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| 1 | Effects of Huatan Tongluo decoction on vascular endothelial growth factor receptor 2 expression in synovial tissues of rats with collagen-induced arthritis显示文摘OBJECTIVE: To determine the therapeutic effect and potential mechanism of Huatan Tongluo decoction on rats with collagen-induced arthritis.METHODS: Forty specific pathogen-free Wistar rats were selected, and 10 were randomly selected as the control(group 1). The remaining rats were injected intradermally with emulsified type Ⅱ bovine collagen at the tail base and back, followed by a booster 7 d post first immunization. After establishing collagen-induced arthritis(CIA), rats were randomly divided into three groups(n = 10). The rats were treated orally for 30 d as follows: group 1, saline; group 2, model(saline); group 3, tripterygium polyglycoside(TP; 7.81 mg/kg, positive control);group 4, Huatan Tongluo decoction(HTTL; 7.5 g/kg). Body weight, ankle swelling and arthritis index were measured over the course of the study. The rats were sacrificed 30 d after treatment. Morphological changes in the synovium were observed by hematoxylin and eosin staining. Pannus formation and synovial thickness in the left ankle were observed by color Doppler ultrasoundVascular endothelial growth factor(VEGF) and VEGFR2 protein levels were measured by immunohistochemistry.VEGF/VEGFR2 mRNA levels were measured by real-time quantitative polymerase chain reaction.RESULTS: Compared with the model group, a significantly lower arthritis index was observed in the positive control group(P < 0.05) and HTTL group(P < 0.01), after treatment. Both positive control and HTTL reduced intra-articular pannus formation and synovial thickening. Furthermore, VEGF mRNA,and VEGFR2 protein and mRNA levels were significantly downregulated(P < 0.05) in the treatment groups.CONCLUSION: Inhibition of the expression of VEGF and VEGFR2 in synovial tissues and the formation of pannus and synovial hyperplasia may be part of the mechanism of HTTL for relieving the symptoms of rheumatoid arthritis in CIA rats. | Chen Jinchun Qiu Mingshan Li Yihan Zhang Qian Zhang Yiyan Lin Shuangjie Zhang Shaohong Qian Lixia Gao Hai Li Liang-cheng | 2019 | Journal of Traditional Chinese Medicine2019,39,2: | 4 |
| 2 | Revealing complex optical phenomena through vectorial metrics显示文摘Advances in vectorial polarization-resolved imaging are bringing new capabilities to applications ranging from fundamental physics through to clinical diagnosis.Imaging polarimetry requires determination of the Mueller matrix(MM)at every point,providing a complete description of an object’s vectorial properties.Despite forming a comprehensive representation,the MM does not usually provide easily interpretable information about the object’s internal structure.Certain simpler vectorial metrics are derived from subsets of the MM elements.These metrics permit extraction of signatures that provide direct indicators of hidden optical properties of complex systems,while featuring an intriguing asymmetry about what information can or cannot be inferred via these metrics.We harness such characteristics to reveal the spin Hall effect of light,infer microscopic structure within laser-written photonic waveguides,and conduct rapid pathological diagnosis through analysis of healthy and cancerous tissue.This provides new insight for the broader usage of such asymmetric inferred vectorial information. | Chao He Jintao Chang Patrick S.Salter Yuanxing Shen Ben Dai Pengcheng Li Yihan Jin Samlan Chandran Thodik Mengmeng Li Aziz Tariq Jingyu Wang Jacopo Antonello Yang Dong Ji Qi Jianyu Lin Daniel S.Elson Min Zhang Honghui He Hui Ma Martin J.Booth | 2022 | Advanced Photonics2022,4,2: | 2 |
| 3 | Low-temperature solid oxide fuel cells with novel La 0.6 Sr 0.4 Co 0.8 Cu 0.2 O 3? δ perovskite cathode and functional graded anode显示文摘 | Bin Lin Jinfan Chen Yihan Ling Xiaozhen Zhang Yinzhu Jiang Ling Zhao Xingqin Liu Guangyao Meng | 2009 | Journal of Power Sources2009,,6: | 1 |
