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Improvement of Nonlinearity Correction for BESIII ETOF Upgrade

机译:BESIII ETOF升级的非线性校正的改进

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摘要

An improved scheme to implement integral non-linearity (INL) correction of time measurements in the Beijing Spectrometer III Endcap Time-of-Flight (BESIII ETOF) upgrade system is presented in this paper. During upgrade, multi-gap resistive plate chambers (MRPC) are introduced as ETOF detectors which increases the total number of time measurement channels to 1728. The INL correction method adopted in BESIII TOF proved to be of limited use, because the sharply increased number of electronic channels required for reading out the detector strips degrade the system configuration efficiency severely. Furthermore, once installed into the spectrometer, BESIII TOF electronics do not support the TDCs’ nonlinearity evaluation online. In this proposed method, INL data used for the correction algorithm are automatically imported from a non-volatile read-only memory (ROM) instead of from data acquisition software. This guarantees the real-time performance and system efficiency of the INL correction, especially for the ETOF upgrades with massive number of channels. Besides, a signal that is not synchronized to the system 41.65 MHz clock from BEPCII is sent to the frontend electronics (FEE) to simulate pseudo-random test pulses for the purpose of online nonlinearity evaluation. Test results show that the time measuring INL errors in one module with 72 channels can be corrected online and in real time.
机译:本文提出了一种改进的方案,用于在北京光谱仪III端盖飞行时间(BESIII ETOF)升级系统中实现时间测量的积分非线性(INL)校正。在升级过程中,引入了多间隙电阻板腔室(MRPC)作为ETOF检测器,这将时间测量通道的总数增加到了1728。BESIII TOF中采用的INL校正方法的使用受到限制,因为急剧增加了读出检测器条所需的电子通道严重降低了系统配置效率。此外,一旦安装到光谱仪中,BESIII TOF电子设备将不支持TDC在线进行非线性评估。在此提出的方法中,用于校正算法的INL数据自动从非易失性只读存储器(ROM)而不是数据采集软件中导入。这保证了INL校正的实时性能和系统效率,尤其是对于具有大量通道的ETOF升级而言。此外,来自BEPCII的与系统41.65 MHz时钟不同步的信号被发送到前端电子设备(FEE),以模拟伪随机测试脉冲,以进行在线非线性评估。测试结果表明,可以在线和实时纠正在具有72个通道的一个模块中测量INL误差的时间。

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