Ewald F. Fuchs - Introduction to Energy, Renewable Energy and Electrical Engineering
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A great resource for beginner students and professionals alike
Introduction to Energy, Renewable Energy and Electrical Engineering: Essentials for Engineering Science (STEM) Professionals and Students
The book includes:
A combination of analytical and software solutions in order to relate aspects of electric circuits at an accessible level A thorough description of compensation of flux weakening (CFW) applied to inverter-fed, variable-speed drives not seen anywhere else in the literature Numerous application examples of solutions using PSPICE, Mathematica, and finite difference/finite element solutions such as detailed magnetic flux distributions Manufacturing of electric energy in power systems with integrated renewable energy sources where three-phase inverter supply energy to interconnected, smart power systems Connecting the energy-related technology and application discussions with urgent issues of energy conservation and renewable energy—such as photovoltaics and ground-water heat pump resulting in a zero-emissions dwelling—
crafts a truly modern and relevant approach to its subject matter.
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4 Chapter 7Table E7.1.1 Magnitude M ( ω ) and phase angle Φ( ω ) for first‐order RC ...Table E7.2.1 Magnitude M ( ω ) and phase angle Φ( ω ) for first‐order RC ...Table E7.3.1 Magnitude M ( ω ) and phase angle Φ( ω ) for (second‐order) ...Table E7.4.1 Magnitude M ( ω ) and phase angle Φ( ω ) for (second‐order) ...Table E7.5.1 Magnitude and phase angle Φ Is( ω ) for (second‐order) RLC se...Table E7.6.1 Magnitude and phase angle Φ Is( ω ) for (second‐order) RLC pa...
5 Chapter 8Table 8.1 Low‐pass active filter frequency response with R 2/ R 1= 10.Table 8.2 High‐pass active filter frequency response (pu).Table E8.9.1 Mathematica [32] program from t = 0 to 2 s for P control, and fro...Table E8.10.1 PSPICE program for Figure E8.10.1.
6 Chapter 10Table E10.1.1a Voltage harmonics of v s( t ) = v out( t ) of Figure E10.1.1a in term...Table E10.1.1b PSPICE program [2–5] for ideal ( i d− v d) characteristic with R Table E10.1.1c Voltage harmonics of v s( t ) = v out( t ) of Figure E10.1.1b in term...Table E10.2.1 PSPICE program [2–5] for ( i d− v d) characteristic with V D= 0.7...Table E10.2.2 Voltage harmonics of v out( t ) of Figure E10.2.1 in terms of volts...Table E10.3.1 PSPICE program for exponential ( i d− v d) characteristic with R ...Table E10.3.2 Voltage harmonics of v out( t ) of Figure E10.3.1 in terms of volts...Table E10.4.1 PSPICE program for ideal diode ( i d− v d) characteristic with R ...Table E10.4.2 Voltage harmonics of v out( t ) of Figure E10.4.2 in terms of volts a...Table E10.4.3 PSPICE program for diode ( i d− v d) characteristic modeled with con...Table E10.4.4 Voltage harmonics of v out( t ) of Figure E10.4.3 in terms of volts a...Table E10.4.5 PSPICE program for exponential diode ( i d− v d) characteristic with...Table E10.4.6 Voltage harmonics of v out( t ) of Figure E10.4.4 in terms of volts...Table E10.5.1 PSPICE program for ideal diode ( i d− v d) characteristic, R = 3 ...Table E10.5.2 Voltage harmonics of v out( t ) of Figure E10.5.2 in terms of volts...Table E10.5.3 PSPICE program for ideal diode ( i d− v d) characteristic, R = 3 ...Table E10.5.4 Voltage harmonics of v out( t ) of Figure E10.5.4 in terms of volts...Table E10.6.1 PSPICE program for ideal diode ( i d− v d) characteristic.Table E10.6.2 Voltage harmonics of v out( t ) of Figures E10.6.1 and E10.6.2 in t...Table E10.9.1 PSPICE program for the signals of Figure E10.9.2.Table E10.9.2 Voltage harmonics of v out( t ) of Figure E10.9.2 in terms of volts...Table E10.10.1 PSPICE program for the signals of Figure E10.10.2.Table E10.10.2 Voltage harmonics of v out( t ) = R · i R( t ) of Figure E10.10.2 in ...Table E10.11.1 PSPICE program for the signals of Figure E10.11.2.Table E10.11.2 Voltage harmonics of v out( t ) of Figure E10.11.2 in terms of vol...Table E10.12.1 PSPICE program for the signals of Figure E10.12.2.Table E10.12.2 Voltage harmonics