JPS6035139A - Method for control of air-fuel ratio in electronically controlled fuel supply device - Google Patents

Method for control of air-fuel ratio in electronically controlled fuel supply device

Info

Publication number
JPS6035139A
JPS6035139A JP14287283A JP14287283A JPS6035139A JP S6035139 A JPS6035139 A JP S6035139A JP 14287283 A JP14287283 A JP 14287283A JP 14287283 A JP14287283 A JP 14287283A JP S6035139 A JPS6035139 A JP S6035139A
Authority
JP
Japan
Prior art keywords
air
fuel ratio
fuel
electronically controlled
control
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
JP14287283A
Other languages
Japanese (ja)
Inventor
Shunji Takahashi
俊司 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.)
Mikuni Corp
Original Assignee
Mikuni 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 Mikuni Corp filed Critical Mikuni Corp
Priority to JP14287283A priority Critical patent/JPS6035139A/en
Publication of JPS6035139A publication Critical patent/JPS6035139A/en
Pending legal-status Critical Current

Links

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02DCONTROLLING COMBUSTION ENGINES
    • F02D41/00Electrical control of supply of combustible mixture or its constituents
    • F02D41/02Circuit arrangements for generating control signals
    • F02D41/14Introducing closed-loop corrections
    • F02D41/1438Introducing closed-loop corrections using means for determining characteristics of the combustion gases; Sensors therefor
    • F02D41/1486Introducing closed-loop corrections using means for determining characteristics of the combustion gases; Sensors therefor with correction for particular operating conditions

Abstract

PURPOSE:To enhance the comfort in driving a car and the rate of fuel consumption during acceleration by changing the air-fuel ratio according to to a time function on the basis of the size of change of the air-fuel raio, in case the air- fuel ratio is to be altered to a value determined by the subsequent condition, and thereby changing the air-fuel ratio gradually. CONSTITUTION:If stamping-in of the accelerator pedal 20 etc. causes transfer into No.2 operating condition, when the engine has been in No.1 operating condition, a computer 28 reads first the No.1 air-fuel ratio A/F1 for No.1 operating condition, and then No.2 air-fuel ratio A/F2 for No.2 condition after said transfer is calculated and set. Then the two ratios are compared, and a fuel injection device 18 and a throttle valve 14 are controlled so that A/F=f(A/F2-A/F1, t). Thus the air-fuel ratio A/F is altered. According to this arrangement the air-fuel ratio A/F changes from A/F1 gradually with a certain time lag to attain A/F2 at the time t2', so that the comfort in driving the car and the rate of fuel consumption are enhanced.

Description

【発明の詳細な説明】 本発明は、エンジンの各種情報に基づきエンジンに供給
されるべき空気流量をコンピュータにより作動せしめら
れるアクチュエータにより制御して空燃比制御が行なわ
れ得るように構成した電子制御燃料供給装置における空
燃比制御方法に関する。
DETAILED DESCRIPTION OF THE INVENTION The present invention provides an electronically controlled fuel system configured to control the air-fuel ratio by controlling the air flow rate to be supplied to the engine based on various engine information using an actuator operated by a computer. The present invention relates to an air-fuel ratio control method in a supply device.

