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welcome
Ain Shams University
Faculty of Engineering
Electrical Power & Machines
Department
2019/2020
Academic Supervisors
Prof. Dr.
Ahmed Deyaa El-Koshairy
Electrical Power & Machines
Eng.
Department
Faculty of Engineering
Ain Shams University
Assoc. Prof. Dr.
Adel Abdel-Moneim
Electrical Power & Machines
Eng.
Department
Faculty of Engineering
Ain Shams University
HOME
AUTOMATION
SYSTEM
First Meetings
4
UNDERSTANDING
THE PROJECT
PUTTING A PLAN OFFERING
PROPOSALS
Choosing Topics
• Home Automation System
• Smart Plug Application
Controller
Why PLC?
Little electrical design is required
Easy programming
PLC applications are typically highly customized systems
PLC used in large I/O systems
TRACKS
Light Control Temp Control Security
DESIGN
EXECUTION
• Phase 1 & 2
• Coronavirus Pandemic
Feasibility study
Feasibility study
introduction
• Definition:
 evaluation and analysis of a project or system that somebody has proposed.
• Goal:
 The study tries to determine whether the project is technically, legally and
financially feasible, means whether the project is feasible within the estimated
cost.
• When
 -during the project lifecycle -after the business case.
Go
No-go
TECHNICAL
FEASIBILITY
FINANCIAL
FEASIBILITY
MARKET
FEASIBILITY
Scope management
• Vision:
Luxurious touch as it should be with great savings of energy and money.
• Mission:
Energy management, Customer satisfaction, comfort, and electricity bill are
our duties.
• Objectives:
the project aims to save our usage of electricity which reflect on the bill and the
energy demand.
 This project mainly aims to solve the energy problem the government or the
country is facing in the upcoming years.
 Spreading the awareness about the importance of energy savings.
Components of feasibility study:
• Executive summery:
 we mainly took about who we are, what the problems we solve and the
solution.
 this part summarize the whole feasibility study document.
Components of feasibility study:
• Why this this project and it’s goal:
 This could be discussed from 3 prospective:
1) General:
 It helps in solving the electrical power problem and the consumption efficiency.
2) Egypt:
 Egypt is seeking to be Industrial country which means we should save energy from old
loads.
 Peak hours loading.
3) Customers:
 Save money from electricity bill.
 This could be a replacement for smart meters.
Technical feasibility
• It helps in determining whether the technical resources meet capacity
and whether the technical team is capable to convert the ideas into
working systems.
 Ability to Execute:
 Do we have the knowledge required?
 Most of required knowledge needed is available in us and we have sources
where we can get the knowledge required like our supervisors or connections
 Can we get the components required?
• Our searches say yes most of materials available in the market
Market feasibility
 Market feasibility studies help identify market competition, potential markets,
and market analysis to assess a business idea.
 Customer segmentation:
 project target mainly upper-middle class and higher class in the long-term goal.
 But for the short-term goal we can specify upper class as a start.
 Then build our brand and increase our knowledge going through customer
relationship stations, then target another small segment.
Market feasibility
• Competition:
1) From concept or technical prospective:
 Our main competitor in the market is KNX.
Our project KNX
Control logic same same
Cost Low High
Technicalities Needs a specialist to
program the system
Easy to program but needs a high cost
certification to program the system
Installation Very easy Complex and need to be planned from beginning
Flexibility High High
Components Can be from various
manufacturers
Need to be from same manufacturer
Scale of application Small and medium scale Upper medium and large scale
Starts from 500m
Market feasibility
• Also, there is more competitors we care about like:
1. OT-SOLUTIONS
2. DOMI
3. LEGRAND
4. ENTECH
5. TCI.
• So, it is not a blue ocean market, but we have chances.
 Why we are different?
• We mainly focus in the quality, but the price is one of our main values we propose.
• Our components will be open source system.
• We will provide good maintenance service and communicate regularly with them to
build good customer channel and relation.
Financial feasibility study
• Its related to how much start-up money is needed, sources of capital, returns on
investment, and other financial considerations.
Sources of funding we can use:
1-angel investors.
2-incubators and accelerators.
3-bank loans.
4-capital ventures.
Analysis
• We made a questionnaire on social media to collect data and we have got data of
160 apartment data.
• Results
 Main customers interested in trying our project located in CAIRO.
 Responses from:
 Apartments = 91.84%, Villas = 6.91%, Offices = 1.25%
 Areas ranges  75 m2:500 m2
 Average Area = 150 m2
 76.1% have Air Conditioners
 Average number of AC devices is 2
 Average AC is 1.5 HP
 Electricity Bill ranges  70 EGP: 4000 EGP
 Average bill = 510 EGP
Analysis
• According to calculations by the Fraunhofer Institute, smart home control can
save up to 40% of heating costs.
