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Lars Hanschke

dblp:202/4920 · DBLP profile ↗
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3ranked-venue papers
3as first author
0since 2021 · last 2018
0000-0001-7143-7486ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 1 · 1 first-author

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer networks
1 paper
Internet of things and sensor networks · 100%

Topics — the 2 heaviest of 3, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Internet of things and sensor networks › wireless sensor network › duty cycling
adaptive duty cycling
0.312017
Light in the Box: Reproducible Lighting Conditions for Solar-Powered Sensor Nodes · SenSys 2017
Internet of things and sensor networks › energy harvesting
energy harvesting sensor networks
0.312017
Light in the Box: Reproducible Lighting Conditions for Solar-Powered Sensor Nodes · SenSys 2017

Methods — techniques the papers use, named apart from their topics

light replay testbed · 0.3energy-aware algorithm comparison · 0.3
YearPublicationVenuePosition
2018 Time- and Energy-Aware Task Scheduling in Environmentally-Powered Sensor Networks
Lars Hanschke, Christian Renner
ALGOSENSORS1
2017 Light in the Box: Reproducible Lighting Conditions for Solar-Powered Sensor Nodes
abstract
The restricted energy budget of energy-harvesting sensor nodes demands algorithms for adaptive duty-cycling. However, their comparison and development is hindered by the lack of reproducibility of environmental conditions. We enable replaying recorded light conditions by building an affordable light box. Our self-developed control circuit and high power LEDs allow us to repeatedly replay real environmental illumination data through current and voltage traces. This allows us to directly compare the behavior of nodes running different energy-aware and -predictive algorithms.
Lars Hanschke, Christian Renner, Jannick Brockmann, Tobias Hamann, Jannes Peschel, Alexander Schell, Alexander Sowarka
SenSys1
2017 Radio altimeter interference mitigation in wireless avionics intra-communication networks
abstract
On-board commercial passenger aircraft Wireless Sensor Networks (WSNs) are anticipated to be used for implementing machine-to-machine communication also referred to as Wireless Avionics Intra-Communications (WAIC). These systems enable safety-related wireless avionics and aim to reduce electrical wiring harness contributing by 5% of the total weight of an aircraft. The globally harmonized frequency band designated for WAIC usage is shared with aeronautical Radio Altimeters (RAs). Literature lacks consideration of the impact of on-board RAs on WAIC systems; thus, we close this gap by performing a detailed study and propose two mitigation techniques based on channel hopping. Our simulations show that harmful RA signals infer doubled to tripled delays as well as packet error rates up to 90% when WAIC systems use the frequency band without applying appropriate techniques for increasing communication robustness. With the developed mitigation techniques, we show delays can be kept at levels comparable to non-interfered performance while increasing the usable spectrum by 50% simultaneously. Our evaluations show that the presented mitigation techniques enable reliable usage of WAIC systems in commercial aircraft allowing increased spectrum usage.
Lars Hanschke, Leo Krüger, Thomas Meyerhoff, Christian Renner, Andreas Timm-Giel
WiOpt1