DocumentCode :
271065
Title :
A Self-Adaptive SEU Mitigation System for FPGAs with an Internal Block RAM Radiation Particle Sensor
Author :
Glein, Robért ; Schmidt, Bernhard ; Rittner, Florian ; Teich, Jurgen ; Ziener, Daniel
Author_Institution :
Inf. Technol. (Commun. Electron.), Friedrich-Alexander-Univ. Erlangen-Nurnberg (FAU), Erlangen, Germany
fYear :
2014
fDate :
11-13 May 2014
Firstpage :
251
Lastpage :
258
Abstract :
In this paper, we propose a self-adaptive FPGA-based, partially reconfigurable system for space missions in order to mitigate Single Event Upsets in the FPGA configuration and fabric. Dynamic reconfiguration is used here for an on-demand replication of modules in dependence of current and changing radiation levels. More precisely, the idea is to trigger a redundancy scheme such as Dual Modular Redundancy or Triple Modular Redundancy in response to a continuously monitored Single Event Upset rate measured inside the on-chip memories itself, e.g., any subset (even used) internal Block RAMs. Depending on the current radiation level, the minimal number of replicas is determined at runtime under the constraint that a required Safety Integrity Level for a module is ensured and configured accordingly. For signal processing applications it is shown that this autonomous adaption to the different solar conditions realizes a resource efficient mitigation. In our case study, we show that it is possible to triplicate the data throughput at the Solar Maximum condition (no flares) compared to a Triple Modular Redundancy implementation of a single module. We also show the decreasing Probability of Failures Per Hour by 2 × 104 at flare-enhanced conditions compared with a non-redundant system.
Keywords :
aerospace instrumentation; data integrity; digital signal processing chips; field programmable gate arrays; particle detectors; radiation hardening (electronics); random-access storage; reconfigurable architectures; redundancy; FPGA; autonomous adaption; data throughput; dynamic reconfiguration; internal block RAM radiation particle sensor; on-chip memories; on-demand replication; partially reconfigurable system; redundancy scheme; resource efficient mitigation; safety integrity level; self-adaptive SEU mitigation system; signal processing application; single event upset; space missions; Error correction codes; Field programmable gate arrays; Protons; Random access memory; Redundancy; Single event upsets; BRAM radiation sensor; FPGA; SEU; Virtex-5QV; dynamic reconfiguration; mitigation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Field-Programmable Custom Computing Machines (FCCM), 2014 IEEE 22nd Annual International Symposium on
Conference_Location :
Boston, MA
Print_ISBN :
978-1-4799-5110-9
Type :
conf
DOI :
10.1109/FCCM.2014.79
Filename :
6861641
Link To Document :
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