目標が存在する状態で反射波
の振幅別の第二の度数分布を求める手段と、前記第一の
度数分布と前記第二の度数分布との減算を行い、目標か
らの反射波に対応した振幅別の第三の度数分布を求める
手段と、前記第一の度数分布と前記第三の度数分布か
ら、前記受信された反射波が真の目標である確率を、受
信された反射波の振幅別に求める手段と、前記受信され
た反射波のうち、真の目標である確率がある値以上のも
のを、各距離領域ごとに目標として抽出する手段とを具
備している。
The target detecting apparatus of the present invention comprises means for obtaining a first frequency distribution for each amplitude of a reflected wave in the absence of a target and amplitude of the reflected wave in the presence of a target. Means for obtaining another second frequency distribution, and means for subtracting the first frequency distribution and the second frequency distribution to obtain a third frequency distribution for each amplitude corresponding to the reflected wave from the target A means for obtaining the probability that the received reflected wave is a true target from the first frequency distribution and the third frequency distribution for each amplitude of the received reflected wave; and the received reflected wave. Among them, a unit for extracting a true target having a probability equal to or higher than a certain value as a target for each distance region is provided.

【0012】また、本発明の目標検出装置は、目標が存
在しない状態で、予め、反射波の振幅別の第一の度数分
布を求める手段と、目標が存在する状態で反射波の振幅
別の第二の度数分布を求める手段と、前記第一の度数分
布と前記第二の度数分布との減算を行い、目標からの反
射波に対応した振幅別の第三の度数分布を求める手段
と、前記第一の度数分布と前記第三の度数分布とから、
前記受信された反射波が真の目標である確率を、受信さ
れた反射波の振幅別に求める手段と、前記受信された反
射波の振幅とその振幅に対応した目標である確率とを各
距離領域ごとに乗算し、その乗算結果がある値以上のも
のを目標として抽出する手段とを具備している。
The target detecting apparatus of the present invention further comprises means for obtaining a first frequency distribution for each amplitude of the reflected wave in advance in the absence of the target, and means for determining the amplitude of the reflected wave in the presence of the target. Means for determining a second frequency distribution, subtracting the first frequency distribution and the second frequency distribution, means for determining a third frequency distribution for each amplitude corresponding to the reflected wave from the target, From the first frequency distribution and the third frequency distribution,
Means for determining the probability that the received reflected wave is a true target for each amplitude of the received reflected wave, and the amplitude of the received reflected wave and the probability of being the target corresponding to the amplitude for each distance region And a means for extracting the multiplication result having a value equal to or larger than a certain value as a target.

【0013】[0013]

【作用】上記した構成の目標検出装置では、先ず、目標
が存在しない状態における反射波の振幅別の第一の度数
分布と、目標が存在する状態における振幅別の第二の度
数分布とを求める。
In the target detecting apparatus having the above structure, first, the first frequency distribution by amplitude of the reflected wave in the absence of the target and the second frequency distribution by amplitude in the presence of the target are obtained. .

【0014】次に、これら第一および第二の度数分布か
ら受信された反射波が真の目標である振幅別の確率を算
出し、そして、算出された確率をもとに受信された反射
波から目標を抽出する。
Next, the probabilities of the reflected waves received from the first and second frequency distributions, which are true targets, are calculated, and the received reflected waves are calculated based on the calculated probabilities. Extract goals from.

【0015】[0015]

【実施例】以下、本発明の一実施例について、図1の回
路構成図を参照して説明する。
DESCRIPTION OF THE PREFERRED EMBODIMENTS An embodiment of the present invention will be described below with reference to the circuit configuration diagram of FIG.

【0016】先ず、目標が存在しない状態で目標を探知
する範囲にレ−ダ送信信号を送信し、反射波を受信器1
で受信する。受信器1で受信された反射波は第一の度数
装置2に加えられる。
First, a radar transmission signal is transmitted within a range in which a target is detected in the absence of the target, and the reflected wave is received by the receiver 1.
To receive. The reflected wave received at the receiver 1 is applied to the first power device 2.

【0017】そして、第一の度数装置2において、反射
波の振幅別の第一の度数分布を目標が存在しない状態で
求める。
Then, in the first frequency device 2, the first frequency distribution for each amplitude of the reflected wave is obtained in the absence of the target.

