An Improved Algorithm For On-Chip Clustering And Lossless Data Compression Of Hl-Lhc Pixel Hits

2018 IEEE NUCLEAR SCIENCE SYMPOSIUM AND MEDICAL IMAGING CONFERENCE PROCEEDINGS (NSS/MIC)(2018)

引用 0|浏览1
暂无评分
摘要
A prototype chip, called RD53A, has been designed by the RD53 collaboration to face the very high hit and trigger rate requirements (up to 3 GHz/cm(2) and 1 MHz, respectively) of the High Luminosity LHC experiment upgrades. In this paper, an improved algorithm for data compression, capable of sustaining the very high data volume and proposed to be implemented in the periphery of the chip, is presented: it exploits Run Length Encoding (RLE) and Variable Length Coding (VLC) to compact chip pixel hit patterns. The compression and decompression algorithms are implemented with MATLAB, and the performance is calculated taking into account the RD53A data readout implementation and its chip simulation and verification framework (called VEPIX53). In all considered cases, the results show that the RLE and VLC combination achieves a data compression ratio between 1.57 and 1.62, resulting in a bitstream size reduction between 36.2% and 38.4% with respect to the rate of the current data transmission format.
更多
查看译文
关键词
On-Chip Clustering,lossless data compression,HL-LHC pixel hits,prototype chip,RD53 collaboration,High Luminosity LHC experiment upgrades,high data volume,RLE,VLC,compact chip pixel,RD53A,data readout implementation,data compression ratio,current data transmission format,improved algorithm,trigger rate requirements,run length encoding,variable length coding,decompression algorithm,MATLAB,chip simulation,verification framework,VEPIX53,frequency 1.0 MHz
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要