Design of a Reliable XOR-XNOR Circuit for Arithmetic Logic Units

Abstract : Computer systems used in safety-critical applications like space, avionic and biomedical applications require high reliable integrated circuits (ICs) to ensure the accuracy of data they process. As Arithmetic Logic Units (ALUs) are essential element of computers, designing reliable ALUs is becoming an appropriate strategy to design fault-tolerant computers. In fact, with the continuous increase of integration densities and complexities ICs are susceptible to many modes of failure. Thereby, Reliable operation of ALUs is critical for high performance safety-critical computers. Given that XOR-XNOR circuits are basic building blocks in ALUs, designing efficient reliable XOR-XNOR gates is an important challenge in the area of high performance computers. The reliability enhancement technique presented in this work is based on using a Concurrent Error Detection (CED) based reliable XOR-XNOR circuit implementation to detect permanent and transient faults in ALUs during normal operation in order to improve the reliability of highly critical computer systems. The proposed design is performed using the 32 nm process technology.
Document type :
Conference papers
Complete list of metadatas

Cited literature [14 references]  Display  Hide  Download

https://hal.inria.fr/hal-01551326
Contributor : Hal Ifip <>
Submitted on : Friday, June 30, 2017 - 10:35:42 AM
Last modification on : Thursday, March 7, 2019 - 11:46:54 AM
Long-term archiving on : Monday, January 22, 2018 - 9:40:05 PM

File

978-3-642-35606-3_61_Chapter.p...
Files produced by the author(s)

Licence


Distributed under a Creative Commons Attribution 4.0 International License

Identifiers

Citation

Mouna Karmani, Chiraz Khedhiri, Belgacem Hamdi, Amir-Mohammad Rahmani, Ka Man, et al.. Design of a Reliable XOR-XNOR Circuit for Arithmetic Logic Units. 9th International Conference on Network and Parallel Computing (NPC), Sep 2012, Gwangju, South Korea. pp.516-523, ⟨10.1007/978-3-642-35606-3_61⟩. ⟨hal-01551326⟩

Share

Metrics

Record views

159

Files downloads

120