VLDB 2026 Research / reviewers in the wild / expert
Yu-Huei Cheng
dblp:07/3795
· DBLP profile ↗
17ranked-venue papers
2as first author
4since 2021 · last 2024
0000-0002-1468-6686ORCID · reported
Domains — the database's venue-derived domains; a paper can count in several
Applied, interdisciplinary, general and emerging computing · 9 · 1 first-author · 1 since 2021Theory of computation · 4 · 1 since 2021Artificial intelligence and machine learning · 3 · 1 since 2021Computer networks · 1 · 1 first-author · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2024 | An Artificial IoT-Enabled Smart Production Line for 360° Visual Defect Detection and Classification of Cherry TomatoesabstractThe aging of the world’s population is causing older farmers familiar with agricultural practices to retire, resulting in a growing shortage of related labor. The ever-increasing labor shortage in traditional agriculture has reduced the manual sorting of agricultural products during processing and packaging. Delicate products such as cherry tomatoes pose a severe problem. This study proposes an artificial intelligence of things (AIoT) intelligent production line that leverages deep learning technology, the internet of things, and data analytics for fully automated and efficient 360-degree visual defect detection and classification of cherry tomatoes. By integrating image recognition and AIoT technology, the system can prevent the occurrence of defects during packaging, ensure consistent product quality during grading, and improve the reputation of agricultural producers. We achieved an outstanding mean average precision of 97.4% in the AIoT intelligent production line actual application in defect detection. The results showed that AIoT and intelligent screening plate mechanisms were advantageous for the detection of cherry tomatoes and help promote the development of delicate agricultural products. This study contributed to the development of intelligent agriculture by reducing labor and time costs, quickly detecting defects, effectively controlling sorting quality, and improving crop management through data analysis. Yu-Huei Cheng, Che-Nan Kuo, Yu-Da Lin |
IEEE Internet Things J. | 1 |
| 2023 | Improvement of tasks scheduling algorithm based on load balancing candidate method under cloud computing environment
Mao-Lun Chiang, Hui-Ching Hsieh, Yu-Huei Cheng, Wei-Ling Lin, Bo-Hao Zeng |
Expert Syst. Appl. | 3 |
| 2022 | Multiobjective optimization-driven primer design mechanism: towards user-specified parameters of PCR primerabstractPrimers are critical for polymerase chain reaction (PCR) and influence PCR experimental outcomes. Designing numerous combinations of forward and reverse primers involves various primer constraints, posing a computational challenge. Most PCR primer design methods limit parameters because the available algorithms use general fitness functions. This study designed new fitness functions based on user-specified parameters and used the functions in a primer design approach based on the multiobjective particle swarm optimization (MOPSO) algorithm to address the challenge of primer design with user-specified parameters. Multicriteria evaluation was conducted simultaneously based on primer constraints. The fitness functions were evaluated using 7425 DNA sequences and compared with a predominant primer design approach based on optimization algorithms. Each DNA sequence was run 100 times to calculate the difference between the user-specified parameters and primer constraint values. The algorithms based on fitness functions with user-specified parameters outperformed the algorithms based on general fitness functions for 11 primer constraints. Moreover, MOPSO exhibited superior implementation in all experiments. Practical gel electrophoresis was conducted to verify the PCR experiments and established that MOPSO effectively designs primers based on user-specified parameters. Cheng-Hong Yang 0001, Yu-Huei Cheng, Li-Yeh Chuang, Yu-Da Lin |
Briefings Bioinform. | 2 |
| 2021 | Every edge lies on cycles of folded hypercubes with a pair of faulty adjacent vertices
Che-Nan Kuo, Yu-Huei Cheng |
Discret. Appl. Math. | 2 |
| 2020 | Fault-free cycles embedding in folded hypercubes with F4
Che-Nan Kuo, Yu-Huei Cheng |
Theor. Comput. Sci. | 2 |
| 2019 | Cycles in folded hypercubes with two adjacent faulty vertices
Che-Nan Kuo, Yu-Huei Cheng |
Theor. Comput. Sci. | 2 |
| 2017 | Cycles embedding in folded hypercubes with conditionally faulty vertices
Che-Nan Kuo, Yu-Huei Cheng |
Discret. Appl. Math. | 2 |
