Non-cooperative spacecrafts are those current or future assets in orbit which have lost their control authority in one or more degrees of freedom and cannot convey any information concerning their position, attitude or rates to facilitate Rendezvous and Docking/Berthing (RVD/B) process. A growing field of study in space research is to develop On-Orbit Servicing (OOS) technology capable of dealing with these space- crafts, called targets, which are designed without any intention to be serviced. To render services such as repair, refuel or removal of the target from orbit, the chaser spacecraft should exhibit sophisticated RVD/B technology for formation fly and final stage docking/berthing operations of the mission. Assuming that the terminal capture operations of the target are to be performed by a suitable manipulator system on-board chaser, this study relies upon proven technology and outlines guidance and control methodologies to achieve rendezvous during proximity phases. The entry gate of chaser after phasing can be defined at a distance of about 5 km in ± V-bar direction from the target in its orbit. To account for errors in modeling, navigation or actuation, proximity range operations from the entry gate are decomposed into three different subphases as far range, inspection or fly around and closer approach. From the entry gate and along the path of the chaser two hold points are defined: first to initiate an inspection and the second, which is close to the safe zone defined around the target, to initiate a capture. The chaser is assumed to perform a station keeping maneuver at the second hold point until initial conditions for the capture are met. Possible scenarios pertaining to the behavior of the target in a circular orbit are considered and guidance schemes for different subphases are presented using a combination of Hill-Clohessy-Willtshire (HCW) solution, elliptical fly around, glides- lope algorithm etc. Relative controllers both for po
"Sinopsis" puede pertenecer a otra edición de este libro.
Librería: GreatBookPrices, Columbia, MD, Estados Unidos de America
Condición: New. Nº de ref. del artículo: 28924792-n
Cantidad disponible: Más de 20 disponibles
Librería: PBShop.store US, Wood Dale, IL, Estados Unidos de America
PAP. Condición: New. New Book. Shipped from UK. Established seller since 2000. Nº de ref. del artículo: L2-9783869559452
Cantidad disponible: Más de 20 disponibles
Librería: GreatBookPrices, Columbia, MD, Estados Unidos de America
Condición: As New. Unread book in perfect condition. Nº de ref. del artículo: 28924792
Cantidad disponible: Más de 20 disponibles
Librería: PBShop.store UK, Fairford, GLOS, Reino Unido
PAP. Condición: New. New Book. Shipped from UK. Established seller since 2000. Nº de ref. del artículo: L2-9783869559452
Cantidad disponible: Más de 20 disponibles
Librería: California Books, Miami, FL, Estados Unidos de America
Condición: New. Nº de ref. del artículo: I-9783869559452
Cantidad disponible: Más de 20 disponibles
Librería: moluna, Greven, Alemania
Condición: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. KlappentextrnrnNon-cooperative spacecrafts are those current or future assets in orbit which havenlost their control authority in one or more degrees of freedom and cannot convey anyninformation concerning their position, attitude or rates to fa. Nº de ref. del artículo: 144674064
Cantidad disponible: Más de 20 disponibles
Librería: buchversandmimpf2000, Emtmannsberg, BAYE, Alemania
Taschenbuch. Condición: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Non-cooperative spacecrafts are those current or future assets in orbit which havelost their control authority in one or more degrees of freedom and cannot convey anyinformation concerning their position, attitude or rates to facilitate Rendezvous andDocking/Berthing (RVD/B) process. A growing ¿eld of study in space research is todevelop On-Orbit Servicing (OOS) technology capable of dealing with these spacecrafts, called targets, which are designed without any intention to be serviced. Torender services such as repair, refuel or removal of the target from orbit, the chaserspacecraft should exhibit sophisticated RVD/B technology for formation ¿y and ¿nalstage docking/berthing operations of the mission.Assuming that the terminal capture operations of the target are to be performedby a suitable manipulator system on-board chaser, this study relies upon proventechnology and outlines guidance and control methodologies to achieve rendezvousduring proximity phases. The entry gate of chaser after phasing can be de¿ned at adistance of about 5 km in ± V-bar direction from the target in its orbit. To accountfor errors in modeling, navigation or actuation, proximity range operations from theentry gate are decomposed into three di¿erent subphases as far range, inspection or¿y around and closer approach.From the entry gate and along the path of the chaser two hold points are de¿ned:¿rst to initiate an inspection and the second, which is close to the safe zone de¿nedaround the target, to initiate a capture. The chaser is assumed to perform a stationkeeping maneuver at the second hold point until initial conditions for the capture aremet. Possible scenarios pertaining to the behavior of the target in a circular orbitare considered and guidance