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Distributed Motor Controller (DMC) for operation in extreme environments

机译:分布式电机控制器(DMC),可在极端环境下运行

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This paper presents an extreme environment capable Distributed Motor Controller (DMC) module suitable for operation with a distributed architecture of future spacecraft systems. This motor controller is designed to be a bus-based electronics module capable of operating a single Brushless DC motor in extreme space environments: temperature (-120°C to +85°C required, -180°C to +100°C stretch goal); radiation (>;20K required, >;100KRad stretch goal); >;360 cycles of operation. Achieving this objective will result in a scalable modular configuration for motor control with enhanced reliability that will greatly lower cost during the design, fabrication and ATLO phases of future missions. Within the heart of the DMC lies a pair of cold-capable Application Specific Integrated Circuits (ASICs) and a Field Programmable Gate Array (FPGA) that enable its miniaturization and operation in extreme environments. The ASICs are fabricated in the IBM 0.5μm Silicon Germanium (SiGe) BiCMOS process and are comprised of Analog circuitry to provide telemetry information, sensor interface, and health and status of DMC. The FPGA contains logic to provide motor control, status monitoring and spacecraft interface. The testing and characterization of these ASICs have yielded excellent functionality in cold temperatures (-135°C). The DMC module has demonstrated successful operation of a motor at temperature.
机译:本文提出了一种具有极端环境功能的分布式电动机控制器(DMC)模块,适合与未来航天器系统的分布式体系结构一起使用。该电机控制器设计为基于总线的电子模块,能够在极端空间环境中操作单个无刷直流电机:温度(目标温度为-120°C至+ 85°C,目标温度为-180°C至+ 100°C );辐射(>;需要20K,>; 100KRad伸展目标); >; 360个运行周期。实现这一目标将导致用于电动机控制的可扩展模块化配置,并具有增强的可靠性,这将大大降低未来任务的设计,制造和ATLO阶段的成本。 DMC的心脏内有一对具有冷功能的专用集成电路(ASIC)和一个现场可编程门阵列(FPGA),从而使其能够在极端环境下小型化和运行。 ASIC采用IBM0.5μm硅锗(SiGe)BiCMOS工艺制造,并由模拟电路组成,以提供遥测信息,传感器接口以及DMC的健康状况。 FPGA包含提供电机控制,状态监控和航天器接口的逻辑。这些ASIC的测试和表征在低温(-135°C)下产生了出色的功能。 DMC模块已经证明了在一定温度下电动机的成功运行。

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