• That is certainly the ideal scenario. After all, heating costs depend on many
factors and therefore many manufacturers report savings of up to 30% per year
which seems a realistic and achievable value.
• So, the average of the bill charge will be in range of 355 EGP
Materials cost
• According to our tests we found that PIR sensor can cover up to 56 m2
• Then in average we will need about 3:4 sensors to cover an average apartment
• PIR sensor price = 200 EGP
• LDR price = 50 EGP
• BT100 sensor price = 120 EGP
• Controller price = 5000 EGP
• Wiring price = 750 EGP
Materials cost
• Cost-Benefit Analysis
• Investment = 6720 EGP
• Saving/year = 1860 EGP
• Interest rate in Egypt = 9.75%
• Lifetime of components = 10-15 years
NPV calculations:
• 𝑁𝑃𝑉1 = −6720 +
1860
1.0975
= −5,025 𝐸𝐺𝑃
• 𝑁𝑃𝑉2 = −6720 +
1860
1.0975
+
1860
1.0975 2 = −3,481 𝐸𝐺𝑃
• 𝑁𝑃𝑉3 = −6720 +
1860
1.0975
+
1860
1.0975 2 +
1860
1.0975 3 = −2,074 𝐸𝐺𝑃
• 𝑁𝑃𝑉4 = −6720 +
1860
1.0975
+
1860
1.0975 2 +
1860
1.0975 3 +
1860
1.0975 4 = −792 𝐸𝐺𝑃
• 𝑁𝑃𝑉5 = −6720 +
1860
1.0975
+
1860
1.0975 2 +
1860
1.0975 3 +
1860
1.0975 4 +
1860
1.0975 5 = 376 𝐸𝐺𝑃
• Payback Period = 4.668 years
• Cash Flow Return Rate = 11.91% per year
• ROI = 29.2%
• Depending on our calculations we can say
that the project is Feasible
Questions
Smart
Home
Lighting
Introduction
• Lighting control systems are widely used on both indoor and outdoor
• Serve to provide the right amount of light where and when it is needed.
• minimize the energy cost
• maximize the energy savings
• satisfy building codes, or comply with green building and energy
conservation programs
Component
 PIR
 Principle, Range, Price
 Challenges
• Weak signal
• Mosfet or Op Amp
Electronic Relay
Component
 LDR  Electromechanical
Relay
Scenario
Ladder code
Block diagram
PIR
Sensor
LDR
Sensor
Relays PLC
Control
PanelRelay
Led
I/P O/P
HOME
SECURITY
SYSTEM
Why Home Security Systems ?
Protect and Secure Your Home
with a Home Security System
Good for Fire Protection if You
Have a Security System
Protect You from ”Odorless” Gas
with the System
Why Home Security Systems ?
Pros: All the reasons
and importance
listed are the pros
for a security system
at home.
Cons: Some security
systems may cost
you every month for
maintenance (while
some are not).
Types of Home Security Systems
1. Fire Alarm System
2. Glass Break Sensor
3. Gas Leak Detector
4. Burglar Alarm System
• A fire alarm system is used to detect and warn
the people through visual and audio appliances
when smoke, fire are present.
• It is comprised of a combination of
electrical/electronic devices working together to
detect the presence of fire.
• This PLC-based fire alarm system detects
smoke, heat etc. the appliance system has
buzzer for alarming and water sprayer to stop
the fire.
TYPES OF
ALARM
SYSTEMS
HEAT DETECTORS
• FIXED-TEMPERATURE
HEAT DETECTORS
• RATE -OF- RISE HEAT
DETECTORS
SMOKE DETECTOR
• PHOTOELECTRIC SMOKE
DETECTOR
• IONIZATION SMOKE
DETECTOR
RANGE OF FIRE DETECTOR
• For smoke detector:
 General spacing guidance: 5m from a wall,
10m between detectors.
• Heat detector:
 General spacing guidance: 3.5m from a
wall, 7.5m between detectors.
COMPONENTS OF FIRE ALARM SYSTEM
1. Photoelectric
Smoke
Detector
2. Fire alarm
(Buzzer)
3. Lamp 4. foam
BLOCK DIAGRAM
FLOWCHART
Air Conditioning control
Energy consumption
• Growth in energy due to increase of temperature.
• Saving 30-40%.
System flow
chart
Connection
code
Questions
Smart Plug
Monitoring is always a plus
Smart Plug features:
On/Off control Energy
monitoring
Overheating
Protection
Voltage surges
Protection
Implementation
Cont.
Cont.
