Tactile Internet

Communication Infrastructure

Capacity

High availability

High reliability

Security

5G

Additional Spectrum (GHz)

Resource allocation

Shared

Human to Human

Machine to Machine

Efficient Utilization

Applications

Real-Time interaction

Physical

Control

Autonomous Driving

Accident Reduction

Traffic Jam Reduction

Robotics

Haptic Feedback

Remote Control

Healthcare

Tele

Diagnosis

Surgery

Rehabilitation

Location independent expertise

Virtual Reality, Augumented Reality

Haptic Feedback

Remote collaboration

Automation Industry

Sensitive control circuits

High flexibility

Requirements

Interaction

Very small reaction time

Connectivity

Ultra Responsive

Low latency

High efficiency

Short bursts

Natural

Prevent cyber sickness

1ms

Ultra Reliable

High data rates

Low error rate

Fast decoding

Less retransmissions

Less delay

Secure

Privacy

Security embedded in physical transmission

Low computational overhead

Edge Intelligence

Limited range due to speed of light

Tactile Data

Low Latency

Short transmit time

Close to 1ms

Core network

Adequate QOS

Secure

Latency reduction

Geographic routing

Queueing delays

Edge Cloud

Reliable

Sharing

Dynamic reallocation

Cloudlets

AI

Tactile AI Engines

Advanced Content Caching

Decongestion

Latency reduction

Prediction

Haptic/Tactile Experience

Allows higher geographic separation

Encoding

Stabilizes

Economic Impact

Real Time interaction

New opportunities

Skillset delivery

Emerging technology markets

Essential public services

Underpins Tactile Internet at wireless edge