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Huygens HASI servo accelerometer: A review and lessons learned
Authors:B Hathi  AJ Ball  G Colombatti  MR Leese  P Withers  JC Zarnecki
Institution:a PSSRI-The Open University, Walton Hall, Milton Keynes, MK7 6AA, United Kingdom
b CISAS “G.Colombo”-Universita di Padova, Via Venezia, 1 35131 Padova, Italy
c Université Paris 7-LESIA, Observatoire de Paris-Meudon, 5 place Jules Janssen, 92190 Meudon, France
d Center for Space Physics, Boston University, 725 Commonwealth Avenue, Boston, MA 02215, USA
e Impacts & Astromaterials Research Centre (IARC), Department of Earth Science and Engineering, Imperial College London, South Kensington Campus, London, SW7 2AZ, United Kingdom
f ESA ESTEC, Noordwijk, The Netherlands
Abstract:The servo accelerometer constituted a vital part of the Huygens Atmospheric Structure Instrument (HASI): flown aboard the Huygens probe, it operated successfully during the probe's entry, descent, and landing on Titan, on 14th January 2005. This paper reviews the Servo accelerometer, starting from its development/assembly in the mid-1990s, to monitoring its technical performance through its seven-year long in-flight (or cruise) journey, and finally its performance in measuring acceleration (or deceleration) upon encountering Titan's atmosphere.The aim of this article is to review the design, ground tests, in-flight tests and operational performance of the Huygens servo accelerometer. Techniques used for data analysis and lessons learned that may be useful for accelerometry payloads on future planetary missions are also addressed.The main finding of this review is that the conventional approach of having multiple channels to cover a very broad measurement range: from 10−6g to the order of 10g (where g=Earth's surface gravity, 9.8 m/s2), with on-board software deciding which of the channels to telemeter depending on the magnitude of the measured acceleration, works well. However, improvements in understanding the potential effects of the sensor drifts and ageing on the measurements can be achieved in future missions by monitoring the ‘scale factor’—a measure of such sensors’ sensitivity, along with the already implemented monitoring of the sensor's offset during the in-flight phase.
Keywords:Accelerometry  Atmospheric instrument  Planetary entry probes
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