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12篇 您的检索式:作者名="KUMAHS"
    题名 作者 年代 出处 被引量
1Mapping single-crystal dendritic microstructure and defects in nickel-base superalloys with synchrotron radiation 显示文摘Husseini N S Kumah D P Yi J Z 2008Acta Materialia2008,56,17:1
2Novel aro-matic ester from piper longum and its analogues inhibitexpression of cell adhesion molecules on endothelial cells显示文摘KUMAHS ARYA P MUKHERJEE C 2005Biochemistry2005,44,15:1
3A trial of a group A plus group C meningococcal polysaccharide-protein conjugate vaccine in African infants显示文摘Twumasi PA Kumah S Leach A 1995J Infect Dis1995,171,:1
4Induction of immunologic memory in Gambian children by vaccination in infancy with a group A plus group C meningococeal polysaccharide -protein conjugate vaccine显示文摘Leach A Twumasi PA Kumah S 1997J Infect Dis1997,175,:1
5Mapping single crystal dendritic microstructure and defects in Nickel-base superalloys with synchrotron radiation显示文摘Husseini N S Kumah D P Yi J Z 2008Acta Materialia2008,56,17:1
6Commodity price shocks and the odds on fiscal performance:a structural VAR approach显示文摘Kumah F Y Matovu J M 2005IMF Working Paper2005,,8:1
7Reduced placental FOXP3 associated with subsequent infant allergic disease 显示文摘Prescott SL Tulic M Kumah AO 2011J Al- lergy Clin Immunol2011,128,4:1
8Functional evaluation of p53 and PTEN gene mutations in gliomas 显示文摘Kato H Kato S Kumahe T 2000Clin Cancer Res2000,6,10:1
9Active silicon integrated nanophotonics: fer- roelectric BaTiO3 devices 显示文摘Xiong C Pernice W H Ngai J H Reiner J W Kumah D Walker F J Ahn C H Tang H X 2014Nano Lett2014,14,3:1
10Mapping single-crystal dendritic microstructure and defects in nickel-base superalloys with synchrotron radiation 显示文摘Husseini N S Kumah D P Yi J Z 2008Acta Materialia2008,56,17:1
11Minimum apparent dif- fusion coefficient is significantly correlated with cellularity in medulloblastomas显示文摘Yamashita Y Kumahe T Higano S 2009Neurol Res2009,31,9:1
12A Review of the Current Task Offloading Algorithms,Strategies and Approach in Edge Computing Systems显示文摘Task offloading is an important concept for edge computing and the Internet of Things(IoT)because computationintensive tasksmust beoffloaded tomore resource-powerful remote devices.Taskoffloading has several advantages,including increased battery life,lower latency,and better application performance.A task offloading method determines whether sections of the full application should be run locally or offloaded for execution remotely.The offloading choice problem is influenced by several factors,including application properties,network conditions,hardware features,and mobility,influencing the offloading system’s operational environment.This study provides a thorough examination of current task offloading and resource allocation in edge computing,covering offloading strategies,algorithms,and factors that influence offloading.Full offloading and partial offloading strategies are the two types of offloading strategies.The algorithms for task offloading and resource allocation are then categorized into two parts:machine learning algorithms and non-machine learning algorithms.We examine and elaborate on algorithms like Supervised Learning,Unsupervised Learning,and Reinforcement Learning(RL)under machine learning.Under the non-machine learning algorithm,we elaborate on algorithms like non(convex)optimization,Lyapunov optimization,Game theory,Heuristic Algorithm,Dynamic Voltage Scaling,Gibbs Sampling,and Generalized Benders Decomposition(GBD).Finally,we highlight and discuss some research challenges and issues in edge computing.Abednego Acheampong Yiwen Zhang Xiaolong Xu Daniel Appiah Kumah 2023Computer Modeling in Engineering & Sciences2023,,1:0
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