| 2017 | Impact of the Real-Time Thermal Loading on the Bulk Electric System ReliabilityabstractThis paper presents a transmission line failure model that is enhanced with the dynamic thermal rating (DTR) system. The failure model consists of two parts. The first part is the Arrhenius model and it considers the loading effect of the DTR system as a result of operating at a higher temperature than the static thermal rating system. The second part is the Weibull model and it considers the end-of-life (natural ageing) failure effect of the transmission line. The proposed model is compared with the normal distribution model that considers only the end-of-life failure effect of the transmission line. This paper also investigates the uncertainty effects of the line failure model parameters, effects of the DTR system reliability, and the effects of the weather data correlation on the reliability performance of the power system. The proposed methodology and case studies were performed on the IEEE-reliability test network. Jiashen Teh, Ching-Ming Lai, Yu-Huei Cheng |
IEEE Trans. Reliab. | 3 |
| 2016 | A Novel Teaching-Learning-Based Optimization for Improved Mutagenic Primer Design in Mismatch PCR-RFLP SNP GenotypingabstractMany single nucleotide polymorphisms (SNPs) for complex genetic diseases are genotyped by polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) in small-scale basic research studies. It is an essential work to design feasible PCR-RFLP primer pair and find out available restriction enzymes to recognize the target SNP for PCR experiments. However, many SNPs are incapable of performing PCR-RFLP makes SNP genotyping become unpractical. A genetic algorithm (GA) had been proposed for designing mutagenic primer and get available restriction enzymes, but it gives an unrefined solution in mutagenic primers. In order to improve the mutagenic primer design, we propose TLBOMPD (TLBO-based Mutagenic Primer Design) a novel computational intelligence-based method that uses the notion of "teaching and learning" to search for more feasible mutagenic primers and provide the latest available restriction enzymes. The original Wallace's formula for the calculation of melting temperature is maintained, and more accurate calculation formulas of GC-based melting temperature and thermodynamic melting temperature are introduced into the proposed method. Mutagenic matrix is also reserved to increase the efficiency of judging a hypothetical mutagenic primer if involve available restriction enzymes for recognizing the target SNP. Furthermore, the core of SNP-RFLPing version 2 is used to enhance the mining work for restriction enzymes based on the latest REBASE. Twenty-five SNPs with mismatch PCR-RFLP screened from 288 SNPs in human SLC6A4 gene are used to appraise the TLBOMPD. Also, the computational results are compared with those of the GAMPD. In the future, the usage of the mutagenic primers in the wet lab needs to been validated carefully to increase the reliability of the method. The TLBOMPD is implemented in JAVA and it is freely available at http://tlbompd.googlecode.com/. Yu-Huei Cheng |
IEEE ACM Trans. Comput. Biol. Bioinform. | 1 |
| 2013 | Drug-SNPing: an integrated drug-based, protein interaction-based tagSNP-based pharmacogenomics platform for SNP genotypingabstractMany drug or single nucleotide polymorphism (SNP)-related resources and tools have been developed, but connecting and integrating them is still a challenge. Here, we describe a user-friendly web-based software package, named Drug-SNPing, which provides a platform for the integration of drug information (DrugBank and PharmGKB), protein-protein interactions (STRING), tagSNP selection (HapMap) and genotyping information (dbSNP, REBASE and SNP500Cancer). DrugBank-based inputs include the following: (i) common name of the drug, (ii) synonym or drug brand name, (iii) gene name (HUGO) and (iv) keywords. PharmGKB-based inputs include the following: (i) gene name (HUGO), (ii) drug name and (iii) disease-related keywords. The output provides drug-related information, metabolizing enzymes and drug targets, as well as protein-protein interaction data. Importantly, tagSNPs of the selected genes are retrieved for genotyping analyses. All drug-based and protein-protein interaction-based SNP genotyping information are provided with PCR-RFLP (PCR-restriction enzyme length polymorphism) and TaqMan probes. Thus, users can enter any drug keywords/brand names to obtain immediate information that is highly relevant to genotyping for pharmacogenomics research. Cheng-Hong Yang 0001, Yu-Huei Cheng, Li-Yeh Chuang, Hsueh-Wei Chang |
Bioinform. | 2 |
