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Automated Street Lightening System Poster

   

Added on  2023-06-11

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AUTOMATED STREET LIGHTENING SYSTEM POSTER
Name BEng (Hons) Electrical & Electronic Engineering
2015/ 2016 AME6001: Individual Project
INTRODUCE THE PROJECT
AIMS
The aims of this project divided into
Objective 1: To design a control system for the automation and implementation of the makeable
streets light through the application of relay and dependent resistor
Objective 2: To appraise and explore the present street light and their relevant control system
Objective 3: To design a makeable street light with an automated and effective control unit
Objective 4: To develop a designated control hardware unit
Objective 5: To evaluate and test for the designed system validity
Objective 6: To appraise the cognitive advantages as well as the overall limitations of the designed
system
Objective 7: To identify and review the related components in line with the designed automatic
street lighting unit

DESCRIBE THE PROJECT
Project is based on the principle of the variation in line with the light intensity. It operates as a result of the defection in the changes of the light intensity with respect to daylight and
darkness. The control units have the ability of turn on as well as turn off depending on the amount of light striking their face in which they are in contact with.
Work-Package 1
Developing of the sensors and incorporating them in the system. Designed with an aim of ensuring that they have the ability of not only sensing the light but also hastening the emitted
light coming from the overall streetlight. Controlling the emitted light coming from the makeable streetlights essentially depends on the light intensity available at the moment.
Work-Package 2
Designing and integrating Light Dependent Resistors or LDRs in the system. LDRs used in the system have to be made of the semiconductors materials . Essentially, the changes
which are likely to be made in the system depend on the GSM. Fundamntal LDRs used and utilized in the system must have light sensitive. The principle of operation mainly depends
on the system effectiveness and it is used for controlling lightining striking the surface. Essential operations mainly carried out in line with the photoconductivity principles alongside.
Moreover, the light depended resistors mainly grounded on the basis of the makeable light amount reactions falling on the LDRs surface. Also, the Cadmium sulphide is utilized
alongside LDRs in line with this project (Sang, 2014).
Figures showing Light Dependent Resistors or LDRs
In most cases, the GSM have to be incorporated in the system via the system connection (Woodside, 2013)
Work-Package 3
The circuit used in the designing and developing of this project is the IC CA3140. Its operations depends on the amplifier but at the same time can incorporate the makeable PMOS
transistors voltage. Moreover, PMOS transistors voltage often transformed to the preference higher voltage bipolar-transistor through the application of IC CA3140. In this context, the
primary element and factor to be considered is the development of the parametric lighting resistance control system. Parametric lighting resistance control system helps in the
determination of the level at which the proposed light will not only go-off but also go on. This resistance helps in the determination of the current flows in the overall system. However,
it is vital to note that the current flowing in the resistor system is equal to the voltage readings recorded in the resistor.
Work Package 4
Capacitors forms part and parcel of the work package to be incorporated in the design. Most of the capacitors to be used in the system should be made of the dielectric materials which
must be medium in size. The dielectric materials mainly utilized in this system to ensure that there effective flow of the overall currents between the available capacitors.
Also, relay used in the design as the essential isolator which necessitates the process of isolation between the parametric controller and the main device.
Thus, the relay is applied in the system with an aim of ensuring that there is a prolific manner of monitoring the overall device operations in terms of the working conditions.
Also, it helps in developing a time system which aims at determining the ability of the device to work either in the AC or the DC conditions (Karris, 2016, p. 674).

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