| 4 | Fabrication of a bio-instructive scaffold conferred with a favorable microenvironment allowing for superior implant osseointegration and accelerated in situ vascularized bone regeneration via type H vessel formation显示文摘The potential translation of bio-inert polymer scaffolds as bone substitutes is limited by the lack of neovascularization upon implantation and subsequently diminished ingrowth of host bone,most likely resulted from the inability to replicate appropriate endogenous crosstalk between cells.Human umbilical vein endothelial cell-derived decellularized extracellular matrix(HdECM),which contains a collection of angiocrine biomolecules,has recently been demonstrated to mediate endothelial cells(ECs)-osteoprogenitors(OPs)crosstalk.We employed the HdECM to create a PCL(polycaprolactone)/fibrin/HdECM(PFE)hybrid scaffold.We hypothesized PFE scaffold could reconstitute a bio-instructive microenvironment that reintroduces the crosstalk,resulting in vascularized bone regeneration.Following implantation in a rat femoral bone defect,the PFE scaffold demonstrated early vascular infiltration and enhanced bone regeneration by microangiography(μ-AG)and micro-computational tomography(μ-CT).Based on the immunofluorescence studies,PFE mediated the endogenous angiogenesis and osteogenesis with a substantial number of type H vessels and osteoprogenitors.In addition,superior osseointegration was observed by a direct host bone-PCL interface,which was likely attributed to the formation of type H vessels.The bio-instructive microenvironment created by our innovative PFE scaffold made possible superior osseointegration and type H vessel-related bone regeneration.It could become an alternative solution of improving the osseointegration of bone substitutes with the help of induced type H vessels,which could compensate for the inherent biological inertness of synthetic polymers. | Yijun He Wenhao Wang Shaozhang Lin Yixi Yang Lizhi Song Yihan Jing Lihao Chen Zaopeng He Wei Li Ao Xiong Kelvin W.K.Yeung Qi Zhao Yuan Jiang Zijie Li Guoxian Pei Zhi-Yong Zhang | 2022 | Bioactive Materials2022,7,3: | 1 |
| 5 | Functional group differentiation of isomeric solvents enables distinct zinc anode chemistry显示文摘Electrolytes hold the key to realizing reliable zinc(Zn)anodes.Divergent organic molecules have been proven effective in stabilizing Zn anodes;however,irrational comparisons exist due to the uncontrolled molecular weights and functional group amounts.In this work,two“isomeric molecules”:1,2-dimethoxyethane(DME)and 1-methoxy-2-propanol(PM),with identical molecular weights but different functional groups,have been studied as co-solvents in electrolytes,which have delivered distinct electrochemical performance.Experimental and simulative study indicates the dipole moment induced by the hydroxyl groups in PM(higher molecular polarity than ether groups in DME)reconstructs the space charge region,enhances the concentration of Zn^(2+)in the vicinity of Zn anodes,and in-situ derives different solid electrolyte interphase(SEI)models and electrode-electrolyte interfaces,resulting in exceptional cycling stability.Remarkably,the Zn||Cu cell with PM worked over 2000 cycles with high Coulombic efficiency(CE)of 99.7%.The Zn||Zn symmetric cell cycled over 2000 h at 1 mA·cm^(−2),and showed excellent stability at an ultrahigh current density of 10 mA·cm^(−2)and capacity of 20 mAh·cm^(−2)over 200 h(depth of discharge,DOD of 70%).The Zn||sodium vanadate pouch cell with a high mass loading of 6.3 mg·cm^(−2)and a high capacity of 24 mAh demonstrates superior cyclability after 570 h.This work can be a good starting point to provide reliable guidance on electrolyte design for practical aqueous Zn batteries. | Chao Liu Qing Li Yilun Lin Zhiquan Wei Yihan Yang Cuiping Han Minshen Zhu Haiyan Zhang Hongfei Li | 2023 | Nano Research Energy2023,2,2: | 1 |
| 6 | Continuous Preparation of Chitosan‑Based Self‑Powered Sensing Fibers Recycled from Wasted Materials for Smart Home Applications显示文摘Currently,the gradual depletion of fossil resources and the large amount of plastic waste are causing serious harm to the land and marine ecology.The rapid development of wearable smart fibers is accompanied by rapid growth in the material demand for fibers,and the development of green and high-performance biomass-based fibers has become an important research topic to reduce the dependence on synthetic fiber materials and the harm to the environment.Here,chitosan is first prepared from the waste material by chemical methods.Then the chitosan-based self-powered induction fibers are prepared by electrospinning core wire technique.Chitosan-based self-powered sensing fiber is ultra-light and flexible,which can achieve about 2500 collisions without damaging the surface.Chitosan-based self-powered sensing fiber can also be used in smart home sensing applications to control home appliance switches with a light touch,which has a great application prospect in smart home and wearable fields. | Yingying Li Chuanhui Wei Yang Jiang Renwei Cheng Yihan Zhang Chuan Ning Kai Dong Zhong Lin Wang | 2022 | Advanced Fiber Materials2022,4,6: | 1 |
