AN AUTOMATIC LAMP SWITCHING CIRCUIT BY USING SENSOR AND REMOTE CONTROL

 During the present day’s technology is all about automation and wireless control of all equipment’s used in house, industries and factories. Equipment that can be controlled wirelessly is more easily maintained and it responds very fast comparing to the manual operating. It increases safety as well as speed of operation in times of failure or damage. So the proposed project present a design which uses wireless technology for switching of electrical light. This project uses the application of wireless control of electrical load.

PROBLEM STATEMENT

At Mrs.Malya’s house there is a problem of high power consumption this is due to the tendency of people to forget switching OFF lamps when leaving the room and lamps continues to run without any specific purpose. Due to that problem it increase cost of electric bills payed per month. Therefore, an automatic system will be designed in order to solve the problem which Mrs Malya face.


OBJECTIVES

Objectives can be divided into two

Main objective

Specific objectives


MAIN OBJECTIVE

The main objective of this project is to  avoid unnecessary power consumption.


SPECIFIC OBJECTIVES

Design a circuit 

Identification of tools and components

Build a prototype

To test prototype


SIGNIFICANCE OF THE PROJECT

To avoid unnecessary power consume

Increase life span of appliance


PROJECT METHODOLOGY

Literature review

Data collection

Data analysis

Build prototype

Test prototype

Report writing


LITERATURE REVIEW

EXISTING SYSTEM

The existing system uses manual operation of switching ON or OFF electrical lights. In this system a person is needed to switch ON or OFF the light and he forget to so the light will remain ON till that person remember to turn OFF and this cause electrical power consumption. Existing system has some disadvantages as shown below.

DISADVANTAGE OF EXISTING SYSTEM

Consumes high power

Responds very slowly

It is not easy to use especially to the children an disabled people who are not to reach to the switch.

BLOCK DIAGRAM OF EXISTING SYSTEM





PROPOSED SYSTEM

Proposed system uses sensor and wireless remote control of electrical light and this is more easily maintained and it responds very fast comparing to manual operating. It increases safety as well as speed of operation in times of failure.


ADVANTAGES OF PROPOSED SYSTEM

Proposed system has low power consumption

It is to maintain and repair

Have safe operation and long life of the appliance

Proposed system is efficient and safe operation

It brings comfort ability


BLOCK DIAGRAM OF PROPOSED SYSTEM








DATA COLLECTION

The following are data collected in order to accomplish proposed project;

AC power supply 230V


MANUAL OPERATING SWITCH

There are four (4) manual operating switches each room contains one switch for lamp.


NUMBER OF ROOMS

There are four (4) rooms

NUMBER OF LAMPS

There are four (4) lamps each room contains one lamp with 40 watts

OPERATING HOURS

Lamps operate for 17 hours per day

COST

Electric bills paid for lamps per month is Tsh. 29,376/=


DATA  ANALYSIS

PROPOSED CIRCUIT










LOAD SECTION

Load = AC light of (220V-230V)

Let light be 11W 

Then,

Power = Current × Voltage

I = 11w/230V

I = 0.0478A

I = 0.05A

Hence, over load will be using not more than 0.0478.


CHOOSING RELAY

Since over load consumes ≤ 0. 0478.The relay selected must handle such load.

Hence, 12V relay with 10A capability to 250V will be selected.


SWITCHING SECTION.

Vc = Rc × Ic

Whereas,

Rc = 300Ω

Vc = 12V

Ic = 12/300

Ic = 0.04A

Ic = 40mA

CHOOSING TRANSISTOR.

There are two types of transistors which are

NPN – BC 547, BC 548, BC 549.

PNP –  BC 557, BC 558, BC 559.

NPN- BC 547 will be selected with the following specification

Ic max = 200Ma

β = 120 -150


Ib ≥ 1µA

Ic = β × Ib

Ib = Ic/β

Ib = 40m/120

Ib = 0.333µA

Ib = 333µA

Since 333µA≥ 1µA

Voltage output ranges from 0.5V – 2V

Then,

Vb = 5V – 0.5 V

Vb = 4.5

Rb = Vb/ Ib

Rb = 4.5 / 333µA

Rb = 0.0135 × 10^6

Rb = 13.5 KΩ


REMOTE SECTION

SPECIFICATION OF SENSOR (PHOTO TRASISTOR)

Vf = 2V

Imax = 40Ma

VCE = 5V

VT = VR + Vf

5V = VR + 2V

5V – 2V = VR

Then,

VR = 3V

But,

VR = I × R

R = VR/I

=3V/40Ma

=3 × 10^3/40

=0.075 × 10^3

R2 = 75Ω.


SENSING SECTION

SPECIFICATION OF PIR SENSOR.

PIR needs 5V

Outputs

Inputs,


DESIGNED CIRCUIT WITH VALUE











CONCLUSION

The aim of this project is to design an automatic lamp switching circuit by using sensor and remote control.

Objectives are achieved, the system has been undertaken completely in order to meet the main objective of the project such as general introduction, problem statement, literature review, data collection, data analysis, designing circuit, building and testing prototype and report writing were all covered.

The project was designed successfully to reduce electric bill payed per month. The project is to be beneficial to user since the analysis, simulation and prototype were exactly the same for controlling light in order to prevent high power consumption, hence reduce cost of electric bill payed per month.

RECOMMENDATION

The automatic lamp controller is simple and effective way to prevent high power consumption due to tendency of people to forget switching off lamps. The system can be used to both rural and urban areas due to low cost of components used in proposed system and its simple in design.

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