Wenjun Xiao

dblp:45/3237 · DBLP profile ↗
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28ranked-venue papers
9as first author
1since 2021 · last 2022
—ORCID · conflict

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 13 · 2 first-authorTheory of computation · 8 · 7 first-authorDatabases, data management, data science and information retrieval · 4 · 2 first-author · 1 since 2021Artificial intelligence and machine learning · 3Applied, interdisciplinary, general and emerging computing · 2Computer networks · 1Software engineering, systems software and programming languages · 1

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer architecture, parallel and distributed computing, and storage systems
4 papers
Interconnection networks and networks-on-chip · 81% Distributed systems · 11% Electronic design automation · 8%
Theoretical computer science
3 papers
Graph algorithms and graph theory · 91% Combinatorics and discrete mathematics · 9%

Topics — the 12 heaviest of 14, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Interconnection networks and networks-on-chip
network topology
0.242009
Comments on "Low Diameter Interconnections for Routing in High-Performance Parallel Systems, " with Connections and Extensions to Arc Coloring of Coset Graphs · IEEE Trans. Computers 2008
A Group Construction Method with Applications to Deriving Pruned Interconnection Networks · IEEE Trans. Parallel Distributed Syst. 2007
Internode Distance and Optimal Routing in a Class of Alternating Group Networks · IEEE Trans. Computers 2006
Interconnection networks and networks-on-chip › network topology
cayley graph
0.122007
A Group Construction Method with Applications to Deriving Pruned Interconnection Networks · IEEE Trans. Parallel Distributed Syst. 2007
Internode Distance and Optimal Routing in a Class of Alternating Group Networks · IEEE Trans. Computers 2006
Distributed systems
fault tolerance
0.112009
Swapped (OTIS) Networks Built of Connected Basis Networks Are Maximally Fault Tolerant · IEEE Trans. Parallel Distributed Syst. 2009
Interconnection networks and networks-on-chip
optical interconnection networks
0.112009
Swapped (OTIS) Networks Built of Connected Basis Networks Are Maximally Fault Tolerant · IEEE Trans. Parallel Distributed Syst. 2009
Interconnection networks and networks-on-chip › network topology
low-diameter topology
0.112008
Comments on "Low Diameter Interconnections for Routing in High-Performance Parallel Systems, " with Connections and Extensions to Arc Coloring of Coset Graphs · IEEE Trans. Computers 2008
Graph algorithms and graph theory › graph coloring
edge coloring
0.112008
Comments on "Low Diameter Interconnections for Routing in High-Performance Parallel Systems, " with Connections and Extensions to Arc Coloring of Coset Graphs · IEEE Trans. Computers 2008
Graph algorithms and graph theory
graph coloring
0.112008
Comments on "Low Diameter Interconnections for Routing in High-Performance Parallel Systems, " with Connections and Extensions to Arc Coloring of Coset Graphs · IEEE Trans. Computers 2008
Graph algorithms and graph theory › graph theory › algebraic graph theory
cayley graph
0.112007
A Group Construction Method with Applications to Deriving Pruned Interconnection Networks · IEEE Trans. Parallel Distributed Syst. 2007
Interconnection networks and networks-on-chip › network topology › cayley graph
alternating group network
0.112006
Internode Distance and Optimal Routing in a Class of Alternating Group Networks · IEEE Trans. Computers 2006
Interconnection networks and networks-on-chip
routing algorithms
0.112006
Internode Distance and Optimal Routing in a Class of Alternating Group Networks · IEEE Trans. Computers 2006
Electronic design automation › physical design › routing › message routing
shortest-path routing
0.112006
Internode Distance and Optimal Routing in a Class of Alternating Group Networks · IEEE Trans. Computers 2006
Graph algorithms and graph theory › metric graph theory
graph distance
0.012006
Internode Distance and Optimal Routing in a Class of Alternating Group Networks · IEEE Trans. Computers 2006

Methods — techniques the papers use, named apart from their topics

graph decomposition · 0.2arc coloring · 0.2algebraic construction · 0.1graph theory · 0.1cayley graph analysis · 0.1node-disjoint paths · 0.1fault diameter analysis · 0.1
YearPublicationVenuePosition
2022 Machine learning and CBR integrated mechanical product design approach
Yunliang Huo, Ji Xiong, Wenjun Xiao
Adv. Eng. Informatics4
2020 Improving decision-making efficiency of image game based on deep Q-learning
Wenjun Xiao
Soft Comput.2
2018 Robust discriminative nonnegative dictionary learning for occluded face recognition
Weihua Ou, Xiao Luan, Jianping Gou, Quan Zhou 0004, Wenjun Xiao, Xiangguang Xiong, Wu Zeng
Pattern Recognit. Lett.5
2011 Psu: a novel low-latency constant-degree overlay network
Wenjun Xiao
Frontiers Comput. Sci. China2
2010 Fully symmetric swapped networks based on bipartite cluster connectivity
Wenjun Xiao, Behrooz Parhami, Weidong Chen 0009, Mingxin He, Wenhong Wei
Inf. Process. Lett.1
2010 Conditional diagnosability of alternating group networks
Shuming Zhou, Wenjun Xiao
Inf. Process. Lett.2
2010 Construction of vertex-disjoint paths in alternating group networks
abstract
The existence of parallel node-disjoint paths between any pair of nodes is a desirable property of interconnection networks, because such paths allow tolerance to node and/or link failures along some of the paths, without causing disconnection. Additionally, node-disjoint paths support high-throughput communication via the concurrent transmission of parts of a message. We characterize maximum-sized families of parallel paths between any two nodes of alternating group networks. More specifically, we establish that in a given alternating group network AN n , there exist n−1 parallel paths (the maximum possible, given the node degree of n−1) between any pair of nodes. Furthermore, we demonstrate that these parallel paths are optimal or near-optimal, in the sense of their lengths exceeding the internode distance by no more than four. We also show that the wide diameter of AN n is at most one unit greater than the known lower bound D+1, where D is the network diameter.
Shuming Zhou, Wenjun Xiao, Behrooz Parhami
J. Supercomput.2
2009 Load-balancing on swapped or OTIS networks
Chenggui Zhao, Wenjun Xiao, Behrooz Parhami
J. Parallel Distributed Comput.2
2009 Swapped (OTIS) Networks Built of Connected Basis Networks Are Maximally Fault Tolerant
abstract
An optical transpose interconnection system (OTIS) network with n2nodes is a two-level swapped architecture built of n copies of an n-node basis network that constitute its clusters. A simple rule for intercluster connectivity (node j in cluster i connected to node i in cluster j) leads to regularity, modularity, packageability, fault tolerance, and algorithmic efficiency of the resulting networks. We prove that an OTIS (swapped) network with a connected basis network possesses maximal fault tolerance, regardless of whether its basis network is maximally fault tolerant. We also show how the corresponding maximal number of node-disjoint paths between two nodes of a swapped network can be algorithmically constructed in a manner that is independent of the existence and construction of node-disjoint paths within its basis network. Our results are stronger than previously published results and they replace a number of proofs and constructions in the literature for specific basis networks. Additionally, we use our parallel path constructions to establish that the fault diameter and wide diameter of an OTIS network is no more than 4 units greater than its diameter.
Weidong Chen 0009, Wenjun Xiao, Behrooz Parhami
IEEE Trans. Parallel Distributed Syst.2
2008 Fault Tolerance in the Biswapped Network
Wenhong Wei, Wenjun Xiao
ICA3PP2
2008 Comments on "Low Diameter Interconnections for Routing in High-Performance Parallel Systems, " with Connections and Extensions to Arc Coloring of Coset Graphs
abstract
Recently, Melhem presented a "new" class of low-diameter interconnection (LDI) networks, (IEEE Trans. Computers, Vol. 56, No. 4, pp. 502-510). We note that LDI networks are the same as the previously known generalized de Bruijn graphs, point out an error in the decomposition of LDI networks into permutations, and find that the correct decomposition scheme is an instance of arc coloring for coset graphs. Hence, we pursue a number of general results on arc coloring of coset graphs that can be applied to this particular decomposition problem as well as within many other contexts, including complete arc coloring and normality of coset graphs.
Wenjun Xiao, Wenhong Wei, Weidong Chen 0009, Mingxin He, Behrooz Parhami
IEEE Trans. Computers1
2007 An Efficient Construction of Node Disjoint Paths in OTIS Networks
Weidong Chen 0009, Wenjun Xiao, Behrooz Parhami
APPT2
2007 General Biswapped Networks and Their Topological Properties
Mingxin He, Wenjun Xiao, Weidong Chen 0009, Wenhong Wei, Zhen Zhang 0017
APPT2
2007 ComNET: A P2P Community Network
Zhentao Sun, Wenjun Xiao
APPT2
2007 Optimal Routing Algorithm and Diameter in Hexagonal Torus Networks
Zhen Zhang 0017, Wenjun Xiao, Mingxin He
APPT2
2007 GDED-X Schemes for Load Balancing on Heterogeneous OTIS-Networks
Wenjun Xiao, Chenggui Zhao
ICA3PP2
2007 Hybrid Diffusion Schemes for Load Balancing on OTIS-Networks
Chenggui Zhao, Wenjun Xiao
ICA3PP2
2007 Further mathematical properties of Cayley digraphs applied to hexagonal and honeycomb meshes
Wenjun Xiao, Behrooz Parhami
Discret. Appl. Math.1
2007 Structural properties of Cayley digraphs with applications to mesh and pruned torus interconnection networks
Wenjun Xiao, Behrooz Parhami
J. Comput. Syst. Sci.1
2007 A Group Construction Method with Applications to Deriving Pruned Interconnection Networks
abstract
A number of low degree and, thus, low complexity, Cayley-graph interconnection structures, such as honeycomb and diamond networks, are known to be derivable by systematic pruning of 2D or 3D tori. In this paper, we extend these known pruning schemes via a general algebraic construction based on commutative groups. We show that, under certain conditions, Cayley graphs based on the constructed groups are pruned networks when Cayley graphs of the original commutative groups are kD tori. Thus, our results offer a general mathematical framework for synthesizing and exploring pruned interconnection networks that offer lower node degrees and, thus, smaller VLSI layout and simpler physical packaging. Our constructions also lead to new insights, as well as new concrete results, for previously known interconnection schemes such as honeycomb and diamond networks
Wenjun Xiao, Behrooz Parhami
IEEE Trans. Parallel Distributed Syst.1
2006 Further Properties of Cayley Digraphs and Their Applications to Interconnection Networks
Wenjun Xiao, Behrooz Parhami
TAMC1
2006 Some results on diameters of Cayley graphs
Wenjun Xiao
Discret. Appl. Math.1
2006 Cayley graphs as models of deterministic small-world networks
Wenjun Xiao, Behrooz Parhami
Inf. Process. Lett.1
2006 Internode Distance and Optimal Routing in a Class of Alternating Group Networks
abstract
Alternating group graphs AGn, studied by Jwo and others, constitute a class of Cayley graphs that possess certain desirable properties compared with other regular networks considered by researchers in parallel and distributed computing. A different form, ANn, of such graphs, proposed by Youhou and dubbed alternating group networks, has been shown to possess advantages over AGn. For example, ANnhas a node degree that is smaller by a factor of about 2 while maintaining a diameter comparable to that of AGn, is maximally fault-tolerant, and shares some of the positive structural attributes of the well-known star graph. In this paper, we characterize the distance between any two nodes in ANnand present an optimal (shortest-path) routing algorithm for this class of networks
Wenjun Xiao, Behrooz Parhami
IEEE Trans. Computers2
2005 A Constant Time Optimal Routing Algorithm for Undirected Double-Loop Networks
Jixiang Meng, Wenjun Xiao
MSN3
2005 Linear symmetries of Boolean functions
Wenjun Xiao
Discret. Appl. Math.1
2004 A Constant Time Optimal Routing Algorithm for Directed Double Loop Networks
Wenjun Xiao
SNPD2
2004 A New Family of Interconnection Networks of Fixed Degree Three
Shuming Zhou, Wenjun Xiao
J. Comput. Sci. Technol.2