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Jia Lee
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2020 – today
- 2024
- [j35]Sihai Yu, Jia Lee, Teijiro Isokawa:
Universality of a surface chemical reaction network using only bi-molecular reactions. J. Membr. Comput. 6(3): 169-178 (2024) - [j34]Sihai Yu, Wenli Xu, Jia Lee, Teijiro Isokawa:
A Cellular Automaton Approach for Efficient Computing on Surface Chemical Reaction Networks. New Gener. Comput. 42(2): 217-235 (2024) - [j33]Qin Lei, Hong Jin, Jia Lee, Jiang Zhong:
Land use and land cover change simulation enhanced by asynchronous communicating cellular automata. Theor. Comput. Sci. 985: 114331 (2024) - 2023
- [c36]Masahiro Kimura, Teijiro Isokawa, Ferdinand Peper, Sho Nakade, Jia Lee, Naotake Kamiura:
On Implementation of Brownian Circuits by Swarm Agents. CANDARW 2023: 114-120 - 2022
- [j32]Qin Lei, Tao Li, Jia Lee, Wen-Li Xu, Ferdinand Peper:
Asynchronous communicating cellular automata: Formalization, robustness and equivalence. Inf. Sci. 587: 335-353 (2022) - [c35]Geunyeol Yu, Jia Lee, Kyungmin Bae:
STLmc: Robust STL Model Checking of Hybrid Systems Using SMT. CAV (1) 2022: 524-537 - 2021
- [j31]Qin Lei, Jia Lee, Xin Huang, Shuji Kawasaki:
Entropy-Based Classification of Elementary Cellular Automata under Asynchronous Updating: An Experimental Study. Entropy 23(2): 209 (2021) - [j30]Chunrong Wu, Qinglan Peng, Jia Lee, Kenji Leibnitz, Yunni Xia:
Effective hierarchical clustering based on structural similarities in nearest neighbor graphs. Knowl. Based Syst. 228: 107295 (2021) - [c34]Qiao Tang, Hong Xie, Yunni Xia, Jia Lee, Qingsheng Zhu:
Robust Contextual Bandits via Bootstrapping. AAAI 2021: 12182-12189 - [c33]Jun Yao, Jia Lee, Xin Huang, Teijiro Isokawa:
Improving shepherding tasks through destination-orientated actions. IJCNN 2021: 1-9 - [c32]Jia Lee, Geunyeol Yu, Kyungmin Bae:
Efficient SMT-Based Model Checking for Signal Temporal Logic. ASE 2021: 343-354 - [c31]Xiaotong Yan, Jia Lee, Lingqiu Zeng, Yunni Xia:
Three-lane Car-flowing Model Accounting for Variable Lane Change and Driving Behavior. SMC 2021: 1319-1324 - 2020
- [j29]Zhi Liu, Chunrong Wu, Qinglan Peng, Jia Lee, Yunni Xia:
Local Peaks-Based Clustering Algorithm in Symmetric Neighborhood Graph. IEEE Access 8: 1600-1612 (2020) - [j28]Takahiro Tomita, Jia Lee, Teijiro Isokawa, Ferdinand Peper, Takayuki Yumoto, Naotake Kamiura:
Universal logic elements constructed on the Turing Tumble. Nat. Comput. 19(4): 787-795 (2020) - [j27]Gohar Rehman Chughtai, Jia Lee, Mahnoor Shahzadi, Asif Kabir, Muhammad Arshad Shehzad Hassan:
An efficient ontology-based topic-specific article recommendation model for best-fit reviewers. Scientometrics 122(1): 249-265 (2020) - [j26]Jia Lee, Ya-Hui Ye, Xin Huang, Rui-Long Yang:
Binary-decision-diagram-based decomposition of Boolean functions into reversible logic elements. Theor. Comput. Sci. 814: 120-134 (2020) - [c30]Qinglan Peng, Yunni Xia, Yan Wang, Chunrong Wu, Xin Luo, Jia Lee:
A Decentralized Reactive Approach to Online Task Offloading in Mobile Edge Computing Environments. ICSOC 2020: 232-247
2010 – 2019
- 2019
- [j25]Chunrong Wu, Jia Lee, Teijiro Isokawa, Jun Yao, Yunni Xia:
