Some problems will involve the synchronous generator behavior characterized by MÖ=P-D8 - 1 E, sin 8 TĖ, = -12E + 112 cos
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Some problems will involve the synchronous generator behavior characterized by MÖ=P-D8 - 1 E, sin 8 TĖ, = -12E + 112 cos
Question 4 1 pts where The nonlinear model is again MSP-D - Esin 8 TĖ, = -2, + 12 Cos8+ EPD where is the angle in radians, E, is a voltage P is mechanical input power, is the angle in radians, E, is a voltage, Pis mechanical input power, and Eppis the input field 6 voltage. If the state vector is z = . = what is the B matrix when the system is linearized about E -- -0) = ErDis the input field voltage Dis a damping coefficient, M is an inertia coefficient, T is a time constant, a 11, 12, 13 are constant parameters. , Put the input variables in alphabetical order in the input vector and use Matlab notation with no spaces for your answer. Question 2 1 pts The nonlinear model is again M8 = P-DS-TE, sin 8 TĖ, = -n2+12 cos & + Epp where 8 is the angle in radians, E, is a voltage, P is mechanical input power, and Eppis the input field voltage. If the state vector is 3 = $.what is the (1.2) element of the A matrix when the E 0 system is linearized about 20 = 80 Spell out Greek variable names, for example, fors/a7 type "zeta3/alpha7" without the quotation marks. D Question 3 1 pts The nonlinear model is again M8 = P-DS - E, sin 8 TĖ, = -12E, + 12 cos 6 + EPD + where 8 is the angle in radians, E, is a voltage, P is mechanical input power, and Eppis the input field voltage. If the state vector is 2 = . = = what is the (1,1) element of the A matrix when the E B system is linearized about 10 = 80 ? Spell out Greek variable names, for example, for (/a7 type "zeta3/alpha7" without the quotation marks.
Some problems will involve the synchronous generator behavior characterized by MÖ=P-D8 - 1 E, sin 8 TĖ, = -12E + 112 cos 8+ Epp D