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Vision and Challenges for Realising the Internet of Things

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Be<strong>for</strong>e 2010 2010-2015 2015-2020 Beyond 2020<br />

Low cost modular devices<br />

ronments (extreme temperature variation,<br />

vibration <strong>and</strong> shocks conditions <strong>and</strong> contact<br />

with different chemical substances)<br />

Nano power processing units<br />

Silent Tags<br />

Biodegradable antennae<br />

tions<br />

High-Q inductors<br />

High density capacitors, tuneable<br />

capacitors<br />

Low loss switches<br />

RF filters<br />

Heterogeneous<br />

architectures.<br />

“Fluid” systems,<br />

continuously changing<br />

<strong>and</strong> adapting.<br />

Adaptive architectures<br />

Reconfigurable wireless<br />

systems<br />

Changing <strong>and</strong> adapting<br />

functionalities to <strong>the</strong> environments<br />

Micro readers with multi<br />

st<strong>and</strong>ard protocols <strong>for</strong><br />

reading sensor <strong>and</strong> actuator<br />

data<br />

Distributed memory <strong>and</strong><br />

processing<br />

Low cost modular devices<br />

Multi protocol front ends<br />

Multi st<strong>and</strong>ard mobile readers<br />

Extended range <strong>of</strong> tags <strong>and</strong> readers<br />

Transmission speed<br />

Distributed control <strong>and</strong> databases<br />

Multi-b<strong>and</strong>, multi-mode wireless sensor<br />

architectures<br />

Smart systems on tags with sensing <strong>and</strong><br />

actuating capabilities (temperature, pressure,<br />

humidity, display, keypads, actuators,<br />

etc.)<br />

Ultra low power chip sets to increase operational<br />

range (passive tags) <strong>and</strong> increased<br />

energy life (semi passive, active tags).<br />

Ultra low cost chips with security<br />

Collision free air to air protocol<br />

Integration <strong>of</strong> hybrid technologies<br />

sensor, actuator, display, memory<br />

Power optimised hardware-s<strong>of</strong>tware<br />

design<br />

Power control <strong>of</strong> system on chip<br />

(SoC)<br />

Development <strong>of</strong> high per<strong>for</strong>mance,<br />

small size, low cost passive functions<br />

e.g. high-Q inductors, tight tolerance<br />

capacitors, high density capacitors,<br />

low loss switches, RF filters, tuneable<br />

capacitors<br />

Mobile RFID readers with increased<br />

functionality <strong>and</strong> computing power<br />

while reducing <strong>the</strong> size <strong>and</strong> cost<br />

Miniaturised <strong>and</strong> embedded readers<br />

(SiP)<br />

Hardware<br />

Systems, Circuits<br />

<strong>and</strong> Architectures<br />

Cognitive computing<br />

Autonomous computing<br />

Tera scale computing<br />

Common sensor ontologies (cross domain)<br />

Distributed energy efficient data processing<br />

Grid computing<br />

Heterogeneous modelling <strong>of</strong> sensor<br />

data<br />

Virtual <strong>Things</strong> identification (i.e.<br />

things identified based on A/V signal<br />

processing)<br />

Sensor virtualization (vendor/technology<br />

independent modules)<br />

Data <strong>and</strong> Signal<br />

Processing<br />

Technology<br />

CERP-IoT – Cluster <strong>of</strong> European Research Projects on <strong>the</strong> <strong>Internet</strong> <strong>of</strong> <strong>Things</strong><br />

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