従来電子制御燃料供給装置として例えば特開昭57−9
1343号公報による燃料優先型電子制御燃料供給装置
が知られているが、これを第1図により説明すJlば、
1oはエンジン、12はスロットルバルブ、14はスロ
ットルバルブのアクチュエータ、16は燃料供給機構、
18は燃料噴射装置、20はアクセルペダル、22はア
クセルペダル20の位置センサー、24はスロットルバ
ルブ12の上流の圧力を検出する圧力センサー、26は
スロットルバルブ12の下流の圧力を検出する圧力セン
サー、28はコンピュータである。このように構成され
た燃料供給装置によれば、空燃比の設定はエンジンの状
態に基づきコンピュータ28により一義的に指令され、
而もその制御は殆ど時間的遅れなしに行なわれる。即ち
第2図に示したように空燃比A/Fが第一の空燃RA/
F1に制御されている第一のエンジン状態から、時刻t
1において例えばアクセルペダル2oを踏み込むことに
より空燃比A/Fが第二の空燃比A/F2に設定される
べき第二のエンジン状態に移行するとき、空燃比A/F
のA/F1からA/F2への制御は比較的短時間で行な
われ、時刻t2には空燃比A/FはA/F2に達する。
As a conventional electronically controlled fuel supply device, for example, Japanese Patent Application Laid-Open No. 57-9
A fuel priority type electronically controlled fuel supply device is known according to Japanese Patent No. 1343, and this is explained with reference to FIG.
1o is an engine, 12 is a throttle valve, 14 is an actuator of the throttle valve, 16 is a fuel supply mechanism,
18 is a fuel injection device, 20 is an accelerator pedal, 22 is a position sensor for the accelerator pedal 20, 24 is a pressure sensor that detects the pressure upstream of the throttle valve 12, 26 is a pressure sensor that detects the pressure downstream of the throttle valve 12, 28 is a computer. According to the fuel supply device configured in this way, the setting of the air-fuel ratio is uniquely instructed by the computer 28 based on the state of the engine,
Moreover, the control is performed with almost no time delay. That is, as shown in FIG. 2, the air-fuel ratio A/F is the first air-fuel ratio RA/
From the first engine state controlled by F1, at time t
1, when the air-fuel ratio A/F is shifted to the second engine state in which the air-fuel ratio A/F is to be set to the second air-fuel ratio A/F2 by depressing the accelerator pedal 2o, for example, the air-fuel ratio A/F
The control from A/F1 to A/F2 is performed in a relatively short time, and the air-fuel ratio A/F reaches A/F2 at time t2.

従って、その応答時間(t2t+)が短いほどまたA/
F 1からA/F’ 2への変化の差が大きいほどエン
ジン状態が急激に変化するので、乗心地が悪くなってし
まう。さらに空燃比A/Fがリッチ側に変化する場合に
は無駄な燃料が供給されることになり、燃費が低下して
しまうという欠点があった。
Therefore, the shorter the response time (t2t+), the more A/
The larger the difference in change from F1 to A/F'2, the more rapidly the engine condition changes, resulting in worse riding comfort. Furthermore, when the air-fuel ratio A/F changes to the rich side, fuel is wasted and fuel is supplied, resulting in a reduction in fuel efficiency.

本発明は、以上の点に鑑み、第一の空燃比から第二の空
燃比への変化の際に空燃比を徐々に変化せしめることに
より乗心地及び加速時の燃費を改善するようにした電子
制御燃料供給装置における空燃比制御方法を提供するこ
とを目的としており、この目的は、エンジンの各種情報
に基づきエンジンに供給されるべき空気流量をコンピュ
ータにより作動せしめられるアクチュエータにより制御
して空燃比制御が行なわれ得るように構成した電子制御
燃料供給装置において、第一の空燃比から次に制御すべ
き状態における第二の空燃比への変化の際に、第一の空
燃比から第二の空燃比への変化の大きさに基づく時間関
数として空燃比を変化せしめるようにしたことを特徴と
する空燃比制御方法により、達成される。
In view of the above points, the present invention provides an electronic system that improves riding comfort and fuel efficiency during acceleration by gradually changing the air-fuel ratio when changing from a first air-fuel ratio to a second air-fuel ratio. The purpose of this invention is to provide an air-fuel ratio control method in a controlled fuel supply device, and the purpose is to control the air-fuel ratio by controlling the air flow rate to be supplied to the engine based on various engine information using an actuator operated by a computer. In an electronically controlled fuel supply system that is configured to perform This is achieved by an air-fuel ratio control method characterized in that the air-fuel ratio is changed as a function of time based on the magnitude of change in the fuel ratio.

以下に本発明による空燃比制御方法を説明すれば、電子
制御燃料供給装置自体の構成は従来の第1図に示された
構成であり、空燃比制御はすべてコンピュータ28内で
処理される。次に第3図に示されたフローチャートによ
り空燃比制御方法を説明する。エンジン状態が第一の状
態から第二の状態に変化すると、直ちにこれが検出され
て本発明による制御方法が開始される。先づ第一のエン
ジン状態における第一の空燃比(変化前までの空燃比)
A/F 1が読み出され、次に変化後の第二のエンジン
状態における第二の空燃比A/F2がコンピュータ28
により演算設定される。第一の空燃比A/F 1と第二
の空燃比A/F2とを比較し、A/F 1とA/F”2
が等しくないときA/F=t (A/F2−A/F1.
t )となるように燃料噴射装置18及びスロットルバ
ルブ14を制御して空燃比A/Fを変化せしめ、A /
 F = A /F2となったときに終了する。このと
きA/Fは第4図に示したようにA/F1から時間的遅
れを伴って徐々に変化して時刻t2′でA/F2に達す
る(図示の場合A/Fは時間の一次関数として変化せし
められている。)。
The air-fuel ratio control method according to the present invention will be described below.The configuration of the electronically controlled fuel supply system itself is the conventional configuration shown in FIG. 1, and all air-fuel ratio control is processed within the computer 28. Next, the air-fuel ratio control method will be explained with reference to the flowchart shown in FIG. As soon as the engine condition changes from the first condition to the second condition, this is detected and the control method according to the invention is initiated. First, the first air-fuel ratio in the first engine state (the air-fuel ratio before the change)
A/F1 is read out, and then the second air-fuel ratio A/F2 in the second engine state after the change is read out by the computer 28.
The calculation is set by . The first air-fuel ratio A/F 1 and the second air-fuel ratio A/F2 are compared, and A/F 1 and A/F"2 are compared.
are not equal, A/F=t (A/F2-A/F1.
The fuel injection device 18 and throttle valve 14 are controlled to change the air-fuel ratio A/F so that A/F becomes A/F.
The process ends when F=A/F2. At this time, A/F gradually changes from A/F1 with a time delay, as shown in Fig. 4, and reaches A/F2 at time t2' (in the case shown, A/F is a linear function of time). ).

以上述べたように本発明によれば、電子制御燃料供給装
置の構造はそのままで、コンピュータのソフトウェアを
変更することにより、空燃比を変化させる場合に空燃比
の変化の大きさに基づく時間関数として空燃比を変化せ
しめるようにしだから、空燃比が急激に変化することな
く従ってエンジン状態が急激に変化することがなく、乗
心地が改善され、まだ空燃比がリッチ側に変化する場合
にも無駄な燃料が供給されることがなく燃費が良くなり
、而もこのために特別の装置を要し々いため、コストが
上昇することも殆どない等、極めて効果的である。
As described above, according to the present invention, the structure of the electronically controlled fuel supply device remains unchanged, but by changing the computer software, when changing the air-fuel ratio, the time function based on the magnitude of the change in the air-fuel ratio is changed. Since the air-fuel ratio is changed, the air-fuel ratio does not change suddenly, so the engine condition does not change suddenly, the ride comfort is improved, and even if the air-fuel ratio changes to the rich side, there is no waste It is extremely effective, as no fuel is supplied, resulting in better fuel efficiency, and since special equipment is required for this purpose, there is almost no increase in cost.

尚、以」二の説明では燃料優先型電子制御燃料供給装置
について述べだが、これに限らず他の形式の電子制御燃
料供給装置に本発明を適用し得ることはいうまでもない
In the following description, the fuel priority type electronically controlled fuel supply system is described, but it goes without saying that the present invention is not limited to this and can be applied to other types of electronically controlled fuel supply systems.

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

第1図は燃料優先型電子制御燃料供給装置の概略図、第
2図は従来の空燃比制御を示すグラフ、第3図は本発明
による空燃比制御方法のフローチャート、第4図は本発
明方法による空燃比制御を示すグラフである。 10・・・・エンジン、12・・・・スロットルバルブ
、14・・・・アクチュエータ、16・・・・燃料供給
機構、18・・・・燃料噴射装置、20・・・・アクセ
ルペダル、22・・・・位置センサー、24.26・・
・・圧力センサー、28・・・・コンピュータ。 代理人 篠原泰司
Fig. 1 is a schematic diagram of a fuel priority type electronically controlled fuel supply system, Fig. 2 is a graph showing conventional air-fuel ratio control, Fig. 3 is a flowchart of the air-fuel ratio control method according to the present invention, and Fig. 4 is a method according to the present invention. It is a graph which shows air-fuel ratio control by. DESCRIPTION OF SYMBOLS 10... Engine, 12... Throttle valve, 14... Actuator, 16... Fuel supply mechanism, 18... Fuel injection device, 20... Accelerator pedal, 22... ...Position sensor, 24.26...
...Pressure sensor, 28...Computer. Agent Yasushi Shinohara

Claims (1)

【特許請求の範囲】 エンジンの各種情報に基づきエンジンに供給されるべき
空気流量をコンピュータにより作動せしめられるアクチ
ュエータにより制御して空燃比制御が行なわれ得るよう
に構成した電子制御燃料供給装置において、 第一の空燃比から次に制御すべき状態における第二の空
燃比への変化の際に、第一の空燃比から第二の空燃比へ
の変化の大きさに基づく時間関数として空燃比を変化せ
しめるようにしたことを特徴とする、空燃比制御方法。
[Scope of Claims] An electronically controlled fuel supply system configured to control the air-fuel ratio by controlling the air flow rate to be supplied to the engine based on various engine information using an actuator operated by a computer. When changing from one air-fuel ratio to a second air-fuel ratio in the next condition to be controlled, change the air-fuel ratio as a function of time based on the magnitude of the change from the first air-fuel ratio to the second air-fuel ratio. 1. An air-fuel ratio control method characterized by:
JP14287283A 1983-08-04 1983-08-04 Method for control of air-fuel ratio in electronically controlled fuel supply device Pending JPS6035139A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP14287283A JPS6035139A (en) 1983-08-04 1983-08-04 Method for control of air-fuel ratio in electronically controlled fuel supply device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP14287283A JPS6035139A (en) 1983-08-04 1983-08-04 Method for control of air-fuel ratio in electronically controlled fuel supply device

Publications (1)

Publication Number Publication Date
JPS6035139A true JPS6035139A (en) 1985-02-22

Family

ID=15325556

Family Applications (1)

Application Number Title Priority Date Filing Date
JP14287283A Pending JPS6035139A (en) 1983-08-04 1983-08-04 Method for control of air-fuel ratio in electronically controlled fuel supply device

Country Status (1)

Country Link
JP (1) JPS6035139A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS52153032A (en) * 1976-06-14 1977-12-19 Nippon Soken Inc Air flow adjusting device
JPS5433916A (en) * 1977-08-22 1979-03-13 Nissan Motor Co Ltd Air-fuel ratio control device
JPS54103924A (en) * 1978-01-17 1979-08-15 Bosch Gmbh Robert Method of and apparatus for controlling supply of fuel to internal combustion engine
JPS5618036A (en) * 1979-07-19 1981-02-20 Nissan Motor Co Ltd Fuel controller
JPS5638781A (en) * 1979-09-04 1981-04-14 Simon Hans Insulator for flat connector

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS52153032A (en) * 1976-06-14 1977-12-19 Nippon Soken Inc Air flow adjusting device
JPS5433916A (en) * 1977-08-22 1979-03-13 Nissan Motor Co Ltd Air-fuel ratio control device
JPS54103924A (en) * 1978-01-17 1979-08-15 Bosch Gmbh Robert Method of and apparatus for controlling supply of fuel to internal combustion engine
JPS5618036A (en) * 1979-07-19 1981-02-20 Nissan Motor Co Ltd Fuel controller
JPS5638781A (en) * 1979-09-04 1981-04-14 Simon Hans Insulator for flat connector

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