【0018】度数分布は、横軸に振幅を、縦軸に度数を
取ったときに、反射波の振幅がどのように分布するかを
示し、第一の度数分布Y1は、例えば図のY1のように
なる。
The frequency distribution shows how the amplitude of the reflected wave is distributed when the horizontal axis represents the amplitude and the vertical axis represents the frequency. The first frequency distribution Y1 is, for example, Y1 in the figure. Like

【0019】なお、目標が存在しない状態で度数分布を
求める場合、瞬間的に生ずる不規則な変動成分を除くた
め、ある時間に亘って取得された反射波から度数分布が
求められる。
When a frequency distribution is obtained in the absence of a target, irregular frequency components that occur instantaneously are excluded, so that the frequency distribution is obtained from the reflected waves acquired over a certain period of time.

【0020】また、第一の度数分布Y1は(1)式で表
される。
The first frequency distribution Y1 is expressed by the equation (1).

【0021】Y1=N(x)………(1) なお、Y1は度数、xは振幅である。Y1 = N (x) ... (1) In addition, Y1 is a frequency and x is an amplitude.

【0022】次に、目標を探知する場合、目標に向けレ
−ダ送信信号を送信し、その反射波を受信器1で受信す
る。受信器1で受信された反射波は第二の度数装置3に
加えられる。
Next, when detecting a target, a radar transmission signal is transmitted toward the target and the reflected wave is received by the receiver 1. The reflected wave received by the receiver 1 is applied to the second frequency device 3.

【0023】第二の度数装置3では、同様の第二の度数
分布Y2を求める。
The second frequency device 3 obtains a similar second frequency distribution Y2.

【0024】第二の度数分布Y2は、例えば図のY2で
示され、式で表すと(2)式のようになる。
The second frequency distribution Y2 is represented by, for example, Y2 in the figure, and is expressed by equation (2).

【0025】 Y2=SN(x)=S(x)+kN(x)……(2) なお、Y2は度数、xは振幅、Nは目標を含まない度数
分布、SNは目標を含む度数分布、Sは目標からの度数
分布、kは係数である。
Y2 = SN (x) = S (x) + kN (x) (2) In addition, Y2 is frequency, x is amplitude, N is frequency distribution not including a target, SN is frequency distribution including target, S is the frequency distribution from the target, and k is a coefficient.

【0026】第二の度数分布Y2は、目標が存在する
と、目標からの反射波分が増えるため、目標が存在しな
いときの第一の度数分布Y1と違ったものになる。
The second frequency distribution Y2 is different from the first frequency distribution Y1 when the target does not exist because the reflected wave component from the target increases when the target exists.

【0027】前記第一の度数分布Y1は係数回路3を経
て減算器4に加えられる。減算器4では、前記第一の度
数分布Y1と前記第二の度数分布Y2との減算が行われ
両者の差から第三の度数分布Y3が求められる。
The first frequency distribution Y1 is applied to the subtractor 4 via the coefficient circuit 3. In the subtractor 4, the first frequency distribution Y1 and the second frequency distribution Y2 are subtracted, and the third frequency distribution Y3 is obtained from the difference between the two.

【0028】この第三の度数分布を図のY3で示す。The third frequency distribution is indicated by Y3 in the figure.

【0029】第三の度数分布Y3は、例えば、第二の度
数分布Y2の低い振幅部分は全てノイズと考え、第一の
度数分布Y1をオ−トリグレッション(Auto-Regressio
n )法で近似し、その相似比を式(2)における係数k
とし、(2)式のNの成分を除去したものである。
In the third frequency distribution Y3, for example, all the low amplitude parts of the second frequency distribution Y2 are considered to be noise, and the first frequency distribution Y1 is auto-regressed.
n) method, and calculate the similarity ratio by the coefficient k in equation (2).
And the N component of the equation (2) is removed.

【0030】なお、第一の度数分布Y1は減算器4に加
えられる前に、係数回路3で係数kとの乗算が行われ
る。
Before being added to the subtractor 4, the first frequency distribution Y1 is multiplied by the coefficient k in the coefficient circuit 3.

