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  • 學位論文

可攜式輕量電動載具機構與結構之研究

Mechanism and Structure Research of a Portable Electric Personal Vehicle

指導教授 : 鄭榮和

摘要


低效率的運輸問題是當今世界上最嚴重的問題之一,人類需要一個全新的交通運輸系統來取代現金以內燃機引擎汽車為中心的舊交通系統。人類交通運輸的核心就是點對點的移動—從出發地到目的地,我們以此為出發點考量,設計出配合大眾運輸系統使用的個人輕型電動載具來建構這一整個交通系統,包括一個新的社會情境、新的使用習慣和新的載具。     這台個人輕型電動載具具有前後雙輪,並可以折疊並攜行,因此它使用起來非常方便。此個人輕型電動載具可在三個模式中切換:騎乘、拖行、和攜帶。使用者可以攜帶或拖行模式在大眾交通系統中使用,並騎乘它從大眾交通系統前往目的地,順暢地完成點對點的移動。     因此,本載具需要具備輕巧與方便收折的特性,本研究的目的為完成此個人輕型電動載具之設計,並達成方便收折與全車重量十公斤以下之目標。

關鍵字

個人載具 電動載具 輕量化

並列摘要


One of the most challenging issues of coming energy and material scarce society involves creating a new transportation system which satisfies the essential need of human transit: door-to-door portable transportation. In order to fulfill that goal in a super-efficient way, there is a need to provide a total solution which should contain new society scenario, new service design, new business model, and new vehicle. The vehicle adopted in the innovative transportation system is a portable lightweight electric vehicle, or PLEV, which is a two-wheel, lightweight foldable motorbike designed to be rode between the place where you are and the mass transportation system. Onboard the mass transportation system, the PLEV would be folded easily and carried as a bag or towed as a small suitcase. In order to develop the super lightweight PLEV, both the structure design is vital. The destination of this research is to design a lightweight vehicle under 10Kg and could be folded/expanded conveniently. A prototype PLEV was constructed on the basis of the final design. The weight and the stiffness of the vehicle were measured.

參考文獻


[1] “Inventory of U.S. Greenhouse gas emissions and sinks: 1990-2004,” U.S. Environmental Protection Agency report USEPA #430-R-06-002, 2006
[3] Mark Hirschey, “What’s your strategy for the electric vehicle market?” Oliver Wyman, 2009
Reference Manual of Segway Personal Transporter.
The press release from Toyota which shows the specifications of Winglets.
[16] Arthur J. Petron, William J. Mitchell, "The Folding Roboscooter: Structural Analysis for an Electric Scooter used in Urban Conditions," Department of Mechanical Engineering, Massachusetts Institute of Technology, MA, 2008

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