| 7 | Highly permeable porousYSZ hollow fiber membrane prepared using ethanol as exlernal coag-ulant 显示文摘 | Zhang Xiaozhen Lin Bin jng Yihanal | 2010 | Journal of Alloys and Compounds2010,494,: | 1 |
| 8 | Efficient plant regeneration and Agrobacterium mediated transformation in Medicago and Trifolium species显示文摘 | Ding Yonglin Guillermo Aldao-Humble Emma Ludlow Michelle Drayton LIN Yihan Jutta Nagel Mark Dupal Guiqin Zhao Charles Pallaghy Roger Kalla Michael Emmerling German Spangenberg | 2003 | Plant Science2003,,165: | 1 |
| 9 | Underwater Monitoring Networks Based on Cable-Structured Triboelectric Nanogenerators显示文摘The importance ofocean exploration and underwater monitoring is becoming vital,due to the abundant biological,mineral energy,and other resources in the ocean.Here,a self-powered underwater cable-based triboelectric nanogenerator(TENG)is demonstrated for underwater monitoring of mechanical motion/triggering as wllas searching and rescuing inthe sea.Using a novel double-layer winding method combined with ferroelectric polarization,a self-powered cable-structured sensor with a stable electrical output has been manufactured,which can accurately respond to a variety of external mechanical stimuli.A self-powered cable sensing network woven using smart cables can comprehensively transmit information,such as the plane osition anddivedhofasumersbeMorereiely,can analyzeitsdrtionfmovemnt,seedand pathaong w transmiting information such as the submersible's size and momentum.The developed self-powered sensor based on the cable-based TENG not only has low cost and simple structure but also exhibits working accuracy and stability.Finally,the proposed work provides new ideas for future seabed exploration and ocean monitoring. | Yihan Zhang Yingying Li Renwei Cheng Shen Shen Jia Yi Xiao Peng Chuan Ning Kai Dong Zhong Lin Wang | 2022 | Research2022,,2: | 0 |
| 10 | VEGF-B prevents excessive angiogenesis by inhibiting FGF2/FGFR1 pathway显示文摘Although VEGF-B was discovered as a VEGF-A homolog a long time ago,the angiogenic effect of VEGF-B remains poorly understood with limited and diverse findings from different groups.Notwithstanding,drugs that inhibit VEGF-B together with other VEGF family members are being used to treat patients with various neovascular diseases.It is therefore critical to have a better understanding of the angiogenic effect of VEGF-B and the underlying mechanisms.Using comprehensive in vitro and in vivo methods and models,we reveal here for the first time an unexpected and surprising function of VEGF-B as an endogenous inhibitor of angiogenesis by inhibiting the FGF2/FGFR1 pathway when the latter is abundantly expressed.Mechanistically,we unveil that VEGF-B binds to FGFR1,induces FGFR1/VEGFR1 complex formation,and suppresses FGF2-induced Erk activation,and inhibits FGF2-driven angiogenesis and tumor growth.Our work uncovers a previously unrecognized novel function of VEGF-B in tethering the FGF2/FGFR1 pathway.Given the anti-angiogenic nature of VEGF-B under conditions of high FGF2/FGFR1 levels,caution is warranted when modulating VEGF-B activity to treat neovascular diseases. | Chunsik Lee Rongyuan Chen Guangli Sun Xialin Liu Xianchai Lin Chang He Liying Xing Lixian Liu Lasse DJensen Anil Kumar Harald FLanger Xiangrong Ren Jianing Zhang Lijuan Huang Xiangke Yin JongKyong Kim Juanhua Zhu Guanqun Huang Jiani Li Weiwei Lu Wei Chen Juanxi Liu Jiaxin Hu Qihang Sun Weisi Lu Lekun Fang Shasha Wang Haiqing Kuang Yihan Zhang Geng Tian Jia Mi Bi-Ang Kang Masashi Narazaki Aaron Prodeus Luc Schoonjans David MOrnitz Jean Gariepy Guy Eelen Mieke Dewerchin Yunlong Yang Jing-Song Ou Antonio Mora Jin Yao Chen Zhao Yizhi Liu Peter Carmeliet Yihai Cao Xuri Li | 2023 | Signal Transduction and Targeted Therapy2023,8,9: | 0 |
