Sheng-Chyang Liaw

dblp:31/6256 · DBLP profile ↗
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8ranked-venue papers
0as first author
3since 2021 · last 2023
—ORCID · none

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Theory of computation · 6 · 3 since 2021Computer networks · 2
YearPublicationVenuePosition
2023 [1,2]-dimension of graphs
Fei-Huang Chang, Ma-Lian Chia, David Kuo, Sheng-Chyang Liaw, Yi-Xuan Lin
Discret. Appl. Math.4
2022 Transferable domination number of graphs
Fei-Huang Chang, Ma-Lian Chia, David Kuo, Sheng-Chyang Liaw, Zhishi Pan
Discret. Appl. Math.5
2021 L(p, q)-labelings of subdivisions of graphs
Fei-Huang Chang, Ma-Lian Chia, Shih-Ang Jiang, David Kuo, Sheng-Chyang Liaw
Discret. Appl. Math.5
2016 All-to-all broadcast problems on Cartesian product graphs
Fei-Huang Chang, Ma-Lian Chia, David Kuo, Sheng-Chyang Liaw, Jen-Chun Ling
Theor. Comput. Sci.4
2007 Distance-two labelings of digraphs
Gerard J. Chang, Jer-Jeong Chen, David Kuo, Sheng-Chyang Liaw
Discret. Appl. Math.4
2003 Strictly nonblocking three-stage Clos networks with some rearrangeable multicast capability
abstract
F.K. Hwang and S.C. Liaw (see IEEE/ACM Trans. Networking, vol.8, p.535-9, 2000) introduced a new nonblocking requirement for 2-cast traffic which imposes different requirements on different types of coexisting calls. The requirement is strictly nonblocking for point-to-point calls among the 2-cast traffic, and is rearrangeable for genuine 2-cast calls. We generalize the 2-cast calls to multicast calls and give a sufficient condition for such networks when the number of multicast calls is upper bounded.
Frank K. Hwang, Sheng-Chyang Liaw, Li-Da Tong
IEEE Trans. Commun.2
2002 k-Subdomination in graphs
Gerard J. Chang, Sheng-Chyang Liaw, Hong-Gwa Yeh
Discret. Appl. Math.2
2000 On nonblocking multicast three-stage Clos networks
abstract
We give necessary and sufficient conditions for strictly nonblocking three-stage Clos (1953) networks with two types of multicast traffic. Then, we extend the results to other models where the routing is under certain restrictions. Finally, we compare our results with existing literature to mark the differences and similarities.
Frank K. Hwang, Sheng-Chyang Liaw
IEEE/ACM Trans. Netw.2