PowerPoint Presentation · 2017. 8. 3. · Smart Energy Conservation Intelligent Transportation...
Transcript of PowerPoint Presentation · 2017. 8. 3. · Smart Energy Conservation Intelligent Transportation...
Efftronics system pvt. Ltd
ISO 9001:2015
20000813 QM15
Approved by
RDSOGovt. of. India
Ministry of Railways
“R&D”
Recognized by
DSIR
Govt. of. India
Since 1985
Where the mind is without fear and the head is held high;
Where knowledge is free;
Where the world has not been broken up into fragments by narrow domestic walls
Where words come out from the depth of truth;
Where tireless striving stretches its arms towards perfection;
Where the clear stream of reason has not lost its way into the dreary desert sand of dead habit;
Where the mind is led forward by thee into ever-widening thought and action;
Into that heaven of freedom, My Father, let my country awake.
We are developing solutions for
Safe, Secure, Healthy, Pleasant, Efficient, Learnable,
Affordable, Entertainment, Sustainable
Dynamic Smart Cities
Smart Water Distribution Monitoring
Smart Environment
Smart Energy Conservation
Intelligent Transportation
System
Our Solutions for Smart Cities
Current problems
Potability
Limited Supply Uneven Distribution
Wastage
Smart Water
Critical Issues In Indian Context
Information flow from
bottom to up is not
truthful
People not
performing duties
To ensure right quality of water to be distributed
daily
To ensure right quantity of water daily to the public at
right time
To reduce cost of per unit water
Smart Water
OBJECTIVES
Reports &
Records
Uniform
distribution
Total
Accountability
Continuous
Monitoring
Continuous data assessment can ensure
Water Quality & Quantity
Automated reports helps in Taking Timely
Decisions And Planning
Total accountability in Water production
and Water distribution system.
Uniform distribution of water can be achieved
though out the supply area eliminating
imbalances.
BenefitsImproves quality of
service and overall
plant efficiency
Smart Water
Typical Drinking Water Distribution
Architecture Reports on BICS
Smart Water
Smart Water To ensure right quantity of water daily to the public at the right time
Key Issue Cause Effect Monitered Parameter
Water not reaching to last mile for sufficient duration of time
In effective scheduling Incomplete tank filling Water leakages Low capacity reservoirs in dense
populated area of households Improper planning of reservoirs
Supply in-balances
Water flow Water level Timeliness Duration
Ensuring right quantity for right duration of time:
SMS alerts in case of exceptions
Issues observed:
Severe imbalances in water distribution - One area getting 6 hrs. & another area 20 min water supply
Un-equitable distribution & Water not reaching to last mile
Improper distributed Reservoirs across plants
Low capacity reservoirs in dense populated areas
Real time monitoring of inflow, outflow & water level at plants & reservoirs
Real time monitoring of schedule adherence & duration adherence of water distribution
Timely trigger to plant personnel in case of deviations/abnormalities
Filling tanks during distribution to meet the demand in certain areas due to low capacity reservoirs
Measuring flow variations in various branches
Managing demand variations with historical filling & distribution patterns
Smart Water To ensure right quantity of water daily to the public at the right time
Graphical representation of
Flow, Level and Chlorine
Textual representation of present Flow, Level and Chlorine at reservoirs
Graphical representation Plant
outflow, Level, Energy, Pressure,
Efficiency etc
Textual representation of Plant outflow, Level, Energy, Pressure etc..
All reservoirs under a
plant
Smart Water To ensure right quantity of water daily to the public at the right time
Timeliness and Duration Monitoring
Smart Water To ensure right quantity of water daily to the public at the right time
Vijayawada Reservoirs Distribution Quantity Vs Time
Smart Water To ensure right quantity of water daily to the public at the right time
Ajith Signagar-1 Month-wise Distribution Quantity Vs Time
Smart Water To ensure right quantity of water daily to the public at the right time
Smart Water To ensure right quantity of water daily to the public at the right time
Arresting of pressure leakages
Problem : Pressure leakage in the distribution line will result inefficient distribution system. Proper water line pressure ensures supply for filling of reservoirs and briefs on pressure leakage in various sections.