| 11 | A novel monoacylglycerol lipase-targeted^(18)F-labeled probe for positron emission tomography imaging of brown adipose tissue in the energy network显示文摘Monoacylglycerol lipase(MAGL)constitutes a serine hydrolase that orchestrates endocannabinoid homeostasis and exerts its function by catalyzing the degradation of 2-arachidonoylglycerol(2-AG)to arachidonic acid(AA).As such,selective inhibition of MAGL represents a potential therapeutic and diagnostic approach to various pathologies including neurodegenerative disorders,metabolic diseases and cancers.Based on a unique 4-piperidinyl azetidine diamide scaffold,we developed a reversible and peripheral-specific radiofluorinated MAGL PET ligand[^(18)F]FEPAD.Pharmacokinetics and binding studies on[^(18)F]FEPAD revealed its outstanding specificity and selectivity towards MAGL in brown adipose tissue(BAT)–a tissue that is known to be metabolically active.We employed[^(18)F]FEPAD in PET studies to assess the abundancy of MAGL in BAT deposits of mice and found a remarkable degree of specific tracer binding in the BAT,which was confirmed by post-mortem tissue analysis.Given the negative regulation of endocannabinoids on the metabolic BAT activity,our study supports the concept that dysregulation of MAGL is likely linked to metabolic disorders.Further,we now provide a suitable imaging tool that allows non-invasive assessment of MAGL in BAT deposits,thereby paving the way for detailed mechanistic studies on the role of BAT in endocannabinoid system(ECS)-related pathologies. | Ran Cheng Masayuki Fujinaga Jing Yang Jian Rong Ahmed Haider Daisuke Ogasawara Richard S.Van Tuo Shao Zhen Chen Xiaofei Zhang Erick R.Calderon Leon Yiding Zhang Wakana Mori Katsushi Kumata Tomoteru Yamasaki Lin Xie Shaofa Sun Lu Wang Chongzhao Ran Yihan Shao Benjamin Cravatt Lee Josephson Ming-Rong Zhang Steven H.Liang | 2022 | Acta Pharmacologica Sinica2022,43,11: | 0 |
| 12 | Spatiotemporal Input Control:Leveraging Temporal Variation in Network Dynamics显示文摘The number of available control sources is a limiting factor to many network control tasks.A lack of input sources can result in compromised controllability and/or sub-optimal network performance,as noted in engineering applications such as the smart grids.The mechanism can be explained by a linear timeinvariant model,where structural controllability sets a lower bound on the number of required sources.Inspired by the ubiquity of time-varying topologies in the real world,we propose the strategy of spatiotemporal input control to overcome the source-related limit by exploiting temporal variation of the network topology.We theoretically prove that under this regime,the required number of sources can always be reduced to 2.It is further shown that the cost of control depends on two hyperparameters,the numbers of sources and intervals,in a trade-off fashion.As a demonstration,we achieve controllability over a complex network resembling the nervous system of Caenorhabditis elegans using as few as 6%of the sources predicted by a static control model.This example underlines the potential of utilizing topological variation in complex network control problems. | Yihan Lin Jiawei Sun Guoqi Li Gaoxi Xiao Changyun Wen Lei Deng H.Eugene Stanley | 2022 | IEEE/CAA Journal of Automatica Sinica2022,9,4: | 0 |
| 13 | Towards overcoming obstacles of type Ⅱ photodynamic therapy:Endogenous production of light,photosensitizer,and oxygen显示文摘Conventional photodynamic therapy(PDT)approaches face challenges including limited light penetration,low uptake of photosensitizers by tumors,and lack of oxygen in tumor microenvironments.One promising solution is to internally generate light,photosensitizers,and oxygen.This can be accomplished through endogenous production,such as using bioluminescence as an endogenous light source,synthesizing genetically encodable photosensitizers in situ,and modifying cells genetically to express catalase enzymes.Furthermore,these strategies have been reinforced by the recent rapid advancements in synthetic biology.In this review,we summarize and discuss the approaches to overcome PDT obstacles by means of endogenous production of excitation light,photosensitizers,and oxygen.We envision that as synthetic biology advances,genetically engineered cells could act as precise and targeted“living factories”to produce PDT components,leading to enhanced performance of PDT. | Lin Yu Zhen Liu Wei Xu Kai Jin Jinliang Liu Xiaohui Zhu Yong Zhang Yihan Wu | 2024 | Acta Pharmaceutica Sinica B2024,14,3: | 0 |
