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    • 2. 发明申请
    • METHOD AND DEVICE FOR AVOIDING INTERFERENCE IN A RADIO TRANSMISSION SYSTEM
    • 方法和器具,以防无线电传输系统的若干问题
    • WO2008000655A3
    • 2008-02-14
    • PCT/EP2007056066
    • 2007-06-19
    • BOSCH GMBH ROBERTEISENHARDT HARALDRASCH BERNHARDMUELLER ANDREAS
    • EISENHARDT HARALDRASCH BERNHARDMUELLER ANDREAS
    • H04B15/02
    • H04B15/04H04B2215/064H04B2215/065
    • A method for avoiding interference in a radio transmission system (12) with at least one carrier frequency (f C ) is disclosed, based on a pulse width modulated signal (S PWM ). The method is characterised in that a clock frequency (f T ) for the pulse width modulated signal (S PWM ) is set such that the whole number multiple thereof (f T,k , f T,k+1 ) has a defined minimum separation (F min ) from said carrier frequency (f C,n ). The invention further relates to a device (10) for avoiding interference in a radio transmission system (12) with at least one carrier frequency (f C ) based on a pulse width modulated signal (S PWM ), with an information device (22) for transmitting an information signal (S I ), with at least one piece of information on the carrier frequency (f C,n ) in question, to a controller (28), wherein the controller (28) adjusts a clock frequency (f T ) for the pulse width modulated signal (S PWM ) such that the whole number multiple thereof (f T,k , f T,k+1 ) has a defined minimum separation (F min ) from said carrier frequency (f C,n ).
    • 公开的是避免与所述至少一个载波频率(f C )中的无线电传输系统(12)的干扰的方法,由于脉冲宽度调制信号(S PWM )。 该方法的特征在于:一个时钟频率(f Ť)的脉冲宽度调制信号的(S PWM )被设置为使得它的整数倍(F T,K 中,f T,K + 1 )限定的最小距离(F 分钟)(在相关载波频率f C,N )符合 , 此外,本发明涉及用于避免无线电传输系统(12)与至少一个载波频率的干扰(F C )的装置(10),由于脉冲宽度调制信号(S PWM )中,用 的信息的装置(22),用于发送信息信号(S I )时,(N· C )对疑问载波频率包含至少一个信息,在控制单元(28) 其中,所述脉宽调制信号的控制单元(28)的时钟频率(f Ť)(S PWM )被调节,使得它的整数倍(F T,K < / SUB>中,f T,K + 1 )限定的最小距离(F 分钟)(在相关载波频率f C,N )的规定。
    • 3. 发明申请
    • METHOD AND DEVICE FOR CONTROLLING ELECTRONICALLY COMMUTATED ELECTRIC MACHINES
    • 方法和装置控制电子换向的机械
    • WO2012059361A3
    • 2013-04-18
    • PCT/EP2011068595
    • 2011-10-25
    • BOSCH GMBH ROBERTMUELLER ANDREAS
    • MUELLER ANDREAS
    • H02P6/08
    • H02P6/10H02P2209/11
    • The invention relates to a method for controlling a multiphase electric machine (2), having the following steps: - providing switching patterns for a first switching period in a buffer (7), said switching period being assigned to a rotor position of the electric machine (2), wherein each switching pattern corresponds to a combination of phase voltages that are to be applied during a rotor position of the electric machine (2); - cyclically requesting a switching pattern and controlling a drive circuit (3) in a manner corresponding to the switching pattern requested each time; - calculating switching patterns for a subsequent switching period; and - storing the calculated switching patterns for the subsequent time period in the buffer (7).
