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In-vivo energy harvesting nano robots

Shlomi Dolev, Sergey Frenkel, Michael Rosenblit, Ram Prasadh Narayanan, K. Venkateswarlu

Year
2016
Citations
22

Abstract

Biological collaborative systems behavior is fascinating, urging researchers to mimic their behavior through programmable matters. These matters constitute a particle system, wherein the particles bind with their neighbors to swarm and navigate. Caterpillar swarm inspired particle system involves layered architecture with a predefined number of layers. Through this work, a coordinated layered particle system inspired by caterpillar swarms is discussed. We first propose a novel design for producible nano-particles that uses electrodes to harvest electricity from the blood serum, energy that can be later used for swarming, inter/outer communication, coordination, sensing and acting according to an instructing program. The benefit of moving and acting in a swarm is demonstrated by a design of telescopic movement in pipes (e.g., blood vessels), wherein each layer uses the accumulated speed of all layers below and moves faster, thus mimicking the faster motion of a caterpillar swarm.

Keywords

RobotSwarm behaviourParticle swarm optimizationSwarm roboticsComputer scienceElectricitySwarming (honey bee)Collective behaviorNanotechnologySimulation

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