9. A worker is residing inside an air-conditioned cabin Ext. T Cabin T Gp Gc in an industrial environment. Temperature regulating section of the cabin is shown in the figure. Gc is the steady-state gain of the heating/cooling device (controller) built into the cabin, while Gp represents the steady-state gain associated with the thermal characteristics of the worker. H is the gain with which the internal temperature is fed back to the controller. The operating internal temperature (y) of the cabin is allowed to be 30°C at maximum while external temperature can go up to 100°C. How much is the value of H to achieve the required condition with Gc= 3 Gp=2? H

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9. A worker is residing inside an air-conditioned cabin
Ext. T
Cabin T
Gp
Gc
in an industrial environment. Temperature
regulating section of the cabin is shown in the figure.
Gc is the steady-state gain of the heating/cooling
device (controller) built into the cabin, while Gp
represents the steady-state gain associated with the thermal characteristics of the worker. H is the
gain with which the internal temperature is fed back to the controller. The operating internal
temperature (y) of the cabin is allowed to be 30°C at maximum while external temperature can go
up to 100°C. How much is the value of H to achieve the required condition with Gc= 3 Gp=2?
H
Transcribed Image Text:9. A worker is residing inside an air-conditioned cabin Ext. T Cabin T Gp Gc in an industrial environment. Temperature regulating section of the cabin is shown in the figure. Gc is the steady-state gain of the heating/cooling device (controller) built into the cabin, while Gp represents the steady-state gain associated with the thermal characteristics of the worker. H is the gain with which the internal temperature is fed back to the controller. The operating internal temperature (y) of the cabin is allowed to be 30°C at maximum while external temperature can go up to 100°C. How much is the value of H to achieve the required condition with Gc= 3 Gp=2? H
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