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首页> 外文期刊>International Journal of Information Technology >Reliability and Cost Focused Optimization Approach for a Communication Satellite Payload Redundancy Allocation Problem
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Reliability and Cost Focused Optimization Approach for a Communication Satellite Payload Redundancy Allocation Problem

机译:通信卫星有效载荷冗余分配问题的可靠性和成本为中心的优化方法

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摘要

A typical reliability engineering problem regarding communication satellites has been considered to determine redundancy allocation scheme of power amplifiers within payload transponder module, whose dominant function is to amplify power levels of the received signals from the Earth, through maximizing reliability against mass, power, and other technical limitations. Adding each redundant power amplifier component increases not only reliability but also hardware, testing, and launch cost of a satellite. This study investigates a multi-objective approach used in order to solve Redundancy Allocation Problem (RAP) for a communication satellite payload transponder, focusing on design cost due to redundancy and reliability factors. The main purpose is to find the optimum power amplifier redundancy configuration satisfying reliability and capacity thresholds simultaneously instead of analyzing respectively or independently. A mathematical model and calculation approach are instituted including objective function definitions, and then, the problem is solved analytically with different input parameters in MATLAB environment. Example results showed that payload capacity and failure rate of power amplifiers have remarkable effects on the solution and also processing time.
机译:已经考虑了有关通信卫星的典型可靠性工程问题,以确定有效载荷应答器模块内功率放大器的冗余分配方案,该方案的主要功能是通过最大化针对质量,功率和其他方面的可靠性来放大从地球接收的信号的功率电平。技术限制。添加每个冗余功率放大器组件不仅增加了可靠性,而且还增加了卫星的硬件,测试和发射成本。这项研究调查了一种用于解决通信卫星有效载荷应答器的冗余分配问题(RAP)的多目标方法,重点是由于冗余和可靠性因素而导致的设计成本。主要目的是找到同时满足可靠性和容量阈值的最佳功率放大器冗余配置,而不是分别或单独进行分析。建立了包括目标函数定义在内的数学模型和计算方法,然后在MATLAB环境中用不同的输入参数解析地解决了该问题。实例结果表明,功率放大器的有效负载容量和故障率对解决方案和处理时间都有显着影响。

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