【0031】したがって、第三の度数分布Y3は目標か
らの反射波を含む度数分布となる。そして、前記第一の
度数分布Y1と前記第三の度数分布Y3は、確率計算回
路5に加えられる。
Therefore, the third frequency distribution Y3 is a frequency distribution including the reflected wave from the target. Then, the first frequency distribution Y1 and the third frequency distribution Y3 are added to the probability calculation circuit 5.

【0032】確率計算回路5は、受信された反射波が目
標からの信号である確率Mを、次の(3)式で振幅別に
求める。
The probability calculation circuit 5 obtains the probability M that the received reflected wave is a signal from the target for each amplitude by the following equation (3).

【0033】 M=S(x)/(S(x)+N(x))……(3) 例えば、第一の度数分布Y1で振幅a1における度数が
b1で、第三の度数分布Y3で振幅a1における度数が
b2の場合、振幅a1における目標からの信号である確
率mは、 m=b2/(b1+b2)……(4) となる。
M = S (x) / (S (x) + N (x)) (3) For example, in the first frequency distribution Y1, the frequency in the amplitude a1 is b1, and in the third frequency distribution Y3, the amplitude is When the frequency at a1 is b2, the probability m of being a signal from the target at the amplitude a1 is m = b2 / (b1 + b2) (4).

【0034】ここで、(3)式で求められた確率を図示
すると、図のMのようになる。
Here, the probability obtained by the equation (3) is shown as M in the figure.

【0035】図のMで、横軸は反射波の振幅、縦軸は反
射波が目標からの信号である確率である。
In M of the figure, the horizontal axis represents the amplitude of the reflected wave and the vertical axis represents the probability that the reflected wave is a signal from the target.

【0036】目標からの信号である確率が算出された
後、その確率が検出回路6に加えられ目標の検出が行わ
れる。
After the probability of being a signal from the target is calculated, the probability is added to the detection circuit 6 to detect the target.

【0037】検出回路6では、例えば、受信器1から供
給される反射波(図のP)に対し、各距離領域ごとに反
射波の振幅と、振幅に対応した確率とを乗算し、その乗
算結果がある値以上のものを目標(図のQ)として抽出
する。 上記の方法とは別に、確率に対してスレショ−
ルドを設定し、このスレショ−ルドを越えた確率を持つ
振幅値を有する信号を目標として抽出することもでき
る。 検出回路6における目標の検出は各距離領域ごと
に行われ、このような目標検出が全体の距離範囲に亘っ
て行われる。
In the detection circuit 6, for example, the reflected wave (P in the figure) supplied from the receiver 1 is multiplied by the amplitude of the reflected wave for each distance area and the probability corresponding to the amplitude, and the multiplication is performed. If the result is more than a certain value, it is extracted as a target (Q in the figure). Apart from the above method, the threshold for probability
It is also possible to set the threshold and extract a signal having an amplitude value having a probability of exceeding this threshold as a target. The detection of the target by the detection circuit 6 is performed for each distance region, and such target detection is performed over the entire distance range.

【0038】[0038]

【発明の効果】本発明によれば、目標からの反射波の振
幅が小さい場合でも、ノイズなど不要な信号の中から確
率的な方法で反射波を抽出することができる。
According to the present invention, even when the amplitude of the reflected wave from the target is small, the reflected wave can be extracted from unnecessary signals such as noise by a stochastic method.

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

【図1】本発明の一実施例を示す回路構成図である。FIG. 1 is a circuit configuration diagram showing an embodiment of the present invention.

【図2】目標からの反射波を説明する図である。FIG. 2 is a diagram illustrating a reflected wave from a target.

【符号の説明】[Explanation of symbols]

1…受信器 2…第一の度数装置 3…第二の度数装置 4…減算器 5…確率計算回路 6…検出回路 Y1…第一の度数分布 Y2…第二の度数分布 Y3…第三の度数分布 M…目標からの信号である確率 DESCRIPTION OF SYMBOLS 1 ... Receiver 2 ... 1st frequency apparatus 3 ... 2nd frequency apparatus 4 ... Subtractor 5 ... Probability calculation circuit 6 ... Detection circuit Y1 ... 1st frequency distribution Y2 ... 2nd frequency distribution Y3 ... 3rd Frequency distribution M ... Probability of being a signal from the target