| 14 | A Pore-Forming Strategy Toward Porous Carbon-Based Substrates for High Performance Flexible Lithium Metal Full Batteries显示文摘Self-standing carbon-based substrates with satisfied structural stability and property adjustability have promising applications in flexible lithium(Li)metal batteries(FLMBs).Current strategies for modifying carbon materials are normally carried out on powder carbon,and very few of them are suitable for self-standing carbon substrates.Herein,a pore-forming strategy based on the redox chemistry of metallic oxide nanodots is developed to prepare two porous carbon substrates for anode and cathode.Starting with cotton cloth,the resulting hollow carbon fibers substrate with nanopores effectively prevents from Li dendrites formation and large volume change in lithium metal anode(LMA).Simulations indicate that the porous structure leads to homogeneous ion flux,Li-ion concentration,and electric field during Li deposition.Li symmetrical cell based on this substrate remains stable for 8300 h with an ultralow voltage hysteresis of 9 mV.Via a similar route,porous carbon cloth substrate is obtained for subsequently seeding V_(2)O_(5)nanowires to prepare the cathode.The assembled FLMBs pouch cell delivers a capacity of 8.2 mAh with a high capacity retention of~100%even under dramatic deformation.The demonstrated strategy has far-reaching potential in preparing free-standing porous carbon-based materials for flexible energy storage devices. | Yanfei Li Shuyang Ye Jian Lin Yihan Song Xinglong Wu Jingping Zhang Changlu Shao Zhongmin Su Haizhu Sun Dwight S.Seferos | 2023 | Energy & Environmental Materials2023,6,3: | 0 |
| 15 | Quantitative Biology 2019: Dynamic Signaling in Cells and Embryos显示文摘The International Conference on'Quantitative Biology 2019:Dynamic Signaling in Cells and Embryos'was successfully held at Dongshan Hotel,Yantai,China,from June 22nd to 24th.The conference was co-sponsored by the Center for Quantitative Biology(CQB)of Peking University and Yantai University and was organized by Prof.Chao Tang,Prof.Feng Liu,and Prof.Yihan Lin from Peking University,China,Prof.Michael B.Elowitz from Caltech,USA,and Prof.Yibao Chen and Prof.Xuran Wu from Yantai University,China.Totally 26 experts in the field of quantitative biology were invited to deliver talks from Canada,China,France,Germany,Israel,Japan,Singapore,South Korea,Spain,and United States.A total of 267 researchers worldwide attended the conference,and participated in diverse conference activities,including invited and contributed talks,flash talks,poster presentations,and panel discussions. | Feng Liu Yihan Lin Chunmei Li Miaomiao Tian | 2019 | Quantitative Biology2019,7,4: | 0 |
| 16 | Investigating the reason for high FF from ternary organic solar cells显示文摘Organic solar cells(OSCs)have attracted huge attention because of their unique merits[1−3].In last few years,thanks to the design of new materials and device engineering,the power conversion efficiencies(PCEs)of OSCs have surpassed 18%[4−8].The PM6:Y6 cells are efficient binary cells,offering high PCEs over 16%[9−11].The high performance originates from the efficient free charge generation and the ground state dipole field at the donor-acceptor interface that promotes the exciton dissociation[12]. | Danqin Li Yihan Zeng Zeng Chen Shifeng Leng Zuo Xiao Qifan Xue Tianyu Hao Meng Lv Hongbo Wu Lina Lin Jianming Yang Zaifei Ma Jinquan Chen Rong Huang Feng Liu Haiming Zhu Xianjie Liu Liming Ding Mats Fahlman Qinye Bao | 2021 | Journal of Semiconductors2021,42,9: | 0 |
| 17 | Effects of Wuling Powder Mediating Notch Pathway on Mice with Nephrotic Syndrome显示文摘[Objectives]This study was conducted to investigate the renal protective effects of Wuling Powder on mice with nephrotic syndrome(NS)based on Notch pathway.[Methods]Sixty KM mice were randomly divided into normal group,model group,prednisone acetate positive group,high-dose Wuling Powder group,medium-dose Wuling Power group and low-dose Wuling Power group,with 10 mice in each group.Three days after prophylactic administration,a comprehensive nephropathy model was prepared by injecting 1 mg/ml doxorubicin hydrochloride solution(7.5 mg/kg)into the tail vein.After successful modeling,prednisone acetate and Wuling SAN were given high,medium and low doses for intervention for 28 d,respectively.After that,urinary protein and creatinine contents of mice in each group were detected,and pathological damage of renal tissue was observed by HE and Masson staining.The mRNA levels of Notch1,Jagged1 and Hes1 in mouse kidney tissues were detected by RT-PCR,and the expression levels of Notch1,Jagged1 and Hes1 proteins were detected by Western blot.