Uploaded September 2012 | Updated September 2026, 2 weeks ago
A people counter is a device used to measure the number and direction of people traversing a certain passage or entrance per unit time. The resolution of the measurement is entirely dependent on the sophistication of the technology employed. The device is often used at the entrance of a building so that the total number of visitors can be recorded. Many different technologies are used in people counter devices, such as infrared beams, computer vision, thermal imaging and pressure-sensitive mats
Infrared beams
The simplest form of counter is a single, horizontal infrared beam across an entrance which is typically linked to a small LCD display unit at the side of the doorway or can also be linked to a PC or send data via wireless links and GPRS. Such a beam counts a 'tick' when the beam is broken, therefore it is normal to divide the 'ticks' by two to get visitor numbers. Dual beam units are also available from some suppliers and can provide low cost directional flow 'in' and 'out' data. Accuracy depends highly on the width of the entrance monitored and the volume of traffic.
Horizontal Beam Counters usually require a receiver or a reflector mounted opposite the unit with a typical range up to 6 metres (20 ft), although range finding beam counters which do not require a reflector or receiver usually have a shorter range of around 2.5 metres (8 ft 2 in).
Vertical beams are somewhat more accurate than horizontal, with accuracies of over 90% possible if the beams are very carefully placed. Typically they do not give 'in and out' information, although some directional beams do exist.
Computer vision
Computer vision systems typically use either a closed-circuit television camera or IP camera to feed a signal into a computer or embedded device. Some computer vision systems have been embedded directly into standard IP network cameras. This allows for distributed, cost efficient and highly scalable systems where all image processing is done on the camera using the standard built in CPU. This also dramatically reduces band width requirements as only the counting data has to be sent over the Ethernet.
Accuracy varies between systems and installations as background information needs to be digitally removed from the scene in order to recognize, track and count people. This means that CCTV based counters can be vulnerable to light level changes and shadows, which can lead to inaccurate counting. Lately, robust and adaptive algorithms has been developed that can compensate for this behavior and excellent counting accuracy can today be obtained for both outdoor and indoor counting using computer vision
Main concept behind this project is to measure and display the number of persons entering in any room like seminar hall, conference room. LCD or seven segment display display placed outside the room displays this value. And when number of persons inside the room are zero, power supply inside the room can be cut using a relay interface. Second part of project serves the functionality of a door-latch opening using a password entered through keypad. As well as sending this data to a computer through serial port. This module also turn on buzzer if 3 wrong passowords are entered consequently. User can change this password anytime he/she wish using a keypad.
Circuit designs (C) tishitu
written contents from Wikipedia
Audio by rumblefish
-~-~~-~~~-~~-~-
Please watch: "Lifi Communication by Arduino UNO Download Project"
youtube.com/watch?v=c4gC8dbaiZg
-~-~~-~~~-~~-~-
A people counter is a device used to measure the number and direction of people traversing a certain passage or entrance per unit time. The resolution of the measurement is entirely dependent on the sophistication of the technology employed. The device is often used at the entrance of a building so that the total number of visitors can be recorded. Many different technologies are used in people counter devices, such as infrared beams, computer vision, thermal imaging and pressure-sensitive mats
Infrared beams
The simplest form of counter is a single, horizontal infrared beam across an entrance which is typically linked to a small LCD display unit at the side of the doorway or can also be linked to a PC or send data via wireless links and GPRS. Such a beam counts a 'tick' when the beam is broken, therefore it is normal to divide the 'ticks' by two to get visitor numbers. Dual beam units are also available from some suppliers and can provide low cost directional flow 'in' and 'out' data. Accuracy depends highly on the width of the entrance monitored and the volume of traffic.
Horizontal Beam Counters usually require a receiver or a reflector mounted opposite the unit with a typical range up to 6 metres (20 ft), although range finding beam counters which do not require a reflector or receiver usually have a shorter range of around 2.5 metres (8 ft 2 in).
Vertical beams are somewhat more accurate than horizontal, with accuracies of over 90% possible if the beams are very carefully placed. Typically they do not give 'in and out' information, although some directional beams do exist.
Computer vision
Computer vision systems typically use either a closed-circuit television camera or IP camera to feed a signal into a computer or embedded device. Some computer vision systems have been embedded directly into standard IP network cameras. This allows for distributed, cost efficient and highly scalable systems where all image processing is done on the camera using the standard built in CPU. This also dramatically reduces band width requirements as only the counting data has to be sent over the Ethernet.
Accuracy varies between systems and installations as background information needs to be digitally removed from the scene in order to recognize, track and count people. This means that CCTV based counters can be vulnerable to light level changes and shadows, which can lead to inaccurate counting. Lately, robust and adaptive algorithms has been developed that can compensate for this behavior and excellent counting accuracy can today be obtained for both outdoor and indoor counting using computer vision
Main concept behind this project is to measure and display the number of persons entering in any room like seminar hall, conference room. LCD or seven segment display display placed outside the room displays this value. And when number of persons inside the room are zero, power supply inside the room can be cut using a relay interface. Second part of project serves the functionality of a door-latch opening using a password entered through keypad. As well as sending this data to a computer through serial port. This module also turn on buzzer if 3 wrong passowords are entered consequently. User can change this password anytime he/she wish using a keypad.
