Affordable Bimodal Optical Sensors to Spread the Use of Automated Insect Monitoring

Author:

Potamitis Ilyas1ORCID,Rigakis Iraklis2,Vidakis Nectarios3,Petousis Markos3,Weber Michael4

Affiliation:

1. Department of Music Technology and Acoustics, Technological Education Institute of Crete, Rethymno, Greece

2. Department of Electronics, Technological Education Institute of Crete, Chania, Greece

3. Mechanical Engineering Department, Technological Education Institute of Crete, Heraklion, Greece

4. Biogents AG, Regensburg, Germany

Abstract

We present a novel bimodal optoelectronic sensor based on Fresnel lenses and the associated stereo-recording device that records the wingbeat event of an insect in flight as backscattered and extinction light. We investigate the complementary information of these two sources of biometric evidence and we finally embed part of this technology in an electronic e-trap for fruit flies. The e-trap examines the spectral content of the wingbeat of the insect flying in and reports wirelessly counts and species identity. We design our devices so that they are optimized in terms of detection accuracy and power consumption, but above all, we ensure that they are affordable. Our aim is to make more widespread the use of electronic insect traps that report in virtually real time the level of the pest population from the field straight to a human controlled agency. We have the vision to establish remote automated monitoring for all insects of economic and hygienic importance at large spatial scales, using their wingbeat as biometric evidence. To this end, we provide open access to the implementation details, recordings, and classification code we developed.

Funder

GSRT

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering,Instrumentation,Control and Systems Engineering

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