Solution : With Installation of pressure and flow meters in strategic points as shown in below fig help in detection of pressure leakages. Then corrective actions are initiated.
Smart Water To reduce cost of per unitwater by reducing water losses
Key Issue Cause Effect Monitered Parameter
Water loss
Reservoir overflows
Direct supplies and bi-pass
usage
Leakages in main lines,
valves and joints
Unmetered consumption
Loss of water head
Pump inefficiencies
Revenue Loss
and increase in cost
of per unit water
Water flow
Water level
Energy consumption
Pressure
Arrest Overflows
Action :Real time monitoring of reservoir overflow actuate the alarm such that timely action is being taken by personnel
Arrest Overflows
Problem : There were 24 overflow instances found in one month and 4700 kilo liters of Purified water is lost in these Overflows.
Smart Water To reduce cost of per unitwater by reducing water losses
All the reservoirs are advised to take water in to the reservoir and then distribute instead of bi-passing thereservoir inlet.
Quantity is allocated based on the population
Untimely opening of valves Leakage through inlet after closing of valve
Leakages
Overflows
Exceptions
Smart Water To reduce cost of per unitwater by reducing water losses
Smart Water To reduce cost of per unitwater by reducing water losses
Smart Water To reduce cost of per unitwater by reducing water losses
Pumps effeciency is calculated using the information logged by system
Efficiency = (Head x Discharge) / Energy Consumed
Faulty pumps in the plants have been identified and are replaced with new pumps for water distribution
Pump Efficiency
Practical Pump efficiency curve
Possibility of 24/7 operation
Tests conducted at all plants and reservoirs
Comprehensive analysis conducted with the help of our solution
Found out that, it is possible to give 24/7 watersupply to the city with existing facilities withoutmuch investing on infrastructure
Smart Water To ensure right quality of water to be distributed
Key Issue Cause EffectMonitered Parameter
Acidity Containing carbon dioxideCorrosion and Clogging of pipes
pH
TurbiditySilt or mud in surface or ground
• Discoloration• Bad Taste
Turbidity
Polluted
• Presence of iron and manganese
• Contamination by organic matter or sewage
Diseases Chlorination
SMS alerts for exceptions
Real time monitoring of chlorination Chlorination ReportReal time monitoring of Tank
Cleaning
Real time monitoring of turbidity, pH & chlorine levels at plants & Reservoirs
Real time monitoring of reservoirs cleaning
Timely trigger of chlorine boosting in case of chlorine decay during distribution
Smart WaterWATER SUPPLY SHORTFALL AND
MITIGATION USING SCADA DURING FLOODS IN THE CITY
4 OCT 2009 TO 7 OCT 2009
Situation under flood
• Total installed capacity of Head Water Works - 40 MGD
• Treatment Plants shutdown due to flood - 19 MGD
• Operational capacity - 21 MGD
• Acute shortfall – ~50%
Result
• Reservoirs got enough quantity at right time
• Safe drinking water distributed at least one time a day
Action
• Opening of Interconnection of plants and distribution lines.
• Re-scheduling of filling sequence to meet the objective.
• Continuous online central monitoring and control using SCADA
• Filling right quantity
• Chlorine Level during delivery
• In Time Delivery
Objective under flood situation
• To provide safe drinking water
• To provide minimum water equally to everyone
Smart Water Case Study
VIJAYAWADA CITY
Population - 1.48 million (2014)
No. of households - 2,31,751 approx.
Area - 61.8 Sq. Kms.
Political Divisions - 59 Nos.
Annual Budget - Rs.1300 Crores approx.
