Communication can be difficult, inconvenient, etc., between speakers and non-speakers, such as dumb and deaf persons. By creating a portable glove that records the user's motions and outputs the translated text on a device, this project aims to close the communication gap. Flex sensors are incor...
Communication can be difficult, inconvenient, etc., between speakers and non-speakers, such as dumb and deaf persons. By creating a portable glove that records the user's motions and outputs the translated text on a device, this project aims to close the communication gap. Flex sensors are incorporated inside the glove to monitor finger flexion and interfinger contact. The gesture is recognized from a library of learnt gestures by the Raspberry Pi microcontroller in the glove through analysis of the sensor inputs. Therefore, we are going to develop and construct a glove that will interpret sign language into spoken English and be worn on the right hand. Since each person's hand is different in size and shape, we wanted to develop a tool that could translate text reliably despite these variations. Five Spectra Symbol Flex-Sensors are used by our system to measure the amount that each finger is bent. A Raspberry-pi microcontroller reads, averages, and arranges these sensors into packets. After that, a Raspberry Pi is serially sent these packets to execute a Python script on it. For every motion that needs to be translated in the end, the user generates data sets from the glove that are then trained over by the algorithm to forecast what the user is signing at runtime. Communication can be difficult, inconvenient, etc., between speakers and non-speakers, such as dumb and deaf persons. By creating a portable glove that records the user's motions and outputs the translated text on a device, this project aims to close the communication gap. Flex sensors are incorporated inside the glove to monitor finger flexion and interfinger contact. The gesture is recognized from a library of learnt gestures by the Raspberry Pi microcontroller in the glove through analysis of the sensor inputs. Therefore, we are going to develop and construct a glove that will interpret sign language into spoken English and be worn on the right hand. Since each person's hand is different in size and shape, we wanted to develop a tool that could translate text reliably despite these variations. Five Spectra Symbol Flex-Sensors are used by our system to measure the amount that each finger is bent. A Raspberry-pi microcontroller reads, averages, and arranges these sensors into packets. After that, a Raspberry Pi is serially sent these packets to execute a Python script on it. For every motion that needs to be translated in the end, the user generates data sets from the glove that are then trained over by the algorithm to forecast what the user is signing at runtime.Communication can be difficult, inconvenient, etc., between speakers and non-speakers, such as dumb and deaf persons. By creating a portable glove that records the user's motions and outputs the translated text on a device, this project aims to close the communication gap. Flex
Size: 9.71 MB
Language: en
Added: Jun 21, 2024
Slides: 23 pages
Slide Content
Wireless Charging Station By / Mostafa Adel Hamdan Hussein Sayed Ali Moatsem Ahmed Mahdi Martina Nageh Sobhy Marina Ayman Ghaly Youssef Ramadan Mohamed Dr/ Lubna Fekary Dr / Ahmed Fawzy Dr/ Eman Abd el Hady
Introduction What is the wireless charging? Wireless charging has been around since the late 19th century, when electricity pioneer Nikola Tesla demonstrated magnetic resonant coupling –
Tesla Model Y
Types of Charging
How does wireless charging work?
Block Diagram Solar Panel controller DC to AC inverter Transmitter circuit Battery Battery Or Mobile Or car Receiver circuit induction TX Coil RX Coil
1.Renewable Resource (Solar Panel)
2) Solar Charger Controller A charge controller or charge regulator is basically a voltage and/or current regulator to keep batteries from overcharging.
3.DC to AC inverter
Circuit diagram of inverter
4) Transmitter circuit 10 k 10 k LED Switch + 5 V - MOSFET
5) Coil Design
6) Receiver circuit
Calculations
Calculations
Calculations
Calculations To calculate the voltage (V 2 ) we will use the equation: for ideal case For practical = 4.3 V
To calculate the inductance of coil
Future Work
Dynamic Wireless Charging Battery Or Mobile Or car Receiver circuit RX Coil Dynamic Electric Vehicle with received coil to chare it In this step we can increase number of coils at transmitter the road to charge an Electric vehicle .
Dynamic wireless Charging many coils will be placed on a specific road for the car to drive on this road and will be charging