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Optimization, Test and Diagnostics of Miniaturized Hall Thrusters

dc.contributor.authorLim, Jian W.M.en
dc.contributor.authorLevchenko, Igoren
dc.contributor.authorRohaizat, Muhammad W.A.B.en
dc.contributor.authorHuang, Shiyongen
dc.contributor.authorXu, Luxiangen
dc.contributor.authorSun, Yu Feien
dc.contributor.authorPotrivitu, George C.en
dc.contributor.authorYee, Jen S.en
dc.contributor.authorSim, Roysmond Z.W.en
dc.contributor.authorWang, Youmeien
dc.contributor.authorLevchenko, Svitlanaen
dc.contributor.authorBazaka, Katerynaen
dc.contributor.authorXu, Shuyanen
dc.date.accessioned2026-06-12T20:41:15Z
dc.date.available2026-06-12T20:41:15Z
dc.date.issued2019en
dc.description.abstractMiniaturized spacecraft and satellites require smart, highly efficient and durable low-thrust thrusters, capable of extended, reliable operation without attendance and adjustment. Thermochemical thrusters which utilize thermodynamic properties of gases as a means of acceleration have physical limitations on their exhaust gas velocity, resulting in low efficiency. Moreover, these engines demonstrate extremely low efficiency at small thrusts and may be unsuitable for continuously operating systems which provide real-time adaptive control of the spacecraft orientation, velocity and position. In contrast, electric propulsion systems which use electromagnetic fields to accelerate ionized gases (i.e., plasmas) do not have any physical limitation in terms of exhaust velocity, allowing virtually any mass efficiency and specific impulse. Low-thrust Hall thrusters have a lifetime of several thousand hours. Their discharge voltage ranges between 100 and 300 V, operating at a nominal power of <1 kW. They vary from 20 to 100 mm in size. Large Hall thrusters can provide fractions of millinewton of thrust. Over the past few decades, there has been an increasing interest in small mass, low power, and high efficiency propulsion systems to drive satellites of 50-200 kg. In this work, we will demonstrate how to build, test, and optimize a small (30 mm) Hall thruster capable of propelling a small satellite weighing about 50 kg. We will show the thruster operating in a large space environment simulator, and describe how thrust is measured and electric parameters, including plasma characteristics, are collected and processed to assess key thruster parameters. We will also demonstrate how the thruster is optimized to make it one of the most efficient small thrusters ever built. We will also address challenges and opportunities presented by new thruster materials.en
dc.description.sponsorshipThis work was supported in part by OSTIn-SRP/EDB, the National Research Foundation (Singapore), Academic Research Fund AcRF Tier 1 RP 6/16 (Singapore), and the George Washington Institute for Nanotechnology (USA). I. L. acknowledges the support from the School of Chemistry, Physics and Mechanical Engineering, Science and Engineering Faculty, Queensland University of Technology.en
dc.description.statusPeer-revieweden
dc.identifier.issn1940-087Xen
dc.identifier.otherPubMed:30829319en
dc.identifier.scopus85062415749en
dc.identifier.urihttps://hdl.handle.net/1885/733811294
dc.language.isoenen
dc.rightsPublisher Copyright: © 2019 Journal of Visualized Experiments.en
dc.sourceJournal of Visualized Experimentsen
dc.subjectdischargeen
dc.subjectElectric propulsionen
dc.subjectEngineeringen
dc.subjectHall thrustersen
dc.subjectIssue 144en
dc.subjectspace technologyen
dc.subjecttechnologyen
dc.subjecttestingen
dc.titleOptimization, Test and Diagnostics of Miniaturized Hall Thrustersen
dc.typeJournal articleen
dspace.entity.typePublicationen
local.contributor.affiliationLim, Jian W.M.; Nanyang Technological Universityen
local.contributor.affiliationLevchenko, Igor; Nanyang Technological Universityen
local.contributor.affiliationRohaizat, Muhammad W.A.B.; Nanyang Technological Universityen
local.contributor.affiliationHuang, Shiyong; Nanyang Technological Universityen
local.contributor.affiliationXu, Luxiang; Nanyang Technological Universityen
local.contributor.affiliationSun, Yu Fei; Nanyang Technological Universityen
local.contributor.affiliationPotrivitu, George C.; Nanyang Technological Universityen
local.contributor.affiliationYee, Jen S.; Nanyang Technological Universityen
local.contributor.affiliationSim, Roysmond Z.W.; Nanyang Technological Universityen
local.contributor.affiliationWang, Youmei; Hangzhou Dianzi Universityen
local.contributor.affiliationLevchenko, Svitlana; Nanyang Technological Universityen
local.contributor.affiliationBazaka, Kateryna; Nanyang Technological Universityen
local.contributor.affiliationXu, Shuyan; Nanyang Technological Universityen
local.identifier.citationvolume2019en
local.identifier.doi10.3791/58466en
local.identifier.pure1b6f67bb-033d-4bcb-bc16-1dcf72b17bd0en
local.identifier.urlhttps://www.scopus.com/pages/publications/85062415749en
local.type.statusPublisheden

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