    • 本发明涉及一种驱动多相电机(2),包括以下步骤的方法: - 用于在缓冲存储器(7)的第一移位周期,其中,所述电机的转子位置的切换周期(2)与每个开关模式相关联提供切换模式 在电机(2)的转子位置的组合,以对应于相电压被施加; - 检索的循环移位模式和驱动对应于检索到的每个切换模式的驱动电路(3); - 计算电路图案以用于随后的切换周期; 和 - 存储的时间以下期间所计算出的换档模式在中间存储(7)。
    • 4. 发明公开
    • 네트워크에서 비밀 또는 키 생성 방법
    • 如何在网络上创建密钥或密钥
    • KR20180009753A
    • 2018-01-29
    • KR20177033600
    • 2016-04-13
    • BOSCH GMBH ROBERT
    • LOTHSPEICH TIMOMUELLER ANDREAS
    • H04L9/08
    • H04L9/0838H04L2209/84
    • 본발명은네트워크에서비밀또는키를생성하기위한방법에관한것이다. 본발명의방법에따라서, 네트워크는적어도하나의제 1 가입자및 제 2 가입자그리고적어도제 1 가입자와제 2 가입자사이의공통전송채널을포함한다. 제 1 가입자는전송채널로적어도제 1 값및 제 2 값을제공할수 있고제 2 가입자는전송채널로적어도제 1 값및 제 2 값을제공할수 있으며; 전송채널상에서상호간의실질적인동기식전송을위해제 1 가입자는제 1 가입자값 시퀀스를생성하고제 2 가입자는제 2 가입자값 시퀀스를생성하며; 제 1 가입자및 제 2 가입자는각각하나의공통비밀또는하나의공통키를생성하되, 제 1 가입자는제 1 가입자값 시퀀스에대한정보들뿐아니라전송채널상에서제 2 가입자값 시퀀스와제 1 가입자값 시퀀스의중첩의결과로발생하는중첩값 시퀀스도기반으로하여생성하고, 제 2 가입자는제 2 가입자값 시퀀스에대한정보들뿐아니라전송채널상에서제 2 가입자값 시퀀스와제 1 가입자값 시퀀스의중첩의결과로발생하는중첩값 시퀀스도기반으로하여생성한다. 특정한간격들로또는검출된중첩값 시퀀스에따라서, 적어도제 1 가입자는제 1 가입자값 시퀀스의외부에서적어도하나의채움값을전송채널로제공하거나, 또는제 2 가입자는제 2 가입자값 시퀀스의외부에서적어도하나의채움값을전송채널로제공하며, 그럼으로써전송채널상에서에지변경또는값 변경이수행된다.
    • 本发明涉及一种用于在网络中生成秘密或密钥的方法。 根据本发明的方法,网络包括至少一个第一用户和第二用户以及第一用户和第二用户之间的至少一个公共传输信道。 第一用户可以提供至少第一值和第二值作为传输信道,并且第二用户可以提供至少第一值和第二值作为传输信道; 第一用户产生第一用户值序列,并且第二用户产生用于在传输信道上彼此基本上同步传输的第二用户值序列; 第一用户和第二用户分别,但创建一个共同的秘密或公共密钥,第一用户为通过在传输信道的第一订户值第一订户第二订户值序列以及对值的序列信息 在值的重叠序列生成还基于作为序列重叠的结果,和通过叠加到传输信道的信息以及关于所述值的第二订户序列中的第一订户值序列中的第二订户值序列的第二订户 生成的嵌套值序列也会生成。 取决于特定的间隔或值的检测嵌套序列,至少第一用户首先提供到填充值中的至少一个的值的订户序列以外的传输信道,或所述第二订户的值的订户序列的第二外 传输信道中至少有一个填充值,从而影响传输信道的边缘更改或值更改。
    • 8. 发明申请
    • HEATABLE TOOL
    • 加热的工具
    • WO2005018908A3
    • 2005-06-16
    • PCT/EP2004009076
    • 2004-08-13
    • KRAUSS MAFFEI KUNSTSTOFFTECHBURR AUGUSTMUELLER ANDREASHETSCHEL MARTINBUERKLE ERWIN
    • BURR AUGUSTMUELLER ANDREASHETSCHEL MARTINBUERKLE ERWIN
    • B29C45/27B29C45/73B29C47/86H05B3/14B29C47/78
    • B29C45/73B29C45/2737B29C45/2738B29C45/7337B29C47/0014B29C47/86B29C47/862B29K2021/00H05B3/141
    • The invention relates to a heatable tool for a device, which processes a plastic melt or a metal melt, comprising a surface that comes into contact with a melt. An electrically conductive ceramic (16, 54, 116, 154, 216, 254) for heating, at least in the area of the surface, is provided in therein or is integrated therewith. In order to improve the design of the heatable tool, the invention provides that cooling channels (220) for conducting a cooling medium are made in the electrically conductive ceramic (216). The invention also provides that the electrically conductive ceramic (16, 54, 116, 154, 216, 254) is designed as an insert for inserting into a tool base structure, whereby the insert, particularly by oxidation, has, at least in part, an electric insulation. Lastly, the invention provides that a nanostructure is applied to the electrically conductive ceramic or, alternatively, a ceramic structure system consisting of an electrically conductive ceramic and of an electrically non-conductive ceramic is created.
    • 本发明涉及加热的模具的塑料熔化或熔融金属处理设备,包括一个与熔体表面,接触其中导电陶瓷(16,54,116,154,216,254),用于加热至少在表面的区域 被集成在这个或通过使用该提供。 对于加热的工具的开发中并入用于冷却介质的通道中的导电陶瓷(216)的冷却通道(220)的建议。 此外,提出的是,导电陶瓷(16,54,116,154,216,254)形式作为插入用于插入到工具基底结构,其中,所述插入件,尤其是通过氧化,至少部分地具有电绝缘。 最后,提出了在导电性陶瓷,或者可替换地应用的纳米结构,以提供导电性和非导电性陶瓷构成的陶瓷敷料系统。