Efficient Clustering Method Based on Density Peaks With Symmetric Neighborhood Relationship. IEEE Access 7: 60684-60696 (2019) - [j24]Wenli Xu, Jia Lee, Hui-Hui Chen, Teijiro Isokawa:
Universal Computation in a Simplified Brownian Cellular Automaton with von Neumann Neighborhood. Fundam. Informaticae 165(2): 139-156 (2019) - [j23]Kyungmin Bae, Jia Lee:
Bounded model checking of signal temporal logic properties using syntactic separation. Proc. ACM Program. Lang. 3(POPL): 51:1-51:30 (2019) - [c29]Weiling Li, Yunni Xia, Wanbo Zheng, Peng Chen, Jia Lee, Yawen Li:
Optimal Device Management Service Selection in Internet-of-Things. CollaborateCom 2019: 45-57 - [c28]Byounghyun Yoo, Shapna Muralidharan, Chanwoong Lee, Jia Lee, Heedong Ko:
KLog-Home: A Holistic Approach of In-Situ Monitoring in Elderly-Care Home. CSE/EUC 2019: 390-396 - [c27]Chunrong Wu, Qinglan Peng, Yunni Xia, Jia Lee:
Mobility-Aware Tasks Offloading in Mobile Edge Computing Environment. CANDAR 2019: 204-210 - [c26]Qin Lei, Jia Lee, Kenji Leibnitz, Ferdinand Peper:
Robustness of Elementary Cellular Automata to Asynchronous Transitions and Communications. CANDAR Workshops 2019: 228-234 - [c25]Qinglan Peng, Yunni Xia, Yan Wang, Chunrong Wu, Xin Luo, Jia Lee:
Joint Operator Scaling and Placement for Distributed Stream Processing Applications in Edge Computing. ICSOC 2019: 461-476 - [c24]Qinglan Peng, Yunni Xia, Feng Zeng, Jia Lee, Chunrong Wu, Xin Luo, Wanbo Zheng, Hui Liu, Yidan Qin, Peng Chen:
Mobility-Aware and Migration-Enabled Online Edge User Allocation in Mobile Edge Computing. ICWS 2019: 91-98 - 2018
- [j22]Ya-Hui Ye, Jia Lee, Li-Wei Zhu:
A Game-of-Life-based Paradigm for Massively Parallel Computing on Asynchronous Circuits. J. Cell. Autom. 13(4): 287-305 (2018) - [c23]Takahiro Tomita, Jia Lee, Teijiro Isokawa, Ferdinand Peper, Naotake Kamiura, Takayuki Yumoto:
Cellular Automaton Model for Turing Tumble Mechanical Computer. CANDAR Workshops 2018: 32-37 - [c22]Jia Lee, Ferdinand Peper, Kenji Leibnitz:
Formalization of Asynchronous Cellular Automata Using Asynchronous Protocol for Communications. CANDAR Workshops 2018: 38-41 - [p3]Tai-Ran He, Jia Lee, Teijiro Isokawa:
Invertible Construction of Decimal-to-Binary Converter Using Reversible Elements. Reversibility and Universality 2018: 169-181 - [p2]Ferdinand Peper, Jia Lee:
On Non-polar Token-Pass Brownian Circuits. Reversibility and Universality 2018: 299-311 - 2017
- [c21]Yuta Yamatani, Teijiro Isokawa, Jia Lee, Ferdinand Peper:
On a Triangular Brownian Cellular Automaton with 4 States and 6 Rules. CANDAR 2017: 200-204 - [c20]Seunghyun Woo, Jia Lee, Changmok Kim:
Dualboard: integrated user interface between typing and handwriting. SIGGRAPH ASIA (Posters) 2017: 24:1-24:2 - 2016
- [j21]Jia Lee, Ferdinand Peper, Sorin Dan Cotofana, Makoto Naruse, Motoichi Ohtsu, Tadashi Kawazoe, Yasuo Takahashi, Tetsuya Shimokawa, Laszlo B. Kish, Tohru Kubota:
Brownian Circuits: Designs. Int. J. Unconv. Comput. 12(5-6): 341-362 (2016) - [j20]Jia Lee, Ferdinand Peper, Kenji Leibnitz, Ping Gu:
Characterization of random fluctuation-based computation in cellular automata. Inf. Sci. 352-353: 150-166 (2016) - [c19]Susumu Adachi, Jia Lee, Ferdinand Peper, Hiroshi Umeo:
Universal 2-State 24-Neighborhood Asynchronous Cellular Automaton with Inner-Independent Open Rule. CANDAR 2016: 202-208 - [c18]Wen-Li Xu, Jia Lee:
Computation Based on Signal Random Fluctuation in Asynchronous Cellular Automata. CANDAR 2016: 249-253 - 2015
- [j19]Ming-Xiao Tang, Jia Lee, Kenichi Morita:
General design of reversible sequential machines based on reversible logic elements. Theor. Comput. Sci. 568: 19-27 (2015) - 2014
- [j18]Jia Lee, Susumu Adachi, Yunni Xia, Qingsheng Zhu:
Emergence of universal global behavior from reversible local transitions in asynchronous systems. Inf. Sci. 282: 38-56 (2014) - [c17]Tai-Ran He, Guo-Long Li, Jia Lee, Ferdinand Peper:
Reliable Crossing of Signals in Asynchronous Cellular Automata. CANDAR 2014: 476-479 - [c16]Wen-Hu Zhou, Jia Lee, Guo-Long Li, Katsunobu Imai:
Embedding Game of Life into a Simple Asynchronous Cellular Automaton. CANDAR 2014: 503-506 - 2013
- [j17]Ferdinand Peper, Jia Lee, Josep Carmona, Jordi Cortadella, Kenichi Morita:
Brownian Circuits: Fundamentals. ACM J. Emerg. Technol. Comput. Syst. 9(1): 3:1-3:24 (2013) - [c15]Jia Lee, Ferdinand Peper, Katsunobu Imai:
Computing on a Simple Asynchronous Cellular Automaton. CANDAR 2013: 505-509 - 2012
- [j16]Jia Lee, Qingsheng Zhu:
A Direct Proof of Turing Universality of Delay-Insensitive Circuits. Int. J. Unconv. Comput. 8(2): 107-118 (2012) - [j15]Jia Lee, Katsunobu Imai, Qingsheng Zhu:
Fluctuation-driven computing on number-conserving cellular automata. Inf. Sci. 187: 266-276 (2012) - [j14]Jia Lee, Rui-Long Yang, Kenichi Morita:
Design of 1-tape 2-symbol reversible Turing machines based on reversible logic elements. Theor. Comput. Sci. 460: 78-88 (2012) - [c14]Susumu Adachi, Jia Lee, Ferdinand Peper, Teijiro Isokawa, Katsunobu Imai:
Determining the Critical Temperature of the Continuous-State Game of Life. ACRI 2012: 83-90 - [c13]Daichi Takata, Teijiro Isokawa, Jia Lee, Ferdinand Peper, Nobuyuki Matsui:
On Construction by Worm-Like Agents on a Self-timed Cellular Automaton. ACRI 2012: 575-584 - 2011
- [j13]Jia Lee, Susumu Adachi, Ferdinand Peper:
A Partitioned Cellular Automaton Approach for Efficient Implementation of Asynchronous Circuits. Comput. J. 54(7): 1211-1220 (2011) - [j12]Jia Lee:
A Simple Model of Asynchronous Cellular Automata Exploiting Fluctuation. J. Cell. Autom. 6(4-5): 341-352 (2011) - 2010
- [j11]Ferdinand Peper, Jia Lee, Teijiro Isokawa:
Brownian Cellular Automata. J. Cell. Autom. 5(3): 185-206 (2010) - [j10]Jia Lee, Xin Huang, Qingsheng Zhu:
Decomposing Fredkin Gate into Simple Reversible Elements with Memory. J. Digit. Content Technol. its Appl. 4(5): 153-158 (2010) - [c12]Jia Lee, Ferdinand Peper:
Efficient Circuit Construction in Brownian Cellular Automata Based on a New Building-Block for Delay-Insensitive Circuits. ACRI 2010: 356-364 - [p1]Ferdinand Peper, Susumu Adachi, Jia Lee:
Variations on the Game of Life. Game of Life Cellular Automata 2010: 235-255
2000 – 2009
- 2009
- [j9]Ferdinand Peper, Jia Lee, Susumu Adachi, Teijiro Isokawa:
Cellular Nanocomputers: A Focused Review. Int. J. Nanotechnol. Mol. Comput. 1(1): 33-49 (2009) - [c11]Jia Lee, Ferdinand Peper:
Efficient Computation in Brownian Cellular Automata. IWNC 2009: 72-81 - [c10]Susumu Adachi, Jia Lee, Ferdinand Peper:
Universal 2-State Asynchronous Cellular Automaton with Inner-Independent Transitions. IWNC 2009: 107-116 - 2008
- [c9]Susumu Adachi, Ferdinand Peper, Jia Lee, Hiroshi Umeo:
Occurrence of Gliders in an Infinite Class of Life-Like Cellular Automata. ACRI 2008: 32-41 - [c8]Jia Lee, Ferdinand Peper, Susumu Adachi, Kenichi Morita:
An Asynchronous Cellular Automaton Implementing 2-State 2-Input 2-Output Reversed-Twin Reversible Elements. ACRI 2008: 67-76 - [c7]Jia Lee, Ferdinand Peper:
On Brownian cellular automata. Automata 2008: 278-291 - 2007
- [j8]Jia Lee, Susumu Adachi, Ferdinand Peper:
Reliable Self-Replicating Machines in Asynchronous Cellular Automata. Artif. Life 13(4): 397-413 (2007) - 2006
- [c6]George Demiris, Marjorie Skubic, Marilyn Rantz, Karen L. Courtney, Myra Aud, Harry W. Tyrer, Zhihai He, Jia Lee:
Facilitating interdisciplinary design specification of "smart" homes for aging in place. MIE 2006: 45-50 - 2005
- [j7]Jia Lee, Susumu Adachi, Ferdinand Peper, Shinro Mashiko:
Delay-insensitive computation in asynchronous cellular automata. J. Comput. Syst. Sci. 70(2): 201-220 (2005) - [j6]Jia Lee, Ferdinand Peper, Susumu Adachi, Shinro Mashiko:
Universal delay-insensitive systems with buffering lines. IEEE Trans. Circuits Syst. I Regul. Pap. 52-I(4): 742-754 (2005) - 2004
- [j5]Susumu Adachi, Jia Lee, Ferdinand Peper:
On Signals in Asynchronous Cellular Spaces. IEICE Trans. Inf. Syst. 87-D(3): 657-668 (2004) - [j4]Jia Lee, Ferdinand Peper, Susumu Adachi, Kenichi Morita:
Universal Delay-Insensitive Circuits with Bidirectional and Buffering Lines. IEEE Trans. Computers 53(8): 1034-1046 (2004) - [c5]Susumu Adachi, Ferdinand Peper, Jia Lee:
Universality of Hexagonal Asynchronous Totalistic Cellular Automata. ACRI 2004: 91-100 - [c4]Ferdinand Peper, Kazuhiro Oiwa, Susumu Adachi, Chikako Shingyoji, Jia Lee:
Synchronization of Protein Motors Modeled by Asynchronous Cellular Automata. ACRI 2004: 571-580 - 2003
- [j3]Jia Lee, Susumu Adachi, Ferdinand Peper, Kenichi Morita:
Embedding Universal Delay-Insensitive Circuits in Asynchronous Cellular Spaces. Fundam. Informaticae 58(2003): 295-320 (2003) - [j2]Jia Lee, Katsunobu Imai, Kenichi Morita:
Simulation of one-dimensional cellular automata by uniquely parallel parsable grammars. Theor. Comput. Sci. 304(1-3): 185-200 (2003) - 2002
- [c3]Jia Lee, Ferdinand Peper, Susumu Adachi, Kenichi Morita, Shinro Mashiko:
Reversible Computation in Asynchronous Cellular Automata. UMC 2002: 220-229 - 2001
- [c2]Jia Lee, Kenichi Morita:
Generation and Parsing of Morphism Languages by Uniquely Parallel Parsable Grammars. Words, Semigroups, and Transductions 2001: 303-314 - 2000
- [j1]Jia Lee, Kenichi Morita, Hiroki Asou, Katsunobu Imai:
Uniquely Parsable Unification Grammars and Their Parser Implemented in Prolog. Grammars 3(1): 63-81 (2000) - [c1]Kenichi Morita, Jia Lee:
Characterizing the Class of Deterministic Context-Free Languages by Semi-Right-Terminating Uniquely Parsable Grammars. Recent Topics in Mathematical and Computational Linguistics 2000: 207-217
Coauthor Index
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