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    • 5. 发明授权
    • Method and system for the recognition of insulation defects
    • 识别绝缘缺陷的方法和系统
    • US6140821A
    • 2000-10-31
    • US105140
    • 1998-06-26
    • Gunter FendtHans SpiesPeter HoraGuido Wetzel
    • Gunter FendtHans SpiesPeter HoraGuido Wetzel
    • B60R21/01G01R31/00G01R31/02G01M19/00
    • B60R21/0173G01R31/025B60R2021/01061G01R31/006
    • The invention concerns a method for the recognition of insulation defects in a circuit adapted for connection to a low-ohmic current source or sink having off-load voltage U.sub.n0, Towards this end the circuit is initially subjected, in a separated state, to a diagnostic voltage from a current limited current source or sink whose off-load voltage U.sub.h0 corresponds to exceeds or, respectively, is less than the voltage U.sub.n0. A decision is made as to the presence or absence of an insulation defect based on the current and/or voltage dependence during application of the diagnostic voltage. Finally, in the event that a defect is present, an error message is issued and the low-ohmic current source or sink is not connected to the circuit for self-diagnosis. Otherwise, the low-ohmic current source is connected to the circuit, or the sink, in sequential fashion for self-diagnosis testing. In this fashion even hidden insulation defects are recognized. The invention also concerns a system for carrying out this method.
    • 本发明涉及一种用于识别适用于连接到具有负载电压Un0的低欧姆电流源或吸收器的电路中的绝缘缺陷的方法。为此,电路最初以分离状态经受诊断 来自其负载电压Uh0对应的电流限制电流源或电池的电压超过或分别小于电压Un0。 根据在施加诊断电压期间的电流和/或电压依赖性来确定是否存在绝缘缺陷。 最后,在存在缺陷的情况下,发出错误信息,低电阻电流源或接收器未连接到电路进行自诊断。 否则,低电阻电流源以连续的方式连接到电路或接收器,用于自诊断测试。 以这种方式,即使隐藏的绝缘缺陷也被认可。 本发明还涉及一种用于执行该方法的系统。
    • 7. 发明授权
    • Data transmission method in a real-time data processing system
    • 数据传输方法在实时数据处理系统中
    • US5696776A
    • 1997-12-09
    • US502458
    • 1995-07-14
    • Hans SpiesPeter HoraGunter FendtDerrik Zechmair
    • Hans SpiesPeter HoraGunter FendtDerrik Zechmair
    • B60K26/00B60R16/02B60R16/03B60R21/01B60R21/16G06F11/16G06F13/00G06F7/02
    • G06F11/1443B60R21/01B60R16/0315
    • A data transmission method in a real-time data processing system, comprising a control unit and at least one function unit linked to this control unit through a data line, is described that permits noise-free and noise-insensitive transmission of data. In accordance with the invention, the data is stored in a buffer memory made up of a shift register and an intermediate storage, before being loaded into a main memory of the function unit. Transfer to the intermediate storage takes place only if certain conditions are satisfied that identify transmission faults. Before the data is stored in the main memory, the data is read-back into the control unit memory for the purposes of checking and there it is compared with the original data. If there is no correspondence, data transmission is performed again. The method in accordance with the invention can be applied advantageously in local networks, and in particular for motor vehicles, where a central control unit is applied for controlling operational sequences through various function units such as triggering circuits for passenger restraint systems or control circuits concerning motor management.
    • 描述了一种实时数据处理系统中的数据传输方法,其包括控制单元和通过数据线链接到该控制单元的至少一个功能单元,其允许无噪声和噪声不敏感的数据传输。 根据本发明,在装入功能单元的主存储器之前,数据被存储在由移位寄存器和中间存储器构成的缓冲存储器中。 仅当确定识别传输故障的某些条件时才转移到中间存储器。 在将数据存储在主存储器中之前,数据被读回到控制单元存储器中用于检查,并且与原始数据进行比较。 如果没有对应关系,则再次执行数据传输。 根据本发明的方法可以有利地应用于局部网络,特别是对于机动车辆,其中应用中央控制单元以通过各种功能单元控制操作顺序,例如乘客约束系统的触发电路或与电动机有关的控制电路 管理。
    • 9. 发明授权
    • Process for triggering side airbags of a passive safety device for motor
vehicles
    • 用于触发汽车被动安全装置的侧面安全气囊的过程
    • US5544915A
    • 1996-08-13
    • US504249
    • 1995-07-19
    • Gunter FendtPeter HoraHans SpiesHelmut SteurerWillibald WatzkaGuido Wetzel
    • Gunter FendtPeter HoraHans SpiesHelmut SteurerWillibald WatzkaGuido Wetzel
    • G01P15/00B60R21/01B60R21/16B60R21/20B60R21/32B60R21/04
    • B60R21/013B60R2021/01006
    • To trigger driver and passenger airbags as well as side airbags, the sensor signals generated by collision sensors will be fed into a central control unit for processing. According to this invention, side airbags will be activated by evaluating sensor signals generated by a collision sensor for detecting head-on and side collisions, centrally located within the motor vehicle, as well as by a left-hand and right-hand collision sensor each detecting side collisions, by the control unit generating a triggering signal whenever the centrally located collision sensor and at least one of the two side collision sensors generate a collision signal, with one of these two collision sensors having a greater value, or if the centrally located collision sensor as well as one of the two side collision sensors provide a signal of equal value, with the other side collision sensor simultaneously generating a collision signal with a value either equal or lower than the value of the collision signal generated by the central collision sensor. The process according to this invention will lead to a very high degree of triggering certainty for the entire occupant protection system, and advantageously does not require the use of a mechanical safety switch to trigger the side airbags.
    • 为了触发驾驶员和乘客安全气囊以及侧面安全气囊,碰撞传感器产生的传感器信号将被送入中央控制单元进行处理。 根据本发明,通过评估由碰撞传感器产生的传感器信号来激活侧面安全气囊,用于检测机动车辆中心的前后碰撞以及左右碰撞传感器 无论何时中心定位的碰撞传感器和两个侧面碰撞传感器中的至少一个碰撞传感器产生碰撞信号,控制单元产生触发信号,这两个碰撞传感器中的一个具有较大的值,或者如果位于中心位置 碰撞传感器以及两侧碰撞传感器中的一个提供相等值的信号,另一侧碰撞传感器同时产生等于或低于由中央碰撞传感器产生的碰撞信号的值的碰撞信号 。 根据本发明的方法将导致整个乘员保护系统的非常高的触发确定性,并且有利地不需要使用机械安全开关来触发侧面安全气囊。
    • 10. 发明授权
    • Data transmission system
    • 数据传输系统
    • US6070114A
    • 2000-05-30
    • US941363
    • 1997-09-30
    • Gunter FendtPeter HoraNorbert MullerGerhard Wagner
    • Gunter FendtPeter HoraNorbert MullerGerhard Wagner
    • B60R16/02B60R16/03B60R21/01G08B26/00H04B3/54H04L12/10H04L12/40H02J15/00
    • H04L12/10B60R21/01G08B26/005H04B3/548B60R16/0315B60R2021/01075H04B2203/5416H04B2203/5458H04B2203/547H04B2203/5495H04L12/40045H04L2012/40273
    • In the case of a data transmission system for the exchange of digital data between a central processor unit and several peripheral control modules which are connected to the former by a bus system such that communication is enabled and which are provided for the purpose of activating one each, respectively, out of several safety devices such as airbags or belt tensioning systems, or similar devices, in a motor vehicle, and wherein these peripheral control modules are each provided with one buffer capacitor whose energy content is sufficient for operating the respective module, and the device driven by this module, within specifications over a limited period of time, the bus system is designed as a single wire system for the purpose of achieving a simple setup and reducing installation and fitting costs. In this single wire system the control modules are supplied with electrical operating energy, and digital data are transmintted, by the same line sections. In the data communications mode of the central processor unit and the control modules, the energy supply of the modules is effected by their buffer capacitors. The transmission of the digital data from the central processor unit to the control modules as well as the passing on of such data is effected by modulating a direct voltage whose maximum level U.sub.S is significantly lower than the maximum voltage level U.sub.B up to which the buffer capacitors can be recharged. The recharging of the buffer capacitors is effected in charge mode periods nested in between transmission operation phases of the central processor unit and the peripheral control modules.
    • 在用于在中央处理器单元和若干外围控制模块之间交换数字数据的数据传输系统的情况下,这些外部控制模块通过总线系统连接到前者,使得能够进行通信,并且为了激活每个 在机动车辆中分别安装诸如安全气囊或皮带张紧系统或类似装置的几种安全装置,并且其中这些外围控制模块各自设置有一个缓冲电容器,其能量含量足以操作相应的模块,以及 由该模块驱动的设备在有限的时间内在规格范围内,总线系统被设计为单线系统,用于实现简单的设置并降低安装和配件成本。 在这种单线系统中,控制模块具有电动工作能量,数字数据通过相同的线路部分进行传输。 在中央处理器单元和控制模块的数据通信模式下,模块的能量供应由其缓冲电容器实现。 数字数据从中央处理器单元传输到控制模块以及这些数据的传递通过调制其最大电平US显着低于最大电压电平UB的直流电压来实现,直到最大电压电平UB上,缓冲电容器 可以充电。 缓冲电容器的再充电在嵌套在中央处理器单元和外围控制模块的传输操作阶段之间的充电模式时段内实现。