English  |  正體中文  |  简体中文  |  Post-Print筆數 : 27 |  Items with full text/Total items : 110119/141062 (78%)
Visitors : 46480253      Online Users : 409
RC Version 6.0 © Powered By DSPACE, MIT. Enhanced by NTU Library IR team.
Scope Tips:
  • please add "double quotation mark" for query phrases to get precise results
  • please goto advance search for comprehansive author search
  • Adv. Search
    HomeLoginUploadHelpAboutAdminister Goto mobile version
    Please use this identifier to cite or link to this item: https://nccur.lib.nccu.edu.tw/handle/140.119/141250


    Title: 替代能源直購市場創建對生產效率影響
    Market Creation of Direct Purchase in Clean Energies and Its Impacts on Misallocation
    Authors: 蔡宜庭
    Tsai, Yin-Ting
    Contributors: 李文傑
    王信實

    Lee, Wen-Chieh
    Wang, Shinn-Shyr

    蔡宜庭
    Tsai, Yin-Ting
    Keywords: 拍賣理論
    賽局理論
    碳中和
    Auction theory
    Game theory
    Carbon neutral
    Date: 2022
    Issue Date: 2022-08-01 18:28:00 (UTC+8)
    Abstract: 本文利用賽局理論替台灣替代能源市場建立新的直購電拍賣機制,過往拍賣機制在設定時假設廠商皆採取不合作策略,但現實世界廠商確會優先採取合作策略,若未排除廠商間合作可能將造成市場損失。而透過本研究建立的單邊英式拍賣機制,可以排除廠商間合作可能性,並且該機制透過Revelation Principle,誘使廠商誠實出價,在競爭均衡狀況下將使社會利益最大化。本文亦透過現有資料模擬台灣與世界各國參與該直購電拍賣機制後,找到台灣最好的合作夥伴。因此本文創建了一個相對完善的直購電拍賣機制,有利於推進台灣碳中和。
    This article studies the formation of direct purchase of clean energy in an English auction mechanism. Conventional wisdom tells us that suppliers tend to collude to bid prices larger than their respective production costs in order to enjoy the committed joint monopoly profits as is similarly realized in the current devised market. This research; thus, proposes four different kinds of market setups to deduce the market equilibrium with the highest collusion threshold (the patient parameter). The result shows that the tight market supply setup with every supplier indispensable would be the case of the highest collusion threshold. The theoretical result can also be applied to the empirical data to elucidate that the market integration with similar suppliers across different areas would be a more effective way to ease potential collusions.
    Reference: 1. 李文傑, 李浩仲, 王信實, (2021).「貿易報復下的資源錯置分析-以中國太 陽能產業為例」,《經濟論文》,49(2),245-283。[Wen-Chieh Lee, Hao-Chung Li, Shinn-Shyr Wang, (2021). “Resource misallocation under trade retaliations: Case of Chinese solar energy industry.”, Academia Economic Papers,49(2),245-283.]
    2. 李星皓,趙勁松,余津嫻,泰萍, (2021). 「直購電試點政策與火電行業資源錯配
    研究」,《經濟評論》,232。[Xing-hao Lee, Jinsong Zhao, Chin-Hsien Yu, Ping Qin, (2021).“ Research on Pilot Policy of Direct Electricity Purchase and Resource Misallocation of Thermal Power Industry.”, Economic Review,232.]
    3. Amrit Paudel, Chao Long, (2019).“Peer-to-Peer Energy Trading in a Prosumer Based Community Microgrid: A Game-Theoretic Model”, IEEE, Transactions on Industrial Electronics, vol.66
    4. Chenghua Zhang, Jianzhong Wu, Yue Zhou, Meng Cheng, Chao Long, (2018). “Peer-to-Peer energy trading in a Microgrid”, Applied Energy, vol.220.
    5. Chin-Hsien Yu, Xiuqin Wu, Wen-Chieh Lee, Jinsong Zhao , (2021). “Resource misallocation in the Chinese wind power industry: The role of feed-in tariff policy”, Energy Economics, vol.98.
    6. Christiana Figueres, Hans Joachim Schellnhuber, Gail Whiteman, Johan Rockström, Anthony Hobley, Stefan Rahmstorf, (2017). “Three years to safeguard our climate”, Nature, vol.546
    7. Davidson Michael R, Zhang Da, Xiong Weiming, Zhang Xiliang, Karplus Valerie J, (2016). “Integrating wind into China’s coal-heavy electricity system”, Nature Energy.
    8. Feng Song, De Bi, Chu Wei, (2019) . “Market segmentation and wind curtailment: An empirical analysis”, Energy Policy, vol.132.
    9. Fudenberg, D., & Tirole, J. (1991). “Game theory”. MIT press.
