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Reliability impact of RF tube technology for the NPB

机译:RF管技术对NPB的可靠性影响

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Two reliability options, redundancy and operating margin, are examined to determine their effect on power system configurations using RF tube technology (klystron and klystrode) powered neutral particle beam (NPB) weapons. Redundancy is addressed by providing an additional RF tube identical to the tubes required to power an accelerator RF element (drift tube linac section, RF quadrupole, or coupled cavity linac). The RF elements do not share RF power with other RF elements. Operating margin provides increased reliability by sizing the RF tubes so that tube operating levels may be increased to compensate for the loss of a tube. It is shown that power system mass is affected by the choice of reliability measures, that higher power tubes coupled with higher power RF elements may mitigate the effects of mass increases, and that redundancy appears preferable to operating margin as a method of improving RF system reliability.
机译:检查两种可靠性选项,冗余和操作边距,以确定使用RF管技术(Klystron和Klystrode)供电的中性粒子束(NPB)武器对电力系统配置的影响。通过提供与供电加速器RF元件(漂移管LINAC段,RF四极孔或耦合腔LINAC)所需的管相同的额外的RF管来解决冗余。 RF元素不与其他RF元素共享RF功率。通过尺寸尺寸尺寸,操作边缘可以通过尺寸尺寸来提供更高的可靠性,从而可以增加管操作水平以补偿管的损失。结果表明,电力系统质量受到可靠性措施的选择的影响,耦合具有更高功率RF元件的较高功率管可以减轻质量增加的影响,并且冗余出现在操作边缘作为提高RF系统可靠性的方法。 。

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