Density -16,939/km2
Reduction of Unaccounted For Water
Plant Outflow (MGD)
Sum of all the reservoirs
UFW per day (MGD)
UFW
8.52 5.77 2.75 32.3 %
8.41 5.96 2.45 29.1 %
9.15 7.24 1.91 20.9 %
8.80 7.07 1.73 19.7 %
9.13 7.33 1.80 19.8 %
8.01 6.59 1.42 17.7 %
5.10 4.27 0.83 16.3 %
8.15 7.39 0.76 9.4 %
7.51 7.09 0.42 5.5 %
Results
For 8MGD plant
Smart Water Case Study
Results Over Flow cost of 1 Reservoir / Year = Rs 3.38 lakhs (~5K USD)
Line Leakage cost of 1 Reservoir / Year = Rs 9.45 lakhs (~14K USD)
Total Revenue loss due to leakage = Rs 12.83 lakhs (~19K USD)
Note : Production cost per Kilo liter is considered as Rs 6/-
Estimated revenue loss for total 59 reservoirs = 59 x 12.83 Lakhs = Rs. 757 lakhs
(~1.12 million USD)
Total Solution Cost is 25 % less than the revenue loss for one year
Schedule and duration adherence is
improved > 90%
150 LPCD supplied as per standards
Actual water supply which was 24
MGD before installation improved to
33 MGD within couple of months with
net 9 MGD increase
Smart Water Installations
Smart Water International Recognition
Intelligent Transportation System Current problems
Accidents
Environmental
impacts and energy
consumption
Traffic Congestion
Public transport
inadequacy
To provide ultimate control over city traffic
system
To ensure safe journey with increase in operational
efficiency
To provide real-time information for better
customer services
OBJECTIVES
Bus Information System
Adaptive Traffic Signals
Variable Message Signage
Wireless Traffic Management
System
Intelligent
Transportation
System
Traffic System Designing
Installation Gallery- Designed for Vijayawada Bandar Road ITMS
No Technology
Design Thinking
Travelling Speed
Non Stop
Waiting
Advantages
Intelligent Transportation System
After
Before
GPS Synchronization
WTMS Components
Intelligent Control Unit
3 in 1 Lamp
Pedestrian Lamp
Count down Timer
Blinker
Wireless Traffic Management System
Advanced Zigbee Technology
Solar Powered
ICU Master
LoopDetection
CameraDetection
Advantages
Operation Solar Powered Junction Pre Scheduling
Monitoring for Failures
Central Station Connectivity
No Road Trenching
Wireless Less Maintenance Low Power Consumption
Junction Sync.
Adaptive Traffic Signals
NTCP IP
Indian Meteorological Department
Police
Government
Public
Traffic Monitoring sensors
Traffic Monitoring
Sensors
Temperature and
Weather information.
Online messages for
mass
communication.
Safety signs for public
City Traffic
Information
Central Place
VMS display
Server Application Software
Client Application Software
Variable Message Signage Displays
Weather parameters info Live Traffic Alerts
Health Alerts Advertisements
News BulletinPublic Announcements
Weather Alerts
Use Cases
Road Signs
General info
Auto Intensity Control
Integrated to other systems
Various Viewing Angles
Auto Thermal shut down
More Distance
Controlling single or group
3G/GPRS
Multilingual
Benefits
On board Diagnostic report
Variable Message Signage Displays
SUB SYSTEMS
Front, side & rear displays
Inside display with voice
Console unit
Audio amplifier and speakers
Bus Stop Displays
GPS synchronization
Languages Support as
per UNICODE
Reliable proven
communication
protocols
E-Mark complied
Central Connectivity
through GPRS
Front Display Boards
Rear Display Board
Inner Display Boards
Side Display Boards
Integrated Audio Announcement System
LED Bus Stop DisplaysGPS
Bus Information System
IP54
Multi Color
Multi Lingual
Certified
ProtectionShock and Vibration
Resistant
Intensity Control
Less Power Consumption
Bus Information System
Installations
24/7
Operation
Effective Time
Utilization
Smooth journey
Reduces
Accidents
Access Control
Scheduling
Central
Controlling
Monitoring
Abnormalities
Benefits
S m a r t E n v i r o n m e n t Current problems
Over Pollution
Health Effects
Environmental
Disasters
Quick Weather
Forecasting, Analysing &
Passing Information To
Public
To prevent the negative effects
of pollution on nature and our
lives too
To improve the Quality of life by
improving Quality of living spaces
To communicate safety
measures with public during
environmental disasters
OBJECTIVES
Air Temperature
Rainfall
Soil Moisture
Measured
Parameters
Leaf Wetness
Relative Humidity
Atmospheric Pressure
Wind Speed & Direction
Visibility
and more....
