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Performance metrics for evaluating spacecraft power control and management (PCM)

机译:评估航天器电源控制和管理(PCM)的性能指标

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The power subsystem is the most critical system in a spacecraft due to the dependency of nearly every other subsystem for power. The power system configuration depends on various factors such as amount of power required, type of orbit, duration of the mission, constraints on mass volume, and the impact of the system's hardware on the spacecraft design. Power system encompasses power generation, energy storage and power processing. The organization of control and management circuits to carry out these functionalities is termed as Power Control and Management (PCM). Selection of an appropriate PCM is must for achieving the desired mission goal. This makes its choice a most important one for spacecraft Engineers. Different methods are adopted for finding out a suitable PCM. However availability of indices facilitate the evaluation of electrical performance of PCM systems. Hence a set performance metrics which would serve as benchmark has been detailed here. In the end, a typical case has been enumerated to demonstrate the usefulness of these metrics.
机译:由于几乎所有其他子系统用于电力的依赖性,功率子系统是航天器中最关键的系统。电力系统配置取决于各种因素,例如所需的电力量,轨道类型,使命持续时间,质量体积的限制以及系统硬件对航天器设计的影响。电力系统包括发电,储能和功率处理。控制和管理电路的组织以执行这些功能被称为电力控制和管理(PCM)。选择适当的PCM必须用于实现所需的任务目标。这使其选择是航天器工程师最重要的选择。采用不同的方法来找出合适的PCM。但是,指数的可用性有助于评估PCM系统的电气性能。因此,这里详述了一个作为基准的集合性能指标。最后,已经列举了典型的案例以展示这些度量的有用性。

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