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電氣工程及其自動化專業很多課程有固定的英文名稱,在成績單翻譯時,要按照有固定標準名稱時,采用固定標準名稱,盡可能保證成績單翻譯中的課程名與院校提供的一致,同時在認證方面,提供更好的閱讀性以及參考價值。
成績單里課程中文名稱:電力系統調度自動化
成績單翻譯的課程英文名稱: AUTOMATIC SUPERVISION AND CONTROL OF POWER SYSTEM
課程中文簡介:
電力系統調度自動化是電力系統理論、計算數學、最優化原理、自動控制和信息技術在電力系統中的綜合應用。課程主要介紹電力系統能量管理系統和配電網自動控制系統的基本結構和主要功能;電力系統狀態估計算法、安全分析和安全控制方法;火電機組協調控制技術和自動發電控制以及智能輸電網、智能配電網和智能用電技術。教學中注重培養學生理論聯系實際的良好作風,提高學生解決實際問題的能力,同時重視學生自學能力的培養。
Course Description:
Electric power system dispatch automation is the comprehensive utilization of power system theory, computational mathematics, optimization principle, automatic control and information technology. This course introduce the forms and functions of the energy management system of power system and distribution Automation System; the state estimated algorithm, security control measure and security analysis method of power system; coordination control of thermal power unit and automatic generation control of power system; the technology of smart transmission networks, smart distribution networks and smart Power consumption. And gain the ability of combining the theories and practice, improve their ability of solving practical problems and self-studying.
成績單里課程中文名稱:電力系統分析
成績單翻譯的課程英文名稱: POWER SYSTEM ANALYSIS
課程中文簡介:
電力系統分析是電力系統及其自動化專業方向的必修課。課程主要內容:電力網各元件的等值電路和參數計算; 電力系統三相短路的暫態過程分析, 短路電流計算,電力系統各元件的序阻抗及等值電路, 簡單不對稱故障的分析與計算。 電力網的電壓和功率分布計算,電力系統潮流的計算機牛頓-拉夫遜算法,P-Q 解偶算法;電力系統無功功率平衡及電壓調整,電力系統的頻率特性及電力系統的頻率調整;有功功率負荷的經濟分配。電力系統穩定的基本概念;電力系統的暫態穩定性和靜態穩定性分析和計算;提高電力系統穩定性的措施。
Course Description:
Power System Analysis is a core course in power system and automation. The main contents of this course are as follows: equivalent circuits and parameter calculations of electrical network components; the analysis of the transient of three-phase balanced short-circuit; the calculation of balanced fault currents; sequence impedance and equivalent circuit of Power System components and simple unbalanced fault analysis and calculation; calculation of power flows and voltage drops in power networks; Newton-Raphson algorithm for solving load flows and its decoupling property; the reactive power balance and the voltage adjustment of the power system; the frequency control of power system according to the characteristics of the power frequency; the issues of economic dispatch of the power load; basic concepts of system stability; the analysis and calculations of transient stability and steady-state stability; the measures to enhance system stability.