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Embedded system interated into a
wireless sensor networks for online
dynamic torque and efficiency monitoring
in induction motors
Abstract:
Analysis of induction motor is much essential to
find out utilization index of a motor for better performance. When we
analyze an efficiency of an induction motor we need to acquire many
parameters like voltage, current, KW, Power factor, speed, torque from
motors. All the above said parameters must be acquired at fastest speed
to present an instantaneous efficiency indication. When we analyze these
parameters we can easily identify whether the motor is suitable for
particular operations or not, can be identified.
In this paper, we are going to use all type of sensing
system. For above said parameters all the sensors will be connected to
signal conditioning circuits to convert signals suitable for interfacing with
embedded controller. The state of art PIC microcontroller manufactured
by microchip will be used in our project to cater the need of software and
hardware. The PIC embedded controller contains ADC, DAC, PWM and
much more built-in options are there to have a better design.
These data are available at the base unit using
wireless sensor networks. Local processing is done at the controller part
so that the calculation frequency is high and the result is more accurate.
Block Diagram:

It consist of a voltage sensor and current sensor which
contain noise filters and rectifiers. The speed is measured
using a tachogenerator a load cell is used for measuring the
torque. Relays and protection circuits are used for the
protection of the system.
The receiver side uses a receiver
circuit, then an embedded circuit for processing and a
personal computer as the base unit which deals with the
graphical user interface.
The embedded controller used is a PIC
microcontroller. The data collected from the motor is
processed in the pic and then transmitted to the base station.
At the receiver end the data is collected by a receiver. And
then the collected data is moved to the personal computer
after processing through the microcontroller circuit.
HARDWARE DESCRIPTION:

The system composed of two parts, the
transmitter and receiver. Transmitter part composed of induction
motor, sensor system, signal conditioner and the wireless sensor.
The protocol used here for the wireless
transmission is zigbee. ZigBee is a proprietary set of high level
communication protocols designed to use small, low power
digital radios based on the IEEE 802.15.4 standard for wireless
personal area networking. The relationship Between IEEE
802.15.4 and ZigBee is analogous to that existing between IEEE
802.11 and the Wi-Fi Alliance. It is expected that the standard
eventually will be open (i.e., available free to the public for
academic or other non-commercial use), while remaining
proprietary (i.e., requiring membership in the ZigBee Alliance
for commercial use).
•

In our project, we are going to
use all type of sensing system. For above said
parameters all the sensors will be connected to signal
conditioning circuits to convert signals suitable for
interfacing with embedded controller. The state of art
PIC microcontroller manufactured by microchip will be
used in our project to cater the need of software and
hardware
•
The PIC embedded controller
contains ADC, DAC, PWM and much more built-in
options are there to have a better design.

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1st preview

  • 1.
  • 2. Embedded system interated into a wireless sensor networks for online dynamic torque and efficiency monitoring in induction motors
  • 3. Abstract: Analysis of induction motor is much essential to find out utilization index of a motor for better performance. When we analyze an efficiency of an induction motor we need to acquire many parameters like voltage, current, KW, Power factor, speed, torque from motors. All the above said parameters must be acquired at fastest speed to present an instantaneous efficiency indication. When we analyze these parameters we can easily identify whether the motor is suitable for particular operations or not, can be identified. In this paper, we are going to use all type of sensing system. For above said parameters all the sensors will be connected to signal conditioning circuits to convert signals suitable for interfacing with embedded controller. The state of art PIC microcontroller manufactured by microchip will be used in our project to cater the need of software and hardware. The PIC embedded controller contains ADC, DAC, PWM and much more built-in options are there to have a better design. These data are available at the base unit using wireless sensor networks. Local processing is done at the controller part so that the calculation frequency is high and the result is more accurate.
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  • 6. Block Diagram: It consist of a voltage sensor and current sensor which contain noise filters and rectifiers. The speed is measured using a tachogenerator a load cell is used for measuring the torque. Relays and protection circuits are used for the protection of the system. The receiver side uses a receiver circuit, then an embedded circuit for processing and a personal computer as the base unit which deals with the graphical user interface. The embedded controller used is a PIC microcontroller. The data collected from the motor is processed in the pic and then transmitted to the base station. At the receiver end the data is collected by a receiver. And then the collected data is moved to the personal computer after processing through the microcontroller circuit.
  • 7. HARDWARE DESCRIPTION: The system composed of two parts, the transmitter and receiver. Transmitter part composed of induction motor, sensor system, signal conditioner and the wireless sensor. The protocol used here for the wireless transmission is zigbee. ZigBee is a proprietary set of high level communication protocols designed to use small, low power digital radios based on the IEEE 802.15.4 standard for wireless personal area networking. The relationship Between IEEE 802.15.4 and ZigBee is analogous to that existing between IEEE 802.11 and the Wi-Fi Alliance. It is expected that the standard eventually will be open (i.e., available free to the public for academic or other non-commercial use), while remaining proprietary (i.e., requiring membership in the ZigBee Alliance for commercial use).
  • 8. • In our project, we are going to use all type of sensing system. For above said parameters all the sensors will be connected to signal conditioning circuits to convert signals suitable for interfacing with embedded controller. The state of art PIC microcontroller manufactured by microchip will be used in our project to cater the need of software and hardware • The PIC embedded controller contains ADC, DAC, PWM and much more built-in options are there to have a better design.