Current Sensor:
• Input: AC/DC current
• Output: DC Voltage
• Sensitivity: 66mv/A
• Increase Accuracy
Arduino code
Voltage
Sensor:
In details Later.
Energy
Calculations:
Current from Current sensor
Voltage from voltage sensor
Power factor = 0.8
Energy = 0.8 x V x I x Time
Implementation
Overheating protection:
To protect
plug
Temp > 65
Disconnects
plug
Questions
Thank you

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Graduation project "home automation system"

  • 2. Ain Shams University Faculty of Engineering Electrical Power & Machines Department 2019/2020 Academic Supervisors Prof. Dr. Ahmed Deyaa El-Koshairy Electrical Power & Machines Eng. Department Faculty of Engineering Ain Shams University Assoc. Prof. Dr. Adel Abdel-Moneim Electrical Power & Machines Eng. Department Faculty of Engineering Ain Shams University
  • 5. Choosing Topics • Home Automation System • Smart Plug Application
  • 6. Controller Why PLC? Little electrical design is required Easy programming PLC applications are typically highly customized systems PLC used in large I/O systems
  • 7. TRACKS Light Control Temp Control Security
  • 9. EXECUTION • Phase 1 & 2 • Coronavirus Pandemic
  • 12. introduction • Definition:  evaluation and analysis of a project or system that somebody has proposed. • Goal:  The study tries to determine whether the project is technically, legally and financially feasible, means whether the project is feasible within the estimated cost. • When  -during the project lifecycle -after the business case. Go No-go
  • 14. Scope management • Vision: Luxurious touch as it should be with great savings of energy and money. • Mission: Energy management, Customer satisfaction, comfort, and electricity bill are our duties. • Objectives: the project aims to save our usage of electricity which reflect on the bill and the energy demand.  This project mainly aims to solve the energy problem the government or the country is facing in the upcoming years.  Spreading the awareness about the importance of energy savings.
  • 15. Components of feasibility study: • Executive summery:  we mainly took about who we are, what the problems we solve and the solution.  this part summarize the whole feasibility study document.
  • 16. Components of feasibility study: • Why this this project and it’s goal:  This could be discussed from 3 prospective: 1) General:  It helps in solving the electrical power problem and the consumption efficiency. 2) Egypt:  Egypt is seeking to be Industrial country which means we should save energy from old loads.  Peak hours loading. 3) Customers:  Save money from electricity bill.  This could be a replacement for smart meters.
  • 17. Technical feasibility • It helps in determining whether the technical resources meet capacity and whether the technical team is capable to convert the ideas into working systems.  Ability to Execute:  Do we have the knowledge required?  Most of required knowledge needed is available in us and we have sources where we can get the knowledge required like our supervisors or connections  Can we get the components required? • Our searches say yes most of materials available in the market
  • 18. Market feasibility  Market feasibility studies help identify market competition, potential markets, and market analysis to assess a business idea.  Customer segmentation:  project target mainly upper-middle class and higher class in the long-term goal.  But for the short-term goal we can specify upper class as a start.  Then build our brand and increase our knowledge going through customer relationship stations, then target another small segment.
  • 19. Market feasibility • Competition: 1) From concept or technical prospective:  Our main competitor in the market is KNX. Our project KNX Control logic same same Cost Low High Technicalities Needs a specialist to program the system Easy to program but needs a high cost certification to program the system Installation Very easy Complex and need to be planned from beginning Flexibility High High Components Can be from various manufacturers Need to be from same manufacturer Scale of application Small and medium scale Upper medium and large scale Starts from 500m
  • 20. Market feasibility • Also, there is more competitors we care about like: 1. OT-SOLUTIONS 2. DOMI 3. LEGRAND 4. ENTECH 5. TCI. • So, it is not a blue ocean market, but we have chances.  Why we are different? • We mainly focus in the quality, but the price is one of our main values we propose. • Our components will be open source system. • We will provide good maintenance service and communicate regularly with them to build good customer channel and relation.
  • 21. Financial feasibility study • Its related to how much start-up money is needed, sources of capital, returns on investment, and other financial considerations. Sources of funding we can use: 1-angel investors. 2-incubators and accelerators. 3-bank loans. 4-capital ventures.