Solutions- Automatic Weather Station
Air Temperature Relative Humidity Atomospheric Pressure Rainfall Wind Speed
Soil MoistureSoil Temperature Solar Radiation Carbon Dioxide Visibility
Measured Parameters
Solutions- Automatic Weather Station
Architecture Salient Features
High accurate measurements
Data transfer to multiple data servers
Stored data retrieval from datalogger using smart phones / tablet/PC
Data quality validation using WMO QC methods
Sleep mode functionality for power saving.
Solar powered
Solutions- Automatic Weather Station
Online Graphical Representation of Weather Data
Historical Data Analysis
Applications
Meteorology
Hydrology
Agriculture
Flood and Drought Monitoring
Pollution Monitoring
Evapotranspiration stations
Avalanche Monitoring
Urban Infrastructure
Management
Industries
Insurance
Advantages
Retransmit upon network failure
Log from 1Sec
Local Storage
Data QC using WMO Standards
Accuracy
3G & GPRS communication
Solutions- Indoor Air Quality
IAQ status in Mobile/Tab/Web
TOILETS:
Ventilation and Thermal comfort
(Temp, Rel.Humidity, CO2 and
VOC’s)
KITCHEN:
Ventilation and Thermal comfort
(Temp, Rel.Humidity, CO2 and
VOC’s)
BEDROOMS/LIVING ROOMS:
Thermal Comfort and Air Freshness
(Temperature, Relative Humidity, and
CO2)
Solutions- Indoor Air Quality
Indoor Plants: Light Intensity Vs CO2 absorption
Lighting provided Zamioculcas plant
(ppm/minute)
Money plant
(ppm/minute)
Light intensity of 100 Lux
(Normal office lighting)1.39 (Emission) 0.63 (Emission)
Light intensity of 10,000 Lux 2.81 (absorption)
4.25 with initial CO2 1700 ppm
3.31 with initial CO2 1200 ppm
2.56 with initial CO2 800 ppm
1.16 with initial CO2 400 ppm
0.13 with initial CO2 200 ppm
(absorption)
Conclusion : For normal bed room of volume 44 cubic metre and two persons sleeping, we need to place 250 plants
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temperature humidity co2 VOC_IAQ
VOC rise
during usage
of lavatoryVOC rise
during
cleaning
CO2 House-Toilet
CO2 House - Kitchen
Solutions- Indoor Air Quality
CO2 in Shopping Mall CO2 in Cars
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Temperature Humidity VOC_IAQ Co2
Air quality in Hospital
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Fitness center
Play Ground
Road Junction
Air Quality in Gym, Playground, Road Junction
Solutions-Urban Flood Monitoring
FEATURES
Prediction of flooding in city through modelling software
24 x 7 monitoring of rain fall in city
Better town planning for future and present
Study excess rainfall impact onriver flow
Reports Generation for research& academic discourses
Flood information evaluate flood controlactivities/projects
Track water's progress for the duration ofthe flood
Info dissemination through LED displays, mobile apps, websites
Alert Public- Motorists, Drivers, Pedestrians etc.
Flood
Smart Energy Conservation
OBJECTIVES
To light the streets with well integrated lighting
system
To provide Eco-friendly lighting with easy
maintenance
To lessen power consumption & energy
wastages
Solutions- Smart Street Lighting
• More useful light on Road
• 60 to 70 % Power Saving
• Designed for 10+ years Longer Life
• Very minimal light depreciation over time
• Dimming Control
• DC/Solar operated
• Centrally controlled with automatic dusk to dawn operation
Efftronics LED lighting solutions are result of years of research and development
Faster
Visual comfort
Value Proposition Unique Selling Points
Energy Saving Product Life
Smart ControlsUnconditional
DC Power-Pack For Home
Roof Top Solar Grid Vs DC Solar Power Pack