It is shown that the diameter of an n-dimensional hypercube can only increase by an additive constant of 1 when (n-1) faulty processors are present. Based on the concept of forbidden faulty sets, which guarantees the connectivity of the cube in the presence of up to (2n-3) faulty processors. It is shown that the diameter of the n-cube increases to (n-2) as a result of (2n-3) processor failures. It is also shown that only those nodes whose Hamming distance is (n-2) have the potential to be located at two ends of the diameter of the damaged cube. It is proven that all the n-cubes with (2n-3) faulty processors and a fault-diameter of (n+2) are isomorphic. A generalization to the subject study is presented
[[abstract]]Hypercube multiprocessor systems are attracted by many researchers in parallel processin...
An n-dimensional Mobius cube, 0MQ(n) or 1MQ(n), is a variation of n-dimensional cube Q(n) which poss...
AbstractThe n-cube network is called faulty if it contains any faulty processor or any faulty link. ...
It is shown that the diameter of an n-dimensional hypercube can only increase by an additive constan...
In evaluating the fault tolerance of an interconnection network, it is essential to estimate the siz...
evaluating the fault tolerance of an interconnection network, it is essential to estimate the size o...
[[abstract]]In this paper we study the fault diameter of the n-dimensional hypercube (or n-cube for ...
[[abstract]]In this paper we study the fault diameter of the n-dimensional hypercube (or n-cube for ...
We obtain the conditional fault diameter of the k-ary n-cube interconnection network. It has been pr...
In evaluating an interconnection network, it is indispensable to estimate the size of the maximal co...
Abstract This paper studies restricted fault diameter of the n-dimensional hypercube networks Qn (n ...
The diameter of a network in the presence of faulty nodes is an important indicator of its resilienc...
AbstractWe consider the problem of determining the minimum number of faulty processors, K(n, m), and...
AbstractWe consider the problem of determining the minimum number of faulty processors, K(n, m), and...
We consider the problem of determining the minimum number of faulty processors, K(n, m), and of faul...
[[abstract]]Hypercube multiprocessor systems are attracted by many researchers in parallel processin...
An n-dimensional Mobius cube, 0MQ(n) or 1MQ(n), is a variation of n-dimensional cube Q(n) which poss...
AbstractThe n-cube network is called faulty if it contains any faulty processor or any faulty link. ...
It is shown that the diameter of an n-dimensional hypercube can only increase by an additive constan...
In evaluating the fault tolerance of an interconnection network, it is essential to estimate the siz...
evaluating the fault tolerance of an interconnection network, it is essential to estimate the size o...
[[abstract]]In this paper we study the fault diameter of the n-dimensional hypercube (or n-cube for ...
[[abstract]]In this paper we study the fault diameter of the n-dimensional hypercube (or n-cube for ...
We obtain the conditional fault diameter of the k-ary n-cube interconnection network. It has been pr...
In evaluating an interconnection network, it is indispensable to estimate the size of the maximal co...
Abstract This paper studies restricted fault diameter of the n-dimensional hypercube networks Qn (n ...
The diameter of a network in the presence of faulty nodes is an important indicator of its resilienc...
AbstractWe consider the problem of determining the minimum number of faulty processors, K(n, m), and...
AbstractWe consider the problem of determining the minimum number of faulty processors, K(n, m), and...
We consider the problem of determining the minimum number of faulty processors, K(n, m), and of faul...
[[abstract]]Hypercube multiprocessor systems are attracted by many researchers in parallel processin...
An n-dimensional Mobius cube, 0MQ(n) or 1MQ(n), is a variation of n-dimensional cube Q(n) which poss...
AbstractThe n-cube network is called faulty if it contains any faulty processor or any faulty link. ...