The water level h(t) in a tank is controlled by an open-loop system as shown below. An armature- controlled DC motor turns a shaft that opens/closes a valve. The inductance of the armature circuit is negligible: Lo=0. Also, the rotational friction of the motor shaft and the valve is negligible. The height of the water in the tank is given by: h(t) = S[1.60(t) – h(t)]dt. The motor torque constant K=10 and the inertia of the motor-valve assembly is J=6×10³ kg-m². (a) Determine the differential equation for h(t) and v(t). (b) Determine the transfer function H(s)/V(s). Amplifier 10 n k= 50 Motor Valve
The water level h(t) in a tank is controlled by an open-loop system as shown below. An armature- controlled DC motor turns a shaft that opens/closes a valve. The inductance of the armature circuit is negligible: Lo=0. Also, the rotational friction of the motor shaft and the valve is negligible. The height of the water in the tank is given by: h(t) = S[1.60(t) – h(t)]dt. The motor torque constant K=10 and the inertia of the motor-valve assembly is J=6×10³ kg-m². (a) Determine the differential equation for h(t) and v(t). (b) Determine the transfer function H(s)/V(s). Amplifier 10 n k= 50 Motor Valve
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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![The water level h(t) in a tank is controlled by an open-loop system as shown below. An armature-
controlled DC motor turns a shaft that opens/closes a valve. The inductance of the armature circuit is
negligible: Lo=0. Also, the rotational friction of the motor shaft and the valve is negligible. The height of
the water in the tank is given by: h(t) = S[1.60(t) – h(t)]dt. The motor torque constant K=10 and
the inertia of the motor-valve assembly is J=6x10³ kg-m?.
(a) Determine the differential equation for h(t) and v(t).
(b) Determine the transfer function H(s)/V(s).
Amplifier
10 0
k- 50
Motor
TL
Valve](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6e9db50a-4d56-435a-a058-414853800bca%2F698ab7a4-c175-41c8-b8ae-80bc0da2bb44%2Fwdfybge_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The water level h(t) in a tank is controlled by an open-loop system as shown below. An armature-
controlled DC motor turns a shaft that opens/closes a valve. The inductance of the armature circuit is
negligible: Lo=0. Also, the rotational friction of the motor shaft and the valve is negligible. The height of
the water in the tank is given by: h(t) = S[1.60(t) – h(t)]dt. The motor torque constant K=10 and
the inertia of the motor-valve assembly is J=6x10³ kg-m?.
(a) Determine the differential equation for h(t) and v(t).
(b) Determine the transfer function H(s)/V(s).
Amplifier
10 0
k- 50
Motor
TL
Valve
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