schemes for di¿erent subphases are presented using acombination of Hill-Clohessy-Willtshire (HCW) solution, elliptical ¿y around, glideslope algorithm etc. Relative controllers both for position and attitude of the chaserare also presented. A Linear Quadratic (LQ) controller for relative position and aProportional Integral Derivative (PID) controller for relative attitude with angularvelocity constraints are chosen to track down the error to achieve rendezvous andattitude synchronization with the non-cooperative target. A comparative analysisbetween di¿erent guidance trajectories for important parameters such as time, fuelusage, minimum absolute distance and the maximum radial distance from the targetis presented. Veri¿cation of the proposed guidance and control methods is done byapplying them to two di¿erent case studies: the ¿rst study incorporating a stabilizedtarget in Geostationary Earth Orbit (GEO) and the second, with a spinning targetin Low Earth Orbit (LEO).The methods presented here are general and provide a simulator to the chaser toperform rendezvous analysis with non-cooperative targets. To achieve RVD/B, thestudy proposes a careful combination of guidance solutions for di¿erent phases ofproximity operations, and for di¿erent scenario's of the target encountered by thechaser.Cuvillier Verlag, Nonnenstieg 8, 37075 Göttingen 210 pp. Englisch. Nº de ref. del artículo: 9783869559452
Cantidad disponible: 1 disponibles
Librería: AHA-BUCH GmbH, Einbeck, Alemania
Taschenbuch. Condición: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Non-cooperative spacecrafts are those current or future assets in orbit which havelost their control authority in one or more degrees of freedom and cannot convey any information concerning their position, attitude or rates to facilitate Rendezvous and Docking/Berthing (RVD/B) process. A growing ¿eld of study in space research is to develop On-Orbit Servicing (OOS) technology capable of dealing with these space- crafts, called targets, which are designed without any intention to be serviced. To render services such as repair, refuel or removal of the target from orbit, the chaser spacecraft should exhibit sophisticated RVD/B technology for formation ¿y and ¿nal stage docking/berthing operations of the mission. Assuming that the terminal capture operations of the target are to be performed by a suitable manipulator system on-board chaser, this study relies upon proven technology and outlines guidance and control methodologies to achieve rendezvous during proximity phases. The entry gate of chaser after phasing can be de¿ned at a distance of about 5 km in ± V-bar direction from the target in its orbit. To account for errors in modeling, navigation or actuation, proximity range operations from the entry gate are decomposed into three di¿erent subphases as far range, inspection or ¿y around and closer approach. From the entry gate and along the path of the chaser two hold points are de¿ned: ¿rst to initiate an inspection and the second, which is close to the safe zone de¿ned around the target, to initiate a capture. The chaser is assumed to perform a station keeping maneuver at the second hold point until initial conditions for the capture are met. Possible scenarios pertaining to the behavior of the target in a circular orbit are considered and guidance schemes for di¿erent subphases are presented using a combination of Hill-Clohessy-Willtshire (HCW) solution, elliptical ¿y around, glides- lope algorithm etc. Relative controllers both for position and attitude of the chaser are also presented. A Linear Quadratic (LQ) controller for relative position and a Proportional Integral Derivative (PID) controller for relative attitude with angular velocity constraints are chosen to track down the error to achieve rendezvous and attitude synchronization with the non-cooperative target. A comparative analysis between di¿erent guidance trajectories for important parameters such as time, fuel usage, minimum absolute distance and the maximum radial distance from the target is presented. Veri¿cation of the proposed guidance and control methods is done by applying them to two di¿erent case studies: the ¿rst study incorporating a stabilized target in Geostationary Earth Orbit (GEO) and the second, with a spinning target in Low Earth Orbit (LEO). The methods presented here are general and provide a simulator to the chaser to perform rendezvous analysis with non-cooperative targets. To achieve RVD/B, the study proposes a careful combination of guidance solutions for di¿erent phases of proximity operations, and for di¿erent scenariös of the target encountered by the chaser. Nº de ref. del artículo: 9783869559452
Cantidad disponible: 1 disponibles
Librería: preigu, Osnabrück, Alemania
Taschenbuch. Condición: Neu. Guidance and Control of a Spacecraft to Rendevous and Dock with a Non-cooperative Target | Anantha Sayanam Komanduri | Taschenbuch | Kartoniert / Broschiert | Englisch | 2011 | Cuvillier | EAN 9783869559452 | Verantwortliche Person für die EU: Cuvillier Verlag, Nonnenstieg 8, 37075 Göttingen, info[at]cuvillier[dot]de | Anbieter: preigu Print on Demand. Nº de ref. del artículo: 120607628
Cantidad disponible: 5 disponibles
Librería: Buchpark, Trebbin, Alemania
Condición: Hervorragend. Zustand: Hervorragend | Sprache: Englisