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    • 1. 发明授权
    • Apparatus for measuring a flow rate of intake air for an engine
    • 用于测量发动机的进气量的流量的装置
    • US4649745A
    • 1987-03-17
    • US671615
    • 1984-11-15
    • Toshio KondoAkio KobayashiShunichiro HiromasaAkira MasudaMasahiko Miyaki
    • Toshio KondoAkio KobayashiShunichiro HiromasaAkira MasudaMasahiko Miyaki
    • G01F1/698G01F1/68
    • G01F1/6986
    • An apparatus for measuring a flow of intake air to an engine includes a bridge circuit including a heat resistor placed in an intake air path of the engine, a resistor for sensing the temperature of the intake air, and a plurality of balance resistors. A heating current is supplied to this bridge circuit through a transistor controlled by a periodical current-passage control signal generated by a microcomputer. A signal Vh, representing a temperature change of the heat resistor heated by the heating current, is detected by the microcomputer. A first correction value is computed by using a difference between the detected value from the microcomputer and a signal Vho, representing temperature of the heat resistor when the bridge circuit is balanced at normal temperature. A time width correction value .DELTA.Do1 is computed from a table on the basis of the first correction value. The correction signal .DELTA.Do1 is used for correcting the current passage time. The current passage time width as corrected is used for computing a flow of the intake air.
    • 用于测量到发动机的进气的流量的装置包括桥接电路,其包括放置在发动机的进气通道中的热电阻器,用于感测进气的温度的电阻器和多个平衡电阻器。 通过由微型计算机产生的周期性电流通过控制信号控制的晶体管,向该桥式电路供给加热电流。 由微型计算机检测表示由加热电流加热的热电阻的温度变化的信号Vh。 通过使用来自微型计算机的检测值和信号Vho之间的差来计算第一校正值,该信号Vho表示在常规温度下桥接电路平衡时的热电阻器的温度。 基于第一校正值从表中计算时间宽度校正值DELTA Do1。 校正信号DELTA Do1用于校正当前通过时间。 校正的当前通过时间宽度用于计算进气的流量。
    • 4. 发明授权
    • Fuel injection control
    • 燃油喷射控制
    • US4492202A
    • 1985-01-08
    • US460856
    • 1983-01-25
    • Toshihiko MuramatsuAkio KobayashiToshio KondoShigenori IsomuraTomomi Eino
    • Toshihiko MuramatsuAkio KobayashiToshio KondoShigenori IsomuraTomomi Eino
    • F02D41/04F02D31/00F02D41/24F02D41/32F02B3/00F02B3/04
    • F02D41/2412F02D31/007
    • A fuel injection control for an internal combustion engine having electromagnetic fuel injectors determines a basic fuel injection time width of a fuel injection pulse signal applied to the electromagnetic fuel injectors in accordance with detected conditions of engine operation parameters, stores maximum fuel injection time width values predetermined in correspondence to values of a predetermined one of the engine operation parameters, reads one of the predetermined maximum fuel injection time width values corresponding to the values of the predetermined engine operation parameter and corrects the same in accordance with the values of the other engine operation parameters, and corrects the basic fuel injection time width in accordance with the corrected predetermined maximum fuel injection time width value, thereby controlling the air-fuel ratio at a desired air-fuel ratio under every operating condition of the engine, while simultaneously preventing a misoperation of continuous fuel supply from occuring in the electromagnetic fuel injectors as before.
    • 具有电磁燃料喷射器的内燃机的燃料喷射控制根据检测到的发动机运转参数的条件来决定施加到电磁燃料喷射器的燃料喷射脉冲信号的基本燃料喷射时间宽度,存储预定的最大燃料喷射时间宽度值 对应于预定的发动机运转参数的值,读取与预定的发动机运转参数的值相对应的预定最大燃料喷射时间宽度值之一,并根据其它发动机运转参数的值进行修正 并且根据校正的预定最大燃料喷射时间宽度值来校正基本燃料喷射时间宽度,从而在发动机的每个操作条件下将空燃比控制在期望的空燃比,同时防止误动作 连续燃油 如以前那样从电磁燃料喷射器中产生。
    • 5. 发明授权
    • Air-fuel ratio control apparatus
    • 空燃比控制装置
    • US4348727A
    • 1982-09-07
    • US109516
    • 1980-01-04
    • Akio KobayashiTakehiro KikuchiToshio KondoMasahiko Tajima
    • Akio KobayashiTakehiro KikuchiToshio KondoMasahiko Tajima
    • F02D41/34F02D41/14F02D41/24F02D41/26F02D45/00G06F15/20F02B3/12F02D5/00
    • F02D41/2451F02D41/2422F02D41/2445F02D41/263
    • The basic fuel injection amount determined in accordance with the rpm and the amount of air drawn into an engine is corrected by first, second and third compensation amounts determined in accordance with the engine operating conditions. The second compensation amount is varied by a predetermined value in response to the output of an O.sub.2 sensor at intervals of a predetermined time. The third compensation amount is read out from the location of a non-volatile memory addressed in accordance with the engine rpm and the intake air amount, varied by another predetermined value at intervals of another predetermined time in accordance with the value of the second compensation amount and stored again in the location from which it was read out. Before starting the compensation of the fuel injection amount, the particular bit pattern stored in the non-volatile memory is checked so as to self-check the third compensation amount data in the non-volatile memory.
    • 根据发动机工作条件确定的第一,第二和第三补偿量来校正根据转速和吸入发动机的空气量确定的基本燃料喷射量。 第二补偿量响应于预定时间间隔的O 2传感器的输出而改变预定值。 第三补偿量从根据发动机转速和进气量寻址的非易失性存储器的位置读出,根据第二补偿量的值在另一个预定时间间隔内变化另一个预定值 并再次存储在从其读出的位置。 在开始燃料喷射量的补偿之前,检查存储在非易失性存储器中的特定位模式,以便自动检查非易失性存储器中的第三补偿量数据。
    • 6. 发明授权
    • Electronic fuel injection control system for internal combustion engine
    • 内燃机电子燃油喷射控制系统
    • US4574761A
    • 1986-03-11
    • US680046
    • 1984-12-10
    • Shigenori IsomuraToshio KondoAkio KobayashiTakehiro Kikuchi
    • Shigenori IsomuraToshio KondoAkio KobayashiTakehiro Kikuchi
    • F02D41/00F02D41/34
    • F02D41/345Y02T10/44
    • In an electronic fuel injection control system for an internal combustion engine, a first integration circuit is responsive to an angular signal with a time period in inverse proportion to the rotational speed of the engine for integrating the first half of the time period of the angular signal and for producing a first integration signal indicative of a resultant value of the integration, a hold circuit is arranged to hold the value of the first integration signal upon lapse of the first half of the time period and to produce a hold signal of the held value and maintain it for the second half of the time period and the first half of the time period of the following angular signal, a second integration circuit is responsive to the angular signal for integrating the value of an air quantity signal indicative of the quantity of air drawn into the engine at each start of the first and second halves of the time period and for producing a second integration signal indicative of a resultant value of the integration of the value of the air quantity signal, and a signal generator is arranged to determine a fuel injection time based on the time required for arrival of the valve of the second integration signal to the level of the hold signal after each start of the first and second halves of the time period.
    • 在用于内燃机的电子燃料喷射控制系统中,第一积分电路响应角度信号,其中时间周期与发动机的转速成反比,用于积分角度信号的时间段的前半部分 并且为了产生指示积分的结果值的第一积分信号,保持电路被布置成在经过该时间段的前半部分时保持第一积分信号的值,并产生保持值的保持信号 并且将其保持在下一个时间段的后半部分和后续角度信号的时间段的前半部分中,第二积分电路响应角度信号来积分指示空气量的空气量信号的值 在时间段的第一和第二半部的每个开始处被吸入引擎,并且用于产生指示结果的第二积分信号 空气量信号的值的积分值和信号发生器被布置成基于第二积分信号的阀到达所需的时间到每次启动后的保持信号的电平来确定燃料喷射时间 的时间段的第一和第二半。
    • 8. 发明授权
    • Electronic control for fuel injection
    • 燃油喷射电子控制
    • US4457282A
    • 1984-07-03
    • US390963
    • 1982-06-22
    • Toshihiko MuramatsuAkio KobayashiTomomi EinoToshio Kondo
    • Toshihiko MuramatsuAkio KobayashiTomomi EinoToshio Kondo
    • F02D41/04F02D41/18F02D41/26F02D5/02
    • F02D41/182F02D41/263
    • An electronic control system for fuel injection into an engine controls an air-fuel ratio at a desired air-fuel ratio during a high load operation of the engine. The electronic control system performs the operations of detecting operating parameters of the engine, computing by a computing unit a time width in accordance with the detected operating parameters, selecting a maximum time width value of the injection pulse from a preliminarily stored table of maximum time width values thereof in accordance with the value of at least one of the detected operating parameters, comparing the computed time width value with the selected maximum time width value, limiting the computed time width value in accordance with the selected maximum time width value, and applying the injection pulse to the fuel injectors, thereby controlling the air-fuel ratio under the high load conditions at a desired air-fuel ratio and also preventing the malfunction of continuous fuel supply from occurring in the fuel injectors.
    • 用于燃料喷射到发动机中的电子控制系统在发动机的高负载运行期间控制所需空燃比的空燃比。 电子控制系统执行检测发动机的运行参数的操作,由计算单元根据检测到的运行参数计算时间宽度,从预先存储的最大时间宽度表选择喷射脉冲的最大时间宽度值 根据所检测到的操作参数中的至少一个的值,将所计算的时间宽度值与所选择的最大时间宽度值进行比较,根据所选择的最大时间宽度值限制计算出的时间宽度值,并将 喷射脉冲,从而在高负载条件下以期望的空燃比控制空燃比,并且还防止在燃料喷射器中发生连续燃料供应的故障。
    • 10. 发明授权
    • Closed loop mixture control using learning data resettable for fuel
evaporation compensation
    • 闭环混合控制采用学习数据可复位为燃料蒸发补偿
    • US4441473A
    • 1984-04-10
    • US243514
    • 1981-03-13
    • Shigenori IsomuraKatsuhiko KodamaToshio KondoAkio Kobayashi
    • Shigenori IsomuraKatsuhiko KodamaToshio KondoAkio Kobayashi
    • F02D41/34F02D41/06F02D41/14F02D45/00F02M17/00
    • F02D41/2493F02D41/2454F02D41/2441
    • A closed loop mixture control system for internal combustion engines is responsive to a signal derived from an exhaust gas sensor. The sensor signal is time-integrated in a direction depending on the level of the gas sensor output to derive a first mixture corrective setting of the control system. Second corrective settings or learning data are established for the control system in correspondence with the amount of air supplied to the engine. Each of the latter settings is varied as a function of time in a direction depending on the value of the time-varying first corrective setting relative to a reference so that the second settings are automatically updated to meet varying engine performance such as aging. One of the second corrective settings is selected in response to the detected quantity of the supplied air and multiplied by the first corrective setting to correct the basic mixture control setting of the system toward an optimum value. All of the second corrective settings are reset to appropriate values, for example, "1" at the instant the engine is started if an average value of the second settings is greater than a predetermined value to compensate for different fuel vaporizations.
    • 用于内燃机的闭环混合控制系统响应于从废气传感器得到的信号。 传感器信号根据气体传感器输出的电平在一个方向上进行时间积分,以得出控制系统的第一个混合校正设置。 与控制系统建立对应于发动机供给的空气量的第二校正设置或学习数据。 后一种设置中的每一种根据时间变化的第一校正设置的值相对于参考值的方向随时间的变化而变化,使得第二设置被自动更新以满足诸如老化的变化的发动机性能。 响应于所检测到的供给空气量而选择第二校正设置中的一个,并乘以第一校正设置,以将系统的基本混合控制设置校正为最佳值。 如果第二设置的平均值大于预定值以补偿不同的燃料蒸发,则所有第二校正设置被重置为适当的值,例如在启动发动机的时刻为“1”。