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Reliability analysis and optimal redundancy for a satellite power supply system based on a new dynamic k-out-of-n: G model

机译:基于新动态k-out-of-n:G模型的卫星供电系统可靠性分析与最优冗余

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摘要

As an important system in satellites or space stations, a power supply system (PSS) is used to support the work of various electrical devices via power supply channels. A PSS fails once the number of undamaged channels is smaller than the number of devices that currently require power supply. A channel may fail only when it powers a device. To describe these characteristics of PSSs, a new dynamic k-out-of -n: G model is developed in this work by considering the following dynamic mechanisms. First, the failure threshold k is assumed to be a random process rather than a fixed value. Second, the decline rate of the number of undamaged channels is dynamic and depends on k. For the new model, a closed-form solution of reliability is derived under the assumption that the channel lifetime follows an exponential distribution. For other cases, a simulation method is employed to evaluate the lifetime of the system. Based on the evaluation of reliability, the optimal redundancy of channels is proposed by minimizing the weight of a PSS under a constraint of reliability.
机译:电源系统(PSS)作为卫星或空间站中的重要系统,用于通过供电通道支持各种电气设备的工作。一旦未损坏的通道数小于当前需要电源的设备数,PSS 就会失败。仅当通道为设备供电时,通道才可能发生故障。为了描述PSS的这些特性,本文通过考虑以下动态机制,建立了一种新的动态k-out-of -n:G模型。首先,假设故障阈值 k 是一个随机过程,而不是一个固定值。其次,未损坏通道数的下降率是动态的,取决于k。对于新模型,在信道寿命服从指数分布的假设下,推导了可靠性的闭合式解。对于其他情况,采用仿真方法来评估系统的寿命。在可靠性评估的基础上,提出了在可靠性约束下最小化PSS重量的信道最优冗余。

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