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Design for reliability: Remote communication system using solar power.

机译:可靠性设计:使用太阳能的远程通信系统。

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A design algorithm for remote communication system was developed to meet an availability goal. The algorithm takes into account three modes of possible failure: individual component breakdown, energy deficiency (loss of load probability), and radio transmission loss. Least cost designs options are selected through tradeoffs among the three modes of possible failure. Design choices include component redundancy, more solar energy collection (photovoltaic) modules, more energy storage (batteries), higher radio power, larger antennas, and more reliable components. The algorithm was applied to the design of a satellite ground station system and radio network station systems in remote mountainous areas of Peru. Mean times to repair are long there. Nevertheless, a goal of 90% availability was set and achieved.
机译:为满足可用性目标,开发了一种用于远程通信系统的设计算法。该算法考虑了三种可能的故障模式:单个组件故障,能量不足(负载概率损失)和无线电传输损耗。通过在三种可能的故障模式之间进行权衡选择最小的成本设计选项。设计选择包括组件冗余,更多的太阳能收集(光伏)模块,更多的能量存储(电池),更高的无线电功率,更大的天线以及更可靠的组件。该算法被应用于秘鲁偏远山区的卫星地面站系统和无线电网络站系统的设计。那里的平均维修时间很长。尽管如此,仍设定并实现了90%可用性的目标。

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