Soyuz MS-05 was a Soyuz spaceflight which launched on 28 July 2017.[1] It transported three members of the Expedition 52 crew to the International Space Station. Soyuz MS-05 was the 134th flight of a Soyuz spacecraft. The crew consisted of a Russian commander, and a European and an American flight engineer. It returned to Earth on 14 December 2017 after 139 days on orbit.
![]() The launch of Soyuz MS-05 | |
Mission type | ISS crew transport |
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Operator | Roskosmos |
COSPAR ID | 2017-043A ![]() |
SATCAT no. | 42898 |
Mission duration | 139 days 4 hours 57 minutes 16 seconds |
Spacecraft properties | |
Spacecraft | Soyuz MS |
Spacecraft type | Soyuz MS 11F732A48 |
Manufacturer | RKK Energia |
Launch mass | 7080 kg |
Crew | |
Crew size | 3 |
Members | Sergey Ryazansky Paolo Nespoli Randolph Bresnik |
Callsign | Borei (Boreas) |
Start of mission | |
Launch date | 28 July 2017, 15:41 UTC[1] |
Rocket | Soyuz-FG |
Launch site | Baikonur, Pad 1/5 |
Contractor | Progress Rocket Space Centre |
End of mission | |
Landing date | 14 December 2017, 08:38 UTC [2] |
Landing site | Steppes of the Kazakhstan |
Orbital parameters | |
Reference system | Geocentric orbit |
Regime | Low Earth orbit |
Inclination | 51.66° |
Docking with ISS | |
Docking port | Rassvet nadir |
Docking date | 28 July 2017, 21:54 UTC [1] |
Undocking date | 14 December 2017, 05:14 UTC [3] |
Time docked | 138 days 7 hours 20 minutes |
![]() From left to right: Nespoli, Ryazansky, Bresnik Soyuz programme (Crewed missions) |
Soyuz MS introduces following upgrades: more efficient solar panels, the new Kurs-NA approach and docking system, which has a mass of less than half that of its predecessor, additional micro-meteoroid debris shielding, a modified docking and attitude control engine – which will add redundancy during docking and deorbit burns, a main computer, TsVM-101, which has a mass (8.3 kg) of only one-eighth that of its Argon-16 predecessor (70 kg) and a smaller volume, a unified digital command/telemetry system that allows telemetry to be transmitted via Luch relay satellites for control of the spacecraft as well as to provide crew with positioning data when the spacecraft is out of range of ground tracking stations and upgraded GLONASS / GPS and COSPAS-SARSAT satellite systems to provide more accurate location services during search/rescue operations after landing.[4]
During the flight the spacecraft fulfills the following tasks: delivery of a visiting crew consisting of up to three persons and small accompanying cargoes, constant availability of the spacecraft, attached to the station during its crewed flight, in the standby mode to be ready for emergency descent of the main crew onto the ground in case of hazardous situation on the station, cosmonaut illness or injury, etc. (assured crew return vehicle function); planned descent of the visiting crew onto the ground, returning to the ground, together with the crew, payloads of relatively low mass and volume disposal of wastes from the station in the living compartment to be burned down in the atmosphere during descent.[4]
Position[5] | Crew Member | |
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Commander | ![]() Expedition 52 Second and last spaceflight | |
Flight Engineer 1 | ![]() Expedition 52 Second spaceflight | |
Flight Engineer 2 | ![]() Expedition 52 Third and last spaceflight |
Position[6] | Crew Member | |