  • 22. Analysis • We made a questionnaire on social media to collect data and we have got data of 160 apartment data. • Results  Main customers interested in trying our project located in CAIRO.  Responses from:  Apartments = 91.84%, Villas = 6.91%, Offices = 1.25%  Areas ranges  75 m2:500 m2  Average Area = 150 m2  76.1% have Air Conditioners  Average number of AC devices is 2  Average AC is 1.5 HP  Electricity Bill ranges  70 EGP: 4000 EGP  Average bill = 510 EGP
  • 23. Analysis • According to calculations by the Fraunhofer Institute, smart home control can save up to 40% of heating costs. • That is certainly the ideal scenario. After all, heating costs depend on many factors and therefore many manufacturers report savings of up to 30% per year which seems a realistic and achievable value. • So, the average of the bill charge will be in range of 355 EGP
  • 24. Materials cost • According to our tests we found that PIR sensor can cover up to 56 m2 • Then in average we will need about 3:4 sensors to cover an average apartment • PIR sensor price = 200 EGP • LDR price = 50 EGP • BT100 sensor price = 120 EGP • Controller price = 5000 EGP • Wiring price = 750 EGP
  • 25. Materials cost • Cost-Benefit Analysis • Investment = 6720 EGP • Saving/year = 1860 EGP • Interest rate in Egypt = 9.75% • Lifetime of components = 10-15 years
  • 26. NPV calculations: • 𝑁𝑃𝑉1 = −6720 + 1860 1.0975 = −5,025 𝐸𝐺𝑃 • 𝑁𝑃𝑉2 = −6720 + 1860 1.0975 + 1860 1.0975 2 = −3,481 𝐸𝐺𝑃 • 𝑁𝑃𝑉3 = −6720 + 1860 1.0975 + 1860 1.0975 2 + 1860 1.0975 3 = −2,074 𝐸𝐺𝑃 • 𝑁𝑃𝑉4 = −6720 + 1860 1.0975 + 1860 1.0975 2 + 1860 1.0975 3 + 1860 1.0975 4 = −792 𝐸𝐺𝑃 • 𝑁𝑃𝑉5 = −6720 + 1860 1.0975 + 1860 1.0975 2 + 1860 1.0975 3 + 1860 1.0975 4 + 1860 1.0975 5 = 376 𝐸𝐺𝑃 • Payback Period = 4.668 years • Cash Flow Return Rate = 11.91% per year • ROI = 29.2%
  • 27. • Depending on our calculations we can say that the project is Feasible
  • 30. Introduction • Lighting control systems are widely used on both indoor and outdoor • Serve to provide the right amount of light where and when it is needed. • minimize the energy cost • maximize the energy savings • satisfy building codes, or comply with green building and energy conservation programs
  • 31. Component  PIR  Principle, Range, Price  Challenges • Weak signal • Mosfet or Op Amp
  • 32. Electronic Relay Component  LDR  Electromechanical Relay
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  • 38. Why Home Security Systems ? Protect and Secure Your Home with a Home Security System Good for Fire Protection if You Have a Security System Protect You from ”Odorless” Gas with the System
  • 39. Why Home Security Systems ? Pros: All the reasons and importance listed are the pros for a security system at home. Cons: Some security systems may cost you every month for maintenance (while some are not).
  • 40. Types of Home Security Systems 1. Fire Alarm System 2. Glass Break Sensor 3. Gas Leak Detector 4. Burglar Alarm System
  • 41. • A fire alarm system is used to detect and warn the people through visual and audio appliances when smoke, fire are present. • It is comprised of a combination of electrical/electronic devices working together to detect the presence of fire. • This PLC-based fire alarm system detects smoke, heat etc. the appliance system has buzzer for alarming and water sprayer to stop the fire.
  • 42. TYPES OF ALARM SYSTEMS HEAT DETECTORS • FIXED-TEMPERATURE HEAT DETECTORS • RATE -OF- RISE HEAT DETECTORS SMOKE DETECTOR • PHOTOELECTRIC SMOKE DETECTOR • IONIZATION SMOKE DETECTOR
  • 43. RANGE OF FIRE DETECTOR • For smoke detector:  General spacing guidance: 5m from a wall, 10m between detectors. • Heat detector:  General spacing guidance: 3.5m from a wall, 7.5m between detectors.
  • 44. COMPONENTS OF FIRE ALARM SYSTEM 1. Photoelectric Smoke Detector 2. Fire alarm (Buzzer) 3. Lamp 4. foam
  • 48. Energy consumption • Growth in energy due to increase of temperature. • Saving 30-40%.
  • 51. code
  • 53. Smart Plug Monitoring is always a plus
  • 54. Smart Plug features: On/Off control Energy monitoring Overheating Protection Voltage surges Protection
  • 56. Cont.
  • 57. Cont.
  • 58. Current Sensor: • Input: AC/DC current • Output: DC Voltage • Sensitivity: 66mv/A • Increase Accuracy
  • 61. Energy Calculations: Current from Current sensor Voltage from voltage sensor Power factor = 0.8 Energy = 0.8 x V x I x Time
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