[Results]Wuling Powder could effectively reduce the contents of urine protein(P<0.01)and Scr(P<0.01)in NS mice,and alleviate the pathological injury of kidney.Compared with the model group,the prednisone acetate group and various Wuling Powder groups could down-regulate the expressions of Notch1,Jagged1 and Hes1 mRNA in the kidney tissue of mice(P<0.01),and the expression of Notch1 protein in the renal tissue of mice decreased(P<0.01).The contents of Hes1 in the prednisone acetate group and the high-and medium-dose Wuling Powder groups significantly decreased(P<0.05).[Conclusions]Wuling Powder could protect the kidneys in mice with NS through Notch pathway. | Luotong JING Yihan LI Honglanxi LI Wenyan ZHANG Lin QIN Ning LIANG | 2023 | Agricultural Biotechnology2023,12,6: | 0 |
| 18 | Literature Review on the Impact of Blockchain Technology on Resource Allocation Efficiency显示文摘With the rapid development of Internet technology,the importance of blockchain technology has become increasingly prominent.Faced with this situation,extensive research has been carried out at home and abroad.Through the analysis of relevant literature on blockchain in recent years,it is found that there are many research results of blockchain technology in medical care,finance,education,etc.,but its application in the field of resource allocation efficiency is rare.From the existing studies on the influencing factors of resource allocation efficiency in China,it is found that there are significant differences in resource allocation efficiency between China and some developed countries or between various provinces and cities of China. | Nuoya LIN Li'nan JIN Jiaming LI Xiaofei LI Yihan XU | 2022 | Asian Agricultural Research2022,14,6: | 0 |
| 19 | The facile preparation of p-(methoxy)calix[n]arenes(n=6,7,or 8)and their permethylated derivatives显示文摘The mixture of p-(methoxy)calix[n]arenes(n=6,7 or 8)was prepared in one step from p-methoxyphenol under basic conditions,and their fully methylated derivatives p-(dimethyloxy)calix[n]arenes(n=6,7 or 8)were also prepared and purified by column chromatography to indentify their structures.In this process,the single crystal of p-(dimethyloxy)calix[7]arene was obtained and its structure was confirmed.The proportion of p-(methoxy)calix[6]-,[7]-and[8]-arenes in the mixture obtained from the reaction was investigated under different reaction conditions,and p-(methoxy)calix[6]-and[8]-arenes could be separated from the mixture by solvent extraction.In addition,the host-guest interaction of p-(dimethyloxy)calix[6]arene with methyl-4,4′-bipyridinium hexafluorophosphate in organic solvents was investigated. | Yihan Ding Jianmin Jiao Baobao Sun Zhen Yang Chen Lin Leyong Wang | 2021 | Chinese Chemical Letters2021,32,11: | 0 |
| 20 | A low-carbon economic dispatch model for electricity market with wind power based on improved ant-lion optimisation algorithm显示文摘Introducing carbon trading into electricity market can convert carbon dioxide into schedulable resources with economic value.However,the randomness of wind power generation puts forward higher requirements for electricity market transactions.Therefore,the carbon trading market is introduced into the wind power market,and a new form of low-carbon economic dispatch model is developed.First,the economic dispatch goal of wind power is be considered.It is projected to save money and reduce the cost of power generation for the system.The model includes risk operating costs to account for the impact of wind power output variability on the system,as well as wind farm negative efficiency operating costs to account for the loss caused by wind abandonment.The model also employs carbon trading market metrics to achieve the goal of lowering system carbon emissions,and analyze the impact of different carbon trading prices on the system.A low-carbon economic dispatch model for the wind power market is implemented based on the following two goals.Finally,the solution is optimised using the Ant-lion optimisation method,which combines Levi's flight mechanism and golden sine.The proposed model and algorithm's rationality is proven through the use of cases. | Renwu Yan Yihan Lin Ning Yu Yi Wu | 2023 | CAAI Transactions on Intelligence Technology2023,8,1: | 0 |