| 2012 | Mutagenic Primer Design for Mismatch PCR-RFLP SNP Genotyping Using a Genetic AlgorithmabstractPolymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) is useful in small-scale basic research studies of complex genetic diseases that are associated with single nucleotide polymorphism (SNP). Designing a feasible primer pair is an important work before performing PCR-RFLP for SNP genotyping. However, in many cases, restriction enzymes to discriminate the target SNP resulting in the primer design is not applicable. A mutagenic primer is introduced to solve this problem. GA-based Mismatch PCR-RFLP Primers Design (GAMPD) provides a method that uses a genetic algorithm to search for optimal mutagenic primers and available restriction enzymes from REBASE. In order to improve the efficiency of the proposed method, a mutagenic matrix is employed to judge whether a hypothetical mutagenic primer can discriminate the target SNP by digestion with available restriction enzymes. The available restriction enzymes for the target SNP are mined by the updated core of SNP-RFLPing. GAMPD has been used to simulate the SNPs in the human SLC6A4 gene under different parameter settings and compared with SNP Cutter for mismatch PCR-RFLP primer design. The in silico simulation of the proposed GAMPD program showed that it designs mismatch PCR-RFLP primers. The GAMPD program is implemented in JAVA and is freely available at http://bio.kuas.edu.tw/gampd/. Cheng-Hong Yang 0001, Yu-Huei Cheng, Cheng-Huei Yang, Li-Yeh Chuang |
IEEE ACM Trans. Comput. Biol. Bioinform. | 2 |
| 2010 | Confronting Two-Pair Primer Design Using Particle Swarm Optimization
Cheng-Hong Yang 0001, Yu-Huei Cheng, Li-Yeh Chuang |
ICCCI (3) | 2 |
| 2010 | SNP-RFLPing 2: an updated and integrated PCR-RFLP tool for SNP genotypingabstractBACKGROUND: PCR-restriction fragment length polymorphism (RFLP) assay is a cost-effective method for SNP genotyping and mutation detection, but the manual mining for restriction enzyme sites is challenging and cumbersome. Three years after we constructed SNP-RFLPing, a freely accessible database and analysis tool for restriction enzyme mining of SNPs, significant improvements over the 2006 version have been made and incorporated into the latest version, SNP-RFLPing 2. RESULTS: The primary aim of SNP-RFLPing 2 is to provide comprehensive PCR-RFLP information with multiple functionality about SNPs, such as SNP retrieval to multiple species, different polymorphism types (bi-allelic, tri-allelic, tetra-allelic or indels), gene-centric searching, HapMap tagSNPs, gene ontology-based searching, miRNAs, and SNP500Cancer. The RFLP restriction enzymes and the corresponding PCR primers for the natural and mutagenic types of each SNP are simultaneously analyzed. All the RFLP restriction enzyme prices are also provided to aid selection. Furthermore, the previously encountered updating problems for most SNP related databases are resolved by an on-line retrieval system. CONCLUSIONS: The user interfaces for functional SNP analyses have been substantially improved and integrated. SNP-RFLPing 2 offers a new and user-friendly interface for RFLP genotyping that can be used in association studies and is freely available at http://bio.kuas.edu.tw/snp-rflping2. Hsueh-Wei Chang, Yu-Huei Cheng, Li-Yeh Chuang, Cheng-Hong Yang 0001 |
BMC Bioinform. | 2 |
| 2010 | Confronting two-pair primer design for enzyme-free SNP genotyping based on a genetic algorithmabstractBACKGROUND: Polymerase chain reaction with confronting two-pair primers (PCR-CTPP) method produces allele-specific DNA bands of different lengths by adding four designed primers and it achieves the single nucleotide polymorphism (SNP) genotyping by electrophoresis without further steps. It is a time- and cost-effective SNP genotyping method that has the advantage of simplicity. However, computation of feasible CTPP primers is still challenging. RESULTS: In this study, we propose a GA (genetic algorithm)-based method to design a feasible CTPP primer set to perform a reliable PCR experiment. The SLC6A4 gene was tested with 288 SNPs for dry dock experiments which indicated that the proposed algorithm provides CTPP primers satisfied most primer constraints. One SNP rs12449783 in the SLC6A4 gene was taken as an example for the genotyping experiments using electrophoresis which validated the GA-based design method as providing reliable CTPP primer sets for SNP genotyping. CONCLUSIONS: The GA-based CTPP primer design method provides all forms of estimation for the common primer constraints of PCR-CTPP. The GA-CTPP program is implemented in JAVA and a user-friendly input interface is freely available at http://bio.kuas.edu.tw/ga-ctpp/. Cheng-Hong Yang 0001, Yu-Huei Cheng, Li-Yeh Chuang, Hsueh-Wei Chang |
