Abstract—Reversible logic has promising applications in emerging nanotechnologies, such as quantum computing, quantum dot cellular automata and optical computing, etc. Faults in reversible logic circuits that result in multi-bit error at the outputs are very tough to detect, and thus in literature, researchers have only addressed the problem of online testing of faults that result single-bit error at the outputs based on parity preserving logic. In this work, we propose a methodology for the concurrent error detection in reversible logic circuits to detect faults that can result in multi-bit error at the outputs. The methodology is based on the inverse property of reversible logic and is termed as ‘inverse and compare ’ method. By using the...
A new method of designing reversible circuits with inbuilt testability is presented by exploiting t...
Reversible circuits, which permute the set of input vectors, have potential applications in nanocomp...
This book opens the door to a new interesting and ambitious world of reversible and quantum computin...
Abstract—Reversible circuits rely on an entirely different computing paradigm allowing to perform co...
Reversible circuits are similar to conventional logic circuits except that they are built from rever...
Reversible logic design is a well-known paradigm in digital computation. In this paper, Quantum-dot ...
Reversible logic design is a well-known paradigm in digital computation. While an extensive literat...
Abstract—Nanotechnologies, including molecular quantum dot cellular automata (QCA), are susceptible ...
Reversibility is of interest in achieving extremely low power dissipation; it is also an inherent de...
In this chapter we describe faults that can occur in reversible circuit as compared to faults that c...
Reversible circuits rely on an entirely different computing paradigm allowing to perform computation...
Synthesis of reversible sequential circuits is a very new research area. It has been shown that such...
This paper investigates partially redundant logic detection and gate modification coverage in both r...
Abstract: Reversible logic is one of the ways for power optimization. The produced circuits using th...
This paper investigates partially redundant logic detection and gate modification coverage in both r...
A new method of designing reversible circuits with inbuilt testability is presented by exploiting t...
Reversible circuits, which permute the set of input vectors, have potential applications in nanocomp...
This book opens the door to a new interesting and ambitious world of reversible and quantum computin...
Abstract—Reversible circuits rely on an entirely different computing paradigm allowing to perform co...
Reversible circuits are similar to conventional logic circuits except that they are built from rever...
Reversible logic design is a well-known paradigm in digital computation. In this paper, Quantum-dot ...
Reversible logic design is a well-known paradigm in digital computation. While an extensive literat...
Abstract—Nanotechnologies, including molecular quantum dot cellular automata (QCA), are susceptible ...
Reversibility is of interest in achieving extremely low power dissipation; it is also an inherent de...
In this chapter we describe faults that can occur in reversible circuit as compared to faults that c...
Reversible circuits rely on an entirely different computing paradigm allowing to perform computation...
Synthesis of reversible sequential circuits is a very new research area. It has been shown that such...
This paper investigates partially redundant logic detection and gate modification coverage in both r...
Abstract: Reversible logic is one of the ways for power optimization. The produced circuits using th...
This paper investigates partially redundant logic detection and gate modification coverage in both r...
A new method of designing reversible circuits with inbuilt testability is presented by exploiting t...
Reversible circuits, which permute the set of input vectors, have potential applications in nanocomp...
This book opens the door to a new interesting and ambitious world of reversible and quantum computin...