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Commander | ![]() | |
Flight Engineer 1 | ![]() | |
Flight Engineer 2 | ![]() |
Soyuz programme | |||||||||||||||||||||||||||
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Main topics |
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Past missions (by spacecraft type) |
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Current missions | |||||||||||||||||||||||||||
Future missions |
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Uncrewed missions are designated as Kosmos instead of Soyuz; exceptions are noted "(uncrewed)". The † sign designates failed missions. Italics designates cancelled missions. |
Human spaceflights to the International Space Station | ||
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See also: {{ISS expeditions}}, {{Uncrewed ISS flights}} | ||
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Since 2020 | ||
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← 2016 · Orbital launches in 2017 · 2018 → | |
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January | TJS-2 – Lingqiao / Jilin-1 03 · Caton-1 · Xingyun Shiyan 1 – Iridium NEXT 1–10 – TRICOM-1 – USA-273 / SBIRS GEO-3 – DSN-2 – Hispasat AG1 |
February | Intelsat 32e / SkyBrasil1 · Telkom-3S – Cartosat-2D · INS-1A, 1B · Flock-3p × 88 · Lemur-2 × 8 · Al Farabi-1 · BGUSAT · DIDO-2 · Nayif 1 · PEASS – Dragon CRS-10 – Progress MS-05 |
March | USA-274 / NROL-79 / Intruder 8 – Tiankun-1 – Sentinel-2B – EchoStar 23 – IGS-Radar 5 – USA-275 / WGS-9 – SES-10 |
April | Shijian 13 – Cygnus CRS OA-7 · (ALTAIR · CXBN-2 · IceCube · SG-Sat · SHARC) – Soyuz MS-04 – Tianzhou 1 · SilkRoad-1 |
May | USA-276 / NROL-76 – Koreasat 7 · SGDC-1 – GSAT 9 / South Asia Satellite – Inmarsat-5 F4 – SES-15 – "It's a Test" – EKS-2 |
June | QZS-2 – ViaSat-2 · Eutelsat 172B – Dragon CRS-11 · NICER · Birds-1 (TOKI · GhanaSat-1 · Mazaalai · BRAC Onnesha · Nigeria EduSat-1) – GSAT-19 – EchoStar 21 – Progress MS-06 – HXMT / Insight · Zhuhai-1 01, 02 · ÑuSat 3 – ChinaSat 9A – Cartosat-2E · Aalto-1 · ROBUSTA-1B · Max Valier Sat – Nivelir-ZU (14F150) – BulgariaSat-1 – Iridium NEXT-2 – EuropaSat/Hellas Sat 3 · GSAT-17 |
July | Shijian-18 – Intelsat 35e – Kanopus-V-IK · CICERO × 3 · Corvus-BC × 2 · Ecuador-UTE-YuZGU · Flock-2k × 48 · Flying Laptop · Iskra-MAI-85 · Lemur-2 × 8 · MKA-N × 2 · Mayak · NORSAT-1, -2 · NanoACE · TechnoSat · WNISAT-1R – Soyuz MS-05 |
August | OPTSAT-3000 · VENµS – Dragon CRS-12 · ASTERIA – Blagovest 11L – TDRS-M – Michibiki 3 – Formosat-5 – ORS-5 – IRNSS-1H |
September | USA-277 / OTV-5 – Amazonas 5 – Soyuz MS-06 – Kosmos 2522 / GLONASS-M 752 – USA-278 / NROL-42 – AsiaSat 9 – Yaogan-30-01 × 3 – Intelsat 37e · BSAT-4a |
October | VRSS-2 – Iridium NEXT 21–30 – QZS-4 – SES-11 / EchoStar 105 – Sentinel-5 Precursor – Progress MS-07 – USA-279 / NROL-52 / Quasar 21 – Koreasat 5A – SkySat × 6 · Flock-3m × 4 |
November | BeiDou-3 M1 · M2 – Mohammed VI-A – Cygnus CRS OA-8E · Asgardia-1 – Fengyun-3D · HEAD-1 – NOAA-20 – Jilin-1 × 3 – Yaogan-30-02 × 3 – Meteor-M No.2-1 |
December | Kosmos 2524 – LKW-1 – Alcomsat-1 – Galileo FOC 15-18 – Dragon CRS-13 – Soyuz MS-07 – GCOM-C · SLATS – Iridium NEXT 31–40 – Yaogan-30-03 × 3 – AngoSat 1 |
Launches are separated by dashes ( – ), payloads by dots ( · ), multiple names for the same satellite by slashes ( / ). CubeSats are smaller. Crewed flights are underlined. Launch failures are in italics. Payloads deployed from other spacecraft are (enclosed in brackets). |