By Canbing Li, Yijia Cao, Yonghong Kuang, Bin Zhou
This ebook analyzes the effect of electrical cars on microclimate and the oblique effect on strength load from a distinct point of view. It discusses diversified facets of Vehicle-to-grid (V2G) expertise, together with huge and small-scale charging infrastructures, and describes the impact on electrical energy rate, voltage, frequency and different key V2G applied sciences. It introduces a number of features of the impression of electrical cars at the energy grids and the keep an eye on concepts for reaching fiscal, secure and regular grid operation utilizing V2G applied sciences. This booklet is acceptable for senior undergraduates and postgraduates majoring in electric, transportation, or environmental engineering, in addition to different comparable professionals.
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Additional info for Influences of Electric Vehicles on Power System and Key Technologies of Vehicle-to-Grid
36 2 The Response of EV Charging Loads to TOU Price 18. Xiao L, Lin L. Construction of uniﬁed new-energy based power grid and promotion of China’s smart grid. Adv Technol Electr Eng Energy. 2009;28(4):54–9. 19. Yang Y, Lin Z, Qin D, et al. Control strategy and simulation study on NiMH battery quick charging for regenerative braking of HEV. J Chongqing Univ. 2007;30(3):1–5. 20. Meissner E, Richter G. Battery monitoring and electrical energy management precondition for future vehicle electric power systems.
Based on the existing research and the SOC curve, this chapter proposes an optimized charging model for a regulated market. By using the proposed method, EVs are able to adjust charging power and time and reduce the cost of customers, thus achieving peak shaving and valley ﬁlling in load demand. 2 Optimized Charging Model in Response to TOU Price In regulated electricity markets, TOU price is set by the government in advance, and the prices remain unchanged for a long time. The user can set the expected ending time of charging when EVs are connected to the grid through the charger.
An analysis of energy consumption caused by air temperature affected accumulative effect of the air conditioning load. Autom Electr Power Syst. 2010;34 (20):30–3. 17. Lam Tony NT, Wan Kevin KW, Wong SL, et al. Impact of climate change on commercial sector air conditioning energy consumption in subtropical Hong Kong. Appl Energy. 2010; 87(7):2321–7. 18. Chua KJ, Chou SK, Yang WM, Yan J. Achieving better energy-efﬁcient air conditioning—a review of technologies and strategies. Appl Energy. 2013;104:87–104.