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】 目標が存在しない状態で、予め、反射波
の振幅別の第一の度数分布を求める手段と、目標が存在
する状態で反射波の振幅別の第二の度数分布を求める手
段と、前記第一の度数分布と前記第二の度数分布との減
算を行い、目標からの反射波に対応した振幅別の第三の
度数分布を求める手段と、前記第一の度数分布と前記第
三の度数分布から、前記受信された反射波が真の目標で
ある確率を、受信された反射波の振幅別に求める手段
と、前記受信された反射波のうち、真の目標である確率
がある値以上のものを、各距離領域ごとに目標として抽
出する手段とを具備した目標検出装置。
1. A means for obtaining in advance a first frequency distribution for each amplitude of a reflected wave in the absence of a target, and a means for obtaining a second frequency distribution for each amplitude of a reflected wave in the presence of a target. And a means for performing a subtraction of the first frequency distribution and the second frequency distribution to obtain a third frequency distribution for each amplitude corresponding to a reflected wave from a target, the first frequency distribution and the From the third frequency distribution, means for determining the probability that the received reflected wave is the true target for each amplitude of the received reflected wave, and the probability that the received reflected wave is the true target among the received reflected waves are A target detection device, comprising means for extracting a value equal to or greater than a certain value as a target for each distance region.
【請求項2】 目標が存在しない状態で、予め、反射波
の振幅別の第一の度数分布を求める手段と、目標が存在
する状態で反射波の振幅別の第二の度数分布を求める手
段と、前記第一の度数分布と前記第二の度数分布との減
算を行い、目標からの反射波に対応した振幅別の第三の
度数分布を求める手段と、前記第一の度数分布と前記第
三の度数分布とから、前記受信された反射波が真の目標
である確率を、受信された反射波の振幅別に求める手段
と、前記受信された反射波の振幅とその振幅に対応した
目標である確率とを各距離領域ごとに乗算し、その乗算
結果がある値以上のものを目標として抽出する手段とを
具備した目標検出装置。
2. A means for obtaining a first frequency distribution for each amplitude of a reflected wave in advance in the absence of a target, and a means for obtaining a second frequency distribution for each amplitude of a reflected wave in the presence of a target. And a means for performing a subtraction of the first frequency distribution and the second frequency distribution to obtain a third frequency distribution for each amplitude corresponding to a reflected wave from a target, the first frequency distribution and the Means for determining the probability that the received reflected wave is a true target for each amplitude of the received reflected wave from the third frequency distribution, and the amplitude of the received reflected wave and the target corresponding to the amplitude. And a probability of being multiplied for each distance area, and a result of the multiplication is extracted as a target having a value equal to or larger than a certain value.
JP04302755A 1992-11-13 1992-11-13 Target detection device Expired - Fee Related JP3142400B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP04302755A JP3142400B2 (en) 1992-11-13 1992-11-13 Target detection device

Applications Claiming Priority (1)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5783333A (en) * 1996-11-27 1998-07-21 Polystor Corporation Lithium nickel cobalt oxides for positive electrodes
JP2005337854A (en) * 2004-05-26 2005-12-08 Nec Corp Target categorizing method and device
JP2006343252A (en) * 2005-06-10 2006-12-21 Nec Corp Signal detection method and signal detection device

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5783333A (en) * 1996-11-27 1998-07-21 Polystor Corporation Lithium nickel cobalt oxides for positive electrodes
US6007947A (en) * 1996-11-27 1999-12-28 Polystor Corporation Mixed lithium manganese oxide and lithium nickel cobalt oxide positive electrodes
US6379842B1 (en) 1996-11-27 2002-04-30 Polystor Corporation Mixed lithium manganese oxide and lithium nickel cobalt oxide positive electrodes
JP2005337854A (en) * 2004-05-26 2005-12-08 Nec Corp Target categorizing method and device
JP4682535B2 (en) * 2004-05-26 2011-05-11 日本電気株式会社 Target classification method and apparatus
JP2006343252A (en) * 2005-06-10 2006-12-21 Nec Corp Signal detection method and signal detection device
JP4655766B2 (en) * 2005-06-10 2011-03-23 日本電気株式会社 Signal detection method and signal detection apparatus

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