Circuit designs (C) tishitu
written contents from Wikipedia
Audio by rumblefish
-~-~~-~~~-~~-~-
Please watch: "Lifi Communication by Arduino UNO Download Project"
youtube.com/watch?v=c4gC8dbaiZg
-~-~~-~~~-~~-~-



![TISHITU SCADA Basic Tank Filling Plant by Intouch Wonderware
Tishitu explains
The term SCADA usually refers to centralized systems which monitor and control entire sites, or complexes of systems spread out over large areas ( anything from an industrial plant to a nation). Most control actions are performed automatically by RTUs or by PLCs. Host control functions are usually restricted to basic overriding or supervisory level intervention. For example, a PLC may control the flow of cooling water through part of an industrial process, but the SCADA system may allow operators to change the set points for the flow, and enable alarm conditions, such as loss of flow and high temperature, to be displayed and recorded. The feedback control loop passes through the RTU or PLC, while the SCADA system monitors the overall performance of the loop.
SCADA (supervisory control and data acquisition) is a type of industrial control system (ICS). Industrial control systems are computer controlled systems that monitor and control industrial processes that exist in the physical world. SCADA systems historically distinguish themselves from other ICS systems by being large scale processes that can include multiple sites, and large distances.[1] These processes include industrial, infrastructure, and facility-based processes, as described below:
Industrial processes include those of manufacturing, production, power generation, fabrication, and refining, and may run in continuous, batch, repetitive, or discrete modes.
Infrastructure processes may be public or private, and include water treatment and distribution, wastewater collection and treatment, oil and gas pipelines, electrical power transmission and distribution, wind farms, civil defense siren systems, and large communication systems.
Facility processes occur both in public facilities and private ones, including buildings, airports, ships, and space stations. They monitor and control heating, ventilation, and air conditioning systems (HVAC), access, and energy consumption.
SCADA overview
Data acquisition begins at the RTU or PLC level and includes meter readings and equipment status reports that are communicated to SCADA as required. Data is then compiled and formatted in such a way that a control room operator using the HMI can make supervisory decisions to adjust or override normal RTU (PLC) controls. Data may also be fed to an Historian, often built on a commodity Database Management System, to allow trending and other analytical auditing.
SCADA systems typically implement a distributed database, commonly referred to as a tag database, which contains data elements called tags or points. A point represents a single input or output value monitored or controlled by the system. Points can be either hard or soft. A hard point represents an actual input or output within the system, while a soft point results from logic and math operations applied to other points. (Most implementations conceptually remove the distinction by making every property a soft point expression, which may, in the simplest case, equal a single hard point.) Points are normally stored as value-timestamp pairs: a value, and the timestamp when it was recorded or calculated. A series of value-timestamp pairs gives the history of that point. It is also common to store additional metadata with tags, such as the path to a field device or PLC register, design time comments, and alarm information.
SCADA systems are significantly important systems used in national infrastructures such as electric grids, water supplies and pipelines. However, SCADA systems may have security vulnerabilities, so the systems should be evaluated to identify risks and solutions implemented to mitigate those risks.
TISHITU
ISO: 9001-2008
RESEARCH AND CONSULTANCY CELL OF INDUSTRIAL APPLICATION
A Joint Accreditation System of Australia and New Zealand
Copyright © All Rights Reserved www.tishitu.org Reg No.08122629691/SSI
Accreditation No. M3111204IN
-~-~~-~~~-~~-~-
Please watch: Lifi Communication by Arduino UNO Download Project
https://www.youtube.com/watch?v=c4gC8dbaiZg
-~-~~-~~~-~~-~- TISHITU SCADA Basic Tank Filling Plant by Intouch Wonderware](https://i.ytimg.com/vi/qJrH-PDgAlI/mqdefault.jpg)

![TISHITU LED Glow Bluetooth Arduino & Android App Inventor (MIT) Tutorial Part-2
Tishitu explains
Bluetooth is a type of wireless communication used to transmit voice and data at high speeds using waves of radio. It’s widely used in mobile phones for making calls, headset and share data. This type of communication is a cheap and easy way to control something remotely using arduino.
HC-06 module has 4 pins to be connected to arduino, they are:
RXD
TXD
VCC
GND
RXD will receive data from arduino; TXD will send data to arduino; VCC is the power supply (3.3V 6.6V) and GND is the ground.
You gotta pay attention about the RXD level, some modules work with 5V, but this one works with 3.3V, and arduino TX will send a 5V signal, then it needs a voltage divider.]
The sketch for this Project is very simple, all you have to do is check the serial port if there’s data available.
Using an android phone with a spp bluetooth apk, the command is sent to bluetooth (RX/TX). What happens is the bluetooth module communicates with androids bluetooth using a profile called SPP (Serial Port Profile). It emulates a USB Port connected to arduino and android.
