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4篇 您的检索式:作者名="Chao Kit"
    题名 作者 年代 出处 被引量
1A low-carbon oriented probabilistic approach for transmission expansion planning显示文摘Following the deregulation of the power industry,transmission expansion planning(TEP)has become more complicated due to the presence of uncertainties and conflicting objectives in a market environment.Also,the growing concern on global warming highlights the importance of considering carbon pricing policies during TEP.In this paper,a probabilistic TEP approach is proposed with the integration of a chance constrained load curtailment index.The formulated dynamic programming problem is solved by a hybrid solution algorithm in an iterative process.The performance of our approach is demonstrated by case studies on a modified IEEE 14-bus system.Simulation results prove that our approach can provide network planners with comprehensive information regarding effects of uncertainties on TEP schemes,allowing them to adjust planning strategies based on their risk aversion levels or financial constraints.Jing QIU Zhaoyang DONG Junhua ZHAO Ke MENG Fengji LUO Kit Po WONG Chao LU 2015Journal of Modern Power Systems and Clean Energy2015,3,1:8
2Lyso- phosphatidic acid up-regulates expression of growth-regulated oncogene-alpha, interleuldn-8, and monocyte chemoattractant protein-1 in human first-trimester trophoblasts:possible roles in angiogenesis and immune regulation 显示文摘Chen SU Chou CH Chao Kit Lee H Lin CW Lu HF 2010Endocrinology2010,151,1:1
3Pterostilbene, a bioactive component of blueberries, suppresses the generation of breast cancer stem cells within tumor microenvironment and metastasis via modulating NF ‐κ B /microRNA 448 circuit显示文摘Ka‐Kit Mak Alexander T. H. Wu Wei‐Hwa Lee Tung‐Cheng Chang Jeng‐Fong Chiou Liang‐Shun Wang Chih‐Hsiung Wu Chi‐Ying F. Huang Yi‐Shing Shieh Tsu‐Yi Chao Chi‐Tang Ho Gow‐Chin Yen Chi‐Tai Yeh 2013Mol Nutr Food Res2013,,7:1
4A monolithic InP/SOI platform for integrated photonics显示文摘The deployment of photonic integrated circuits(PICs)necessitates an integration platform that is scalable,high-throughput,cost-effective,and power-efficient.Here we present a monolithic InP on SOI platform to synergize the advantages of two mainstream photonic integration platforms:Si photonics and InP photonics.This monolithic InP/SOI platform is realized through the selective growth of both InP sub-micron wires and large dimension InP membranes on industry-standard(001)-oriented silicon-on-insulator(SOI)wafers.The epitaxial InP is in-plane,dislocation-free,site-controlled,intimately positioned with the Si device layer,and placed right on top of the buried oxide layer to form“InP-on-insulator”.These attributes allow for the realization of various photonic functionalities using the epitaxial InP,with efficient light interfacing between the III-V devices and the Si-based waveguides.We exemplify the potential of this InP/SOI platform for integrated photonics through the demonstration of lasers with different cavity designs including subwavelength wires,square cavities,and micro-disks.Our results here mark a critical step forward towards fully-integrated Si-based PICs.Zhao Yan Yu Han Liying Lin Ying Xue Chao Ma Wai Kit Ng Kam Sing Wong Kei May Lau 2021Light(Science & Applications)2021,10,11:0
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