Jianping Li 0007

dblp:10/1708-7 · DBLP profile ↗
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27ranked-venue papers
11as first author
9since 2021 · last 2024
0000-0003-1508-1440ORCID · conflict

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

Theory of computation · 21 · 7 first-author · 6 since 2021Artificial intelligence and machine learning · 5 · 4 first-author · 3 since 2021Databases, data management, data science and information retrieval · 3Applied, interdisciplinary, general and emerging computing · 1
YearPublicationVenuePosition
2024 On the Min-max Heterogeneous Weighted Delivery Problem
Jianping Li 0007, Junran Lichen
COCOA (1)1
2024 Approximation algorithms for solving the vertex-traversing-constrained mixed Chinese postman problem
Pengxiang Pan, Junran Lichen, Jianping Li 0007
J. Glob. Optim.3
2023 An Exact Algorithm for the Line-Constrained Bottleneck k-Steiner Tree Problem
Jianping Li 0007, Suding Liu, Junran Lichen
COCOA (1)1
2023 The Heterogeneous Rooted Tree Cover Problem
Pengxiang Pan, Junran Lichen, Jianping Li 0007
COCOON (2)4
2023 Delay-constrained minimum shortest path trees and related problems
Junran Lichen, Lijian Cai, Jianping Li 0007, Suding Liu, Pengxiang Pan, Wencheng Wang 0003
Theor. Comput. Sci.3
2022 The Constrained Parallel-Machine Scheduling Problem with Divisible Processing Times and Penalties
Jianping Li 0007, Runtao Xie, Junran Lichen, Guojun Hu, Pengxiang Pan
AAIM1
2022 Approximation algorithms for solving the line-capacitated minimum Steiner tree problem
Jianping Li 0007, Wencheng Wang 0003, Junran Lichen, Suding Liu, Pengxiang Pan
J. Glob. Optim.1
2021 An Approximation Algorithm for Solving the Heterogeneous Chinese Postman Problem
Jianping Li 0007, Lijian Cai, Junran Lichen, Pengxiang Pan, Wencheng Wang 0003, Suding Liu
AAIM1
2021 Delay-Constrained Minimum Shortest Path Trees and Related Problems
Junran Lichen, Lijian Cai, Jianping Li 0007, Suding Liu, Pengxiang Pan, Wencheng Wang 0003
COCOA3
2020 On Approximations for Constructing 1-Line Minimum Rectilinear Steiner Trees in the Euclidean Plane ℝ2
Junran Lichen, Jianping Li 0007, Wencheng Wang 0003, Jean Yeh, Yeong-Nan Yeh, Xingxing Yu
AAIM2
2019 On Approximations for Constructing Required Subgraphs Using Stock Pieces of Fixed Length
Junran Lichen, Jianping Li 0007, Ko-Wei Lih, Xingxing Yu
AAIM2
2018 Approximation algorithms for constructing specific subgraphs with minimum number of length-bounded stock pieces
Junran Lichen, Jianping Li 0007, Ko-Wei Lih
Inf. Process. Lett.2
2017 The restricted minimum single source shortest path tree expansion problem
abstract
We consider three kinds of minimum single source shortest path tree expansion problems. Given an undirected connected graph G = (V, E; w, c, b; s) with n vertexes, m edges and a positive constant H, w(e) is the length of edge e, c(e) is the capacity of edge e, b(e) is the unit cost to increase the capacity of edge e, H is a given capacity restriction value and s is a fixed vertex of G. For every edge e = uv ∈ E, if capacity c(uv)T(s, v) ≤ α · dG(s, v) + β (α, β ≥ 0) for every v ∈ V, here, dT(s, v) is the distance from s to t in T, dG(s, v) is the distance from s to t in G, both α and β are constants. The objective is to minimize the total expanding cost of all the edges in T, that is, mine∈E(T)Σ add(e) · b(e). We call it the restricted minimum single source shortest path tree expansion problem. The problem is NP-hard, and we design a heuristic algorithm for it. Suppose α ≡ 1, β ≡ 0 in the constraint condition dT(s, v) ≤ α · dG(s, v) + β (α, β ≥ 0) for every vertex v ∈ V, we call the new problem the extended restricted minimum single source shortest path tree expansion problem and design a strongly polynomial-time algorithm for it. On the basis of the extended restricted minimum single source shortest path tree expansion problem, we study a more widespread problem with a different objective: find a single source shortest path tree T (we can use any v ∈ V as a root), such that the total expanding cost of all the edges in T is minimum, that is, mine∈E(T)Σ add(e)·b(e). We call it the general restricted minimum single source shortest path tree expansion problem, then design a polynomial-time algorithm for it.
Weiqi Deng, Binchao Huang, Jianping Li 0007
ICIS4
2017 Approximation Algorithms for the Generalized Stacker Crane Problem
Jianping Li 0007, Weidong Li 0002, Junran Lichen
COCOA (1)1
2015 Penalty cost constrained identical parallel machine scheduling problem
Weidong Li 0002, Jianping Li 0007, Xuejie Zhang 0002
Theor. Comput. Sci.2
2014 Approximation algorithms for the ring loading problem with penalty cost
Weidong Li 0002, Jianping Li 0007
Inf. Process. Lett.2
2013 Coordination mechanism for selfish scheduling under a grade of service provision
Jianping Li 0007
Inf. Process. Lett.2
2013 Approximations for two variants of the Steiner tree problem in the Euclidean plane $${\mathbb{R}^2}$$
Jianping Li 0007, Binchao Huang, Junran Lichen
J. Glob. Optim.1
2010 An improved approximation algorithm for the maximum TSP
Tongquan Zhang, Jianping Li 0007
Theor. Comput. Sci.3
2009 Polynomial Approximation Schemes for the Max-Min Allocation Problem under a Grade of Service Provision
Jianping Li 0007, Weidong Li 0002
COCOA1
2009 The subdivision-constrained minimum spanning tree problem
Jianping Li 0007, Weidong Li 0002, Tongquan Zhang, Zhongxu Zhang
Theor. Comput. Sci.1
2007 On packing and coloring hyperedges in a cycle
Jianping Li 0007, Lusheng Wang 0001
Discret. Appl. Math.1
2007 Some approximation algorithms for the clique partition problem in weighted interval graphs
Mingxia Chen, Jianping Li 0007, Weidong Li 0002, Lusheng Wang 0001
Theor. Comput. Sci.3
2006 Minimum Clique Partition Problem with Constrained Weight for Interval Graphs
Mingxia Chen, Jianping Li 0007, Weidong Li 0002
COCOON3
2005 On Packing and Coloring Hyperedges in a Cycle
Jianping Li 0007, Ken Chee-keung Law
COCOON1
2005 On the complexity of finding emerging patterns
Lusheng Wang 0001, Guozhu Dong, Jianping Li 0007
Theor. Comput. Sci.4
2005 Exact matching of RNA secondary structure patterns
Ying Xu 0002, Lusheng Wang 0001, Jianping Li 0007
Theor. Comput. Sci.4