of v out( t ) of Figure E10.12.2 in terms of vol...Table E10.13.1 PSPICE program for the signals of Figure E10.13.2.Table E10.13.2 Voltage harmonics of v out( t ) of Figure E10.13.2 in terms of vol...Table E10.14.1 PSPICE program for the signals of Figure E10.14.2.Table E10.14.2 Voltage harmonics of v out( t ) of Figure E10.14.2 in terms of vol...Table E10.15.1 PSPICE program for the signals of Figure E10.15.2.Table E10.15.2 Voltage harmonics of v out( t ) of Figure E10.15.2 in terms of vol...Table E10.15.3 PSPICE program for the signals of Figure E10.15.4.Table E10.15.4 Voltage harmonics of v out( t ) of Figure E10.15.4 in terms of vol...Table E10.16.1 PSPICE program for the signals of Figure E10.16.2.Table E10.16.2 Voltage harmonics of v out( t ) of Figure E10.16.2 in terms of vol...Table E10.17.1 PSPICE program for the signals of Figure E10.17.2.Table E10.17.2 Current harmonics of i R( t ) of Figure E10.17.2 in terms of amper...Table E10.18.1 PSPICE program for the signals of Figure E10.18.2.Table E10.18.2 Current harmonics of i R( t ) of Figure E10.18.2 in terms of amper...Table E10.19.1 PSPICE program for the signals of Figure E10.19.2.Table E10.19.2 Current harmonics of i R( t ) of Figure E10.19.2 in terms of amper...Table E10.19.3 PSPICE program for the signals of Figure E10.19.3.Table E10.19.4 Current harmonics of i R( t ) of Figure E10.19.3 in terms of amper...Table E10.20.1 PSPICE program for the signals of Figure E10.20.2.Table E10.20.2 PSPICE program for the signals of Figure E10.20.4.Table E10.20.3 PSPICE program for the signals of Figure E10.20.6.Table E10.21.1 PSPICE program for the signals of Figure E10.21.2.Table E10.21.2 Fundamental current (1) and harmonics of i a( t ) of Figure E10.21...Table E10.22.1 PSPICE program for the signals of Figure E10.22.2, firing angl...Table E10.22.2 PSPICE program for the signals of Figure E10.22.3, firing angl...Table E10.22.3 Fundamental current (1) and harmonics of i a( t ) = I (Van) of Figu...Table E10.22.4 Fundamental current (1) and harmonics of i a( t ) = I (van) of Figu...Table E10.23.1 PSPICE program for the signals of Figure E10.23.2.Table E10.23.2 Fundamental current (1) and harmonics of i a( t ) = I (Van) of Figu...Table E10.23.3 PSPICE program for the signals of Figure E10.23.4.Table E10.23.4 Fundamental current (1) and harmonics of i a( t ) = I (Van) of Figu...Table E10.24.1 PSPICE input program for Figures E10.24.2 and E10.24.3.Table E10.24.2 Fundamental voltage and harmonics of v AB( t ) = V (1) − V (2) of Fi...Table E10.24.3 Fundamental voltage and harmonics of v ab( t ) = V (11) − V (12) of ...Table E10.24.4 Fundamental current and harmonics of i AL( t ) = I (RsysA) of Figur...Table E10.24.5 Fundamental current (1) and harmonics of i aph( t ) = I ( L 4) of Fig...Table E10.24.6 Fundamental voltage and harmonics of v load( t ) = V (15) − V (14) =...Table E10.25.1 PSPICE program for the signals of Figure E10.25.3.Table E10.25.2 Current harmonics of i MA( t ) = I ( R 1) of Figure E10.25.3 in terms...Table E10.26.1 PSPICE program for the signals of Figures E10.26.2–E10.26.4.Table E10.26.2 Current harmonics of i an( t ) = I (Rsysa) = I (Rwa) of Figures E10....Table E10.27.1 PSPICE program for the signals of Figure E10.27.4–E10.27.6.Table E10.27.2 Current harmonics of i an( t ) = I (Rsysa) = I (Rwa) = I (RM1) of Fig...Table E10.28.1 PSPICE input program for Figure E10.28.4.Table E10.28.2 PSPICE input program for Figures E10.28.2 and E10.28.3.Table E10.28.3 DC voltage and harmonics of V bat( t ) = V (16) − V (14) of Figure E...Table E10.28.4 Fundamental current (1) and harmonics of i aph( t ) = I ( L 4) of Figur...Table E10.28.5 Fundamental current (1) and harmonics of i genA( t ) = I (RgenA) of...Table E10.29.1 PSPICE program for the signals of Figures E10.29.3–E10.29.6.Table E10.29.2 Fundamental component (1) and harmonics of i a( t ) = I (RTH1) = I (...Table E10.29.3 PSPICE program for the signals of Figures E10.29.7–E10.29.11.Table E10.29.4 Fundamental component (1) and harmonics of i syst( t ) = I (Vsyst)....Table E10.29.5 DC component (1) and harmonics of V out( t ) = V (Rload) = V (5) − V
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