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CHARM facility remotely controlled platform at CERN: A new fault-tolerant redundant architecture

机译:Charm设施在CERN的远程控制平台:一种新的容错冗余架构

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Many power electronics applications require high tolerance to faults such as short circuit or open circuit of the control signals. One such application is the CERN High energy AcceleRator Mixed-field (CHARM) facility, where maintenance may be precluded for long periods of time due to radiation and, therefore, high reliability is ne-cessary. A redundant interconnection architecture for the control signals is proposed, where each signal is dividually processed by different CPUs and transmitted through separate interconnection lines. During normal operation, the CPUs are synchronized and produce the same signals. The purpose of the proposed hardware and firmware strategy is to allow the actuator to continue operating even in case of fau regardless of the fault type (open circuit, short circuit to ground or to positive supply), a fault on one of the parallel lines would not inhibit the correct operation of the remaining line.This solution can be used to control the movements of a target system using a remote joystick in a safe environment. The architecture features reliable transmission of PWM signals driving a half-bridge power converter. Moreover, it is possible to extend it to any type of converter such as three-phase bridges, three-level NPC, or buck-boost converters.Simulations and experimental results show a good agreement, proving the effectiveness of the proposed fault tolerant circuitry.
机译:许多功率电子应用需要对控制信号的短路或开路等的故障进行高容差。一种这样的应用是Cern高能量加速器混合场(魅力)设施,其中由于辐射而长时间可以迫使维护,因此,高可靠性是Ne-Cessary。提出了一种用于控制信号的冗余互连架构,其中每个信号由不同的CPU分成分配处理并通过单独的互连线传输。在正常操作期间,CPU同步并产生相同的信号。所提出的硬件和固件策略的目的是允许执行器即使在故障情况下也继续运行;无论故障类型(开路,地面短路或阳性电源),一个平行线上的故障都不会抑制剩余线路的正确操作。该解决方案可用于控制目标的运动系统在安全环境中使用远程操纵杆。该架构具有驱动半桥电源转换器的PWM信号的可靠传输。此外,可以将其延伸到任何类型的转换器,例如三相桥,三级NPC或降压 - 升压转换器。同意和实验结果表明,良好的一致性,证明了所提出的容错电路的有效性。

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