Quasi-Wireless Capacitive Power Transfer with Secure Data Acquisition for Robotic Systems in Space Infrastructure
Space exploration is dependent on robotic systems
that utilize end-effectors to collect samples, probe surfaces, and
manipulate objects. These systems can rarely be designed to
do all three, forcing engineers to make tradeoffs based on the
mission parameters - i.e. should the rob
Selection note: Curated because “Quasi-Wireless Capacitive Power Transfer with Secure Data Acquisition for Robotic Systems in Space Infrastructure” covers wireless sensor networks, IoT, space cybersecurity, SCADA systems; it materially informs GShips work on secure space robotics.
Evidence boundary: NTRS provides open full text, but this conference paper was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
Stable record
ntrs-20210017840
Topic
cybersecurity
Type
Conference Paper
Publisher
Marshall Space Flight Center
Authors
T Burks; G Cathey; V Kholodilo; D Ulybyshev; B Northern; M Gupta; M Pearce; T Marcrum
Year
2021
Editorial state
metadata curated editorial draft
Reviewer
GShips Project editorial synthesis
Official link checked
2026-07-25
Source-supplied abstract
Space exploration is dependent on robotic systems
that utilize end-effectors to collect samples, probe surfaces, and
manipulate objects. These systems can rarely be designed to
do all three, forcing engineers to make tradeoffs based on the
mission parameters - i.e. should the robotic appendage have a
claw, drill, or shovel, and which would be best suited for the
mission? Additionally, as more industrial and government entities
partake in space exploration, data protection is needed in transit
and at rest. To address these challenges, we present a first-of-its-
kind robotic linkage that has no wiring between the joints.
Instead, quasi-wireless capacitive (QWiC) power transfer is used
to send energy over the robot’s chassis without a return wire.
This enables the system to be completely modular through the
use of single-contact permanent magnet connections, allowing
rapid alterations in joint kinematics and/or the changing of end-effectors.
For collecting sensor data from the robotic arm and to send
remote commands to it, we use a Supervisory Control and Data
Acquisition (SCADA) system. Data transmission relies on MQTT
and OPC UA communication protocols with encryption. The
SCADA server logs and archives sensor data and provides the
functionality for authorized users to send remote commands
from SCADA client(s) to motors. A SCADA client can be any
of the web browsers that connects to a server via a secure
communication channel using SSL protocol. Furthermore, as an
extra data protection mechanism, we inject noise to the sensor
data traffic, which obfuscates the timing of sensor data packets
and adds confusion about which data packet represents which
motor.
Abstract text has not been adopted as a GShips conclusion.
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A newer or corrected version, a retraction, a verified duplicate, a material topic mismatch, a changed access state, or claim-level review would trigger a dated editorial update.
NTRS provides open full text, but this conference paper was screened for curation rather than independently or domain reviewed; inclusion is contextual, not automatic claim evidence.
Source-supplied titles, abstracts, authors, and dates may require correction against the canonical full text.
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People, review, and conflicts
Prepared by
GShips Project
Editorial status
metadata-curated-editorial-draft
Editorial reviewer
GShips Project editorial synthesis
Last editorial review
No editorial-review date recorded
Independent review
pending
Independent reviewer
No independent reviewer assigned
Last independent review
No independent-review date exists
Last content edit
Not recorded separately
Official source or link verified
2026-07-25
Declared conflicts
The maintainer intends to explore a commercial venture based on some GShips work. No entity, outside funding, customer, sponsor, or indexed-organization relationship currently exists.