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Excess RF power required for RF control of the spallation neutron source (SNS) linac, a pulsed high-intensity superconducting proton accelerator

机译:RF控制所需的RF功率多余的RF功率,介绍中子源(SNS)LINAC,脉冲高强度超导质子促进剂

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A high-intensity proton linac, such as that being planned for the SNS, requires accurate RE control of cavity fields for the entire pulse in order to avoid beam spill. The current design requirement for the SNS is RF field stability within ±0.5% and ±0.50 [1]. This RF control capability is achieved by the control electronics using the excess RE power to correct disturbances. To minimize the initial capital costs, the RE system is designed with 'just enough' RE power. All the usual disturbances exist, such as beam noise, klystron/HVPS noise, coupler imperfections, transport losses, turn-on and turn-off transients, etc. As a superconducting linac, there are added disturbances of large magnitude, including Lorentz detuning and microphonics. The effects of these disturbances and the power required to correct them are estimated, and the result shows that the highest power systems in the SNS have just enough margin, with little or no excess margin.
机译:高强度质子LINAC,例如计划用于SNS,需要精确地控制整个脉冲的空腔场,以避免梁溢出。 SNS的当前设计要求是±0.5%和±0.50 [1]内的RF场稳定性。该RF控制能力由控制电子设备使用过量的电力来校正干扰来实现。为了最大限度地减少初始资本成本,重新系统设计为“足够的”重新电源。存在所有通常的障碍,如光束噪声,克利克朗/ HVPS噪声,耦合器缺陷,运输损耗,开启和关闭瞬态等作为超导LINAC,增加了大量的扰动,包括洛伦兹静物和瞳孔仪。估计这些扰动和纠正它们所需的功率的影响,结果表明,SNS中的最高功率系统具有足够的边距,边距几乎或没有多余的边距。

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