IoT provides networking to connect
IoT provides networking to enable
Some advanced IoT services will need to collect ________ and ________ segments of________ _________ ________ and turn it into operational __________ ________
Some sensor data types may have massive sizes due to _________ __________ of ________ _____________.
IoT databases will need ________Computing support
IoT data analysis will need ________support
Influence of IoT include
IoT influence of people includes more t_________ can be m_______ and c______ thus people will become more c _______
Influence of IoT of process includes m______ u_______ and m____ can collaborate in r______ t_______ thus more complex t_____ can be accomplished in lesser time.
Influence of IoT on Data
Collect d______ more f_______ and r______ thus Results are more accurate in d________ making.
Influence of IoT of Things
Economic Impact
• Predictions have been made that IoT has the potential to increase global corporate profits by _______ by the year______
Economic Impact
• M2M (___________) connections are i________ important
• P2P (___________) as well as
P2M (___________) & M2P (_____________) still represent the majority of IoT’s economic value
IoT Applications
s_______
T_______
H_______
U________
M________
S______&______
F________ M_________
IoT Applications
Security
S______ a________, a______ real-time object/people t______ and m_______
IoT Applications
Transportation
Fleet m__________, road s_______,
e________ control, t____payment, real-time t_______ m________, and many more ITS (I________T________ S_______) applications
IoT Applications
Healthcare
E-_______, personal s________, b______-s_______ based customized healthcare systems
IoT Architecture Layers
should be the very first slide
a__________
m_________
g__________
s__________
IoT Architecture Layers
Sensor Layer
Sensors connectivity and Network
LAN
wifi
Ethernet
PAN
UWB
ZigBee
Bluetooth
6LoW
Wired
Sensors/Actuators
Solid State
Photochemistry
Infrared
Catalytic
GPS
Accelerometer
Gyroscope
photo electric
Tag
R_____
B_____
Sensor Layer
Made up of s_______ and s_______devices
• R_______ information to be c________and p_________
• Sensors use l_____ power and low d_____ rate connectivity
• WSN (W_______S________ N_______) formation
• Sensors are grouped according to their p_______ and d____ t______
e.g., environmental sensors, military sensors, body sensors, home sensors, surveillance sensors, etc.)

Sensor Aggregators (Gateways)
• LAN (Local Area Network): Ethernet and Wi-Fi connections
• PAN (Personal Area Network): ZigBee, Bluetooth, and 6LowPAN
• Sensors which do not require connectivity to a LAN gateway can be directly connected to the Internet through a WAN (Wide Area Network) interface

Gateway & Network Layer

Gateway & Network Layer
• Must support massive volumes of IoT data produced by wireless sensors and smart devices
• Requires a robust and reliable performance, regarding private, public or hybrid network models
• Network models are designed to support the communication QoS requirements for latency, error probability, scalability, bandwidth, security, while achieving high levels of energy efficiency
Gateway & Network Layer
• It is important to integrate different types of networks into a
single IoT platform
• IoT sensors are aggregated with various types of protocols
and heterogeneous networks using different technologies
• IoT networks need to be scalable to efficiently
serve a wide range of services and applications over large scale networks