Circuit and Code below :-
https://drive.google.com/open?id=0B_TvVzmR3OQ0QkpoNThhYjdRZlU
CODE
https://drive.google.com/open?id=0B_TvVzmR3OQ0UlpUUDBEN1UyMWM
TISHITU
ISO: 9001-2008
RESEARCH AND CONSULTANCY CELL OF INDUSTRIAL APPLICATION
A Joint Accreditation System of Australia and New Zealand
Copyright © All Rights Reserved www.tishitu.org Reg No.08122629691/SSI
Accreditation No. M3111204IN
-~-~~-~~~-~~-~-
Please watch: Lifi Communication by Arduino UNO Download Project
https://www.youtube.com/watch?v=c4gC8dbaiZg
-~-~~-~~~-~~-~- TISHITU LED Glow Bluetooth Arduino & Android App Inventor (MIT) Tutorial Part-2](https://i.ytimg.com/vi/rHIIZajn2Jo/mqdefault.jpg)




![HHO Pipe Flash Back Arrestor
Tishitu explains
Whats Electrolysis?
Electrolysis is the process of using electricity to split water into hydrogen and oxygen. Typically we seek hydrogen gas or oxygen gas. When both are bubbled up and collected together - we create a burnable fuel.
Whats HHO?
The combination of hydrogen gas (H2) and oxygen gas (O2) together is called HHO. It is also known as oxyhydrogen and Browns Gas. HHO is fuel. Burning HHO creates water vapor, in other words - water! HHO is a very green fuel.
Whats a Mileage Booster?
An electrolysis device is called an electrolyzer cell, booster cell, or HHO generator. When the HHO is piped into the air intake, the engine burns it as fuel. Using water for fuel reduces normal fuel consumption; However, boosting draws from the alternator (engine power). So, mileage gains are a subject of debate. We have observed gains from -8% to +20%. There are no guarantees & each vehicle responds differently. Expect to tinker to achieve higher mileage gains.
Is Hydrogen Safe?
Yes and No. Hello, We are dealing with explosive gasses! Use extreme caution in testing and adhere to safety guidelines in your builds. Be Safe! Property damage or serious injury may occur. Storing hydrogen, like any other fuel, is generally considered an unsafe practice. However, HHO must never be stored. If sparked, HHO is able to detonate inside the sealed storage container. Do not allow HHO to accumulate. By design, incorporate flash venting into HHO equipment. Self-sealing flash ports, flashback suppressors, bubblers, and engine-on power switching are core components to a safe HHO booster system.
Whats a Container Cell?
Previously, the common cell design was a container cell. Stainless plates or tubes were submerged into an outer container. Container cells suffer from severe voltage leaks and lower efficiency.
Why use Neutral Plates?
Car batteries are 12 volts. Alternators are about 14 volts. Target plate voltage is about 2.2 volts. Overdriving plates wastes energy, creates unwanted heat, and leaches chromium. Adding neutral plates between electrode plates divides the voltage down and dramatically increases efficiency. We researched and proved that using neutral plate technology doubled efficiency. Ironheads open source s-cell gets popular and D3 establishes the 4.3 MMW efficiency milestone. Neutral plate efficiency is standard in the public domain after 2007.
Efficiency -vs- Output
The controls for raising HHO output are: greater plate surface area, stronger electrolyte solution, thinner gaskets, and less neutral plates! Two electrode [12 volt] boosters are only 1.0 MMW Novices quickly learn that even small cells can draw 70 amps. In most cases, Efficiency is far more important than output volume. This becomes critical when seeking mileage boosting gains. The ultimate prerequisite and drive for efficiency comes in researching the self-running hho engine. The factors for raising efficiency are: more steel (higher ss cost), more neutral plates (bell curve), no voltage leaks (holes in plates), lower elyte bonding energy {on the periodic chart - notice Potassium (K) is more efficient than Sodium (Na)}. It took years of research to bring you this list!
MMW
D3 developed a measurement standard to allow dissimilar cell designs to be analyzed and compared with out saying it looks like this one has more bubbles. Really - it was a problem! MMW efficiency output (milliliters per minute per watt) allows any cell to be compared directly to any other cell or design. Divide the hho output produced in a minute (ml) by the watts used in that minute (w). Thus, ml/w = MMW rating. If people do not have a cell MMW rating - you probably should not purchase from them. Whether being slippery or just ignorant, there are better people to work with. Further problems where identified with MMW. Two electrode cells at 12 volts create steam in the hho. This was refined by temperature adjusting the hho to room temperature. Warm hho or hot hho with water vapor erroneously scores higher in MMW, temperature adjusting to cold hho (STP) is a more accurate MMW rating.
TISHITU
ISO: 9001-2008
RESEARCH AND CONSULTANCY CELL OF INDUSTRIAL APPLICATION
A Joint Accreditation System of Australia and New Zealand
Copyright © All Rights Reserved www.tishitu.org Reg No.08122629691/SSI
Accreditation No. M3111204IN
-~-~~-~~~-~~-~-
Please watch: Lifi Communication by Arduino UNO Download Project
https://www.youtube.com/watch?v=c4gC8dbaiZg
-~-~~-~~~-~~-~- HHO Pipe Flash Back Arrestor](https://i.ytimg.com/vi/uQ0wIHmB1hE/mqdefault.jpg)