    10. Fudenberg, D., & Maskin, E. (1990). “Nash and perfect equilibria of discounted repeated games. Journal of Economic Theory”, 51(1), 194-206.
    11. Jason Lin, Manisa Pipattanasomporn, Saifur Rahman, (2019). “Comparative analysis of auction mechanisms and bidding strategies for P2P solar transactive energy markets”, Applied Energy, vol.255
    12. Jing Cao, Mun S. Ho b, Rong Ma, Fei Teng, (2021). “When carbon emission trading meets a regulated industry: Evidence from the electricity sector of China.”, Journal of Public Economics, vol.200.
    13. Kumar, P. (1985). “Consistent mechanism design and the noisy revelation principle. Essays on Intertemporal Incentives and Signalling Ph. D. dissertation”, Dept. of Economics, Stanford University.
    14. Lee Keon-Woo, Ko Kyung-Nam, (2020). “Analysis of LCOE for Korean Onshore Wind Farm Considering Social Discount Rate”, Journal of the Korean Solar Energy Society, vol.40.pp.1-13.
    15. Nordhaus, W. D. (1975). “Can we control carbon dioxide?”
    16. Reid Dorsey-Palmateer, (2020). “Transmission costs and the value of wind generation for the CREZ project”, Energy Policy, vol.138.
    17. Severin Borenstein, (2012). “The Private and Public Economics of Renewable Electricity Generation”, Journal of Economic Perspectives, vol.26.pp.67-92.
    18. Shuang Xu, Yong Zhao, Yuanzheng Li, Yue Zhou, (2021). “An iterative uniform-price auction mechanism for peer-to-peer energy trading in a community microgrid”, Applied Energy, vol.298
    19. Tong Fu, Ze Jian, (2020). “A developmental state: How to allocate electricity efficiently in a developing country”, Energy Policy, vol.138.
    20. Vitor N. Coelho, Miri Weiss Cohen, Igor M. Coelho, Nian Liu, Frederico Gadelha Guimarães, (2017). “Multi-agent systems applied for energy systems integration: State-of-the-art applications and trends in microgrids”, Applied Energy, vol.187.
    21. Tushar, W., Saha, T. K., Yuen, C., Liddell, P., Bean, R., & Poor, H. V. (2018). “Peer-to-peer energy trading with sustainable user participation: A game theoretic approach.” IEEE Access, 6, 62932-62943.
    22. Yue Zhou, Jianzhong Wu, Chao Long, (2018). “Evaluation of peer-to-peer energy sharing mechanisms based on a multiagent simulation framework”, Applied Energy, vol.222.
    23. Zhenpeng Li, Tao Ma, (2020). “Peer-to-peer electricity trading in grid-connected residential communities with household distributed photovoltaic,” Applied Energy, vol.278.
    Description: 碩士
    國立政治大學
    經濟學系
    109258023
    Source URI: http://thesis.lib.nccu.edu.tw/record/#G0109258023
    Data Type: thesis
    DOI: 10.6814/NCCU202201133
    Appears in Collections:[經濟學系] 學位論文

    Files in This Item:

    File Description SizeFormat
    802301.pdf2001KbAdobe PDF2116View/Open


    All items in 政大典藏 are protected by copyright, with all rights reserved.


    社群 sharing

    著作權政策宣告 Copyright Announcement
    1.本網站之數位內容為國立政治大學所收錄之機構典藏,無償提供學術研究與公眾教育等公益性使用,惟仍請適度,合理使用本網站之內容,以尊重著作權人之權益。商業上之利用,則請先取得著作權人之授權。
    The digital content of this website is part of National Chengchi University Institutional Repository. It provides free access to academic research and public education for non-commercial use. Please utilize it in a proper and reasonable manner and respect the rights of copyright owners. For commercial use, please obtain authorization from the copyright owner in advance.

    2.本網站之製作,已盡力防止侵害著作權人之權益,如仍發現本網站之數位內容有侵害著作權人權益情事者,請權利人通知本網站維護人員(nccur@nccu.edu.tw),維護人員將立即採取移除該數位著作等補救措施。
    NCCU Institutional Repository is made to protect the interests of copyright owners. If you believe that any material on the website infringes copyright, please contact our staff(nccur@nccu.edu.tw). We will remove the work from the repository and investigate your claim.
    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library IR team Copyright ©   - Feedback