BMC Bioinform. | 2 |
| 2009 | Genetic Algorithm for the Design of Confronting Two-Pair PrimersabstractMany single nucleotide polymorphisms (SNPs) genotyping techniques have been developed but most of them are expensive. Polymerase chain reaction with confronting two-pair primers (PCR-CTPP) is a restriction enzyme-free and economic genotyping but its primer design is still computationally challenged. Here, we introduced a genetic algorithm (GA)-based PCR-CTPP primer design method. Thirty SNPs of the Janus kinase 2 gene with their SNP flanking length for 500 bps were tested. These GA-based designing CTPP primers were characterized with close values for melting temperature (Tm) and specificity, and their corresponding PCR products were provided with the optimal length. In conclusion, this novel PCR-CTPP primer designing method provides the computation for the primer information of cost- and time-effective enzyme-free SNP genotyping. Cheng-Hong Yang 0001, Yu-Huei Cheng, Li-Yeh Chuang, Hsueh-Wei Chang |
BIBE | 2 |
| 2009 | Fuzzy adaptive particle swarm optimization for a specific primer design problemabstractA fuzzy system with dynamically adapt the inertia weight of the particle swarm optimization (FAPSO) had been implemented to select a specific feasible primer pair for PCR experiments. Overall, fifty accession nucleotide sequences between 1900 bps and 2100 bps were sampled for primer design with specific PCR product lengths of 150~300 bps and 500~800 bps. Total five hundred runs of the proposed primer design approaches were performed for each accession nucleotide sequence to calculate the optimum accuracy. The proposed approach is compared to standard PSO primer design method. The results generated in a dry dock experiment showed that the FAPSO primer design yielded approximately optimal primer sets and had a relatively short CPU-time than standard PSO. Related materials are available online at http://bio.kuas.edu.tw/fapso-pd/. Cheng-Hong Yang 0001, Yu-Huei Cheng, Hsueh-Wei Chang, Li-Yeh Chuang |
FUZZ-IEEE | 2 |
| 2006 | V-MitoSNP: visualization of human mitochondrial SNPsabstractBACKGROUND: Mitochondrial single nucleotide polymorphisms (mtSNPs) constitute important data when trying to shed some light on human diseases and cancers. Unfortunately, providing relevant mtSNP genotyping information in mtDNA databases in a neatly organized and transparent visual manner still remains a challenge. Amongst the many methods reported for SNP genotyping, determining the restriction fragment length polymorphisms (RFLPs) is still one of the most convenient and cost-saving methods. In this study, we prepared the visualization of the mtDNA genome in a way, which integrates the RFLP genotyping information with mitochondria related cancers and diseases in a user-friendly, intuitive and interactive manner. The inherent problem associated with mtDNA sequences in BLAST of the NCBI database was also solved. DESCRIPTION: V-MitoSNP provides complete mtSNP information for four different kinds of inputs: (1) color-coded visual input by selecting genes of interest on the genome graph, (2) keyword search by locus, disease and mtSNP rs# ID, (3) visualized input of nucleotide range by clicking the selected region of the mtDNA sequence, and (4) sequences mtBLAST. The V-MitoSNP output provides 500 bp (base pairs) flanking sequences for each SNP coupled with the RFLP enzyme and the corresponding natural or mismatched primer sets. The output format enables users to see the SNP genotype pattern of the RFLP by virtual electrophoresis of each mtSNP. The rate of successful design of enzymes and primers for RFLPs in all mtSNPs was 99.1%. The RFLP information was validated by actual agarose electrophoresis and showed successful results for all mtSNPs tested. The mtBLAST function in V-MitoSNP provides the gene information within the input sequence rather than providing the complete mitochondrial chromosome as in the NCBI BLAST database. All mtSNPs with rs number entries in NCBI are integrated in the corresponding SNP in V-MitoSNP. CONCLUSION: V-MitoSNP is a web-based software platform that provides a user-friendly and interactive interface for mtSNP information, especially with regard to RFLP genotyping. Visual input and output coupled with integrated mtSNP information from MITOMAP and NCBI make V-MitoSNP an ideal and complete visualization interface for human mtSNPs association studies. Li-Yeh Chuang, Cheng-Hong Yang 0001, Yu-Huei Cheng, De-Leung Gu, Phei-Lang Chang, Ke-Hung Tsui, Hsueh-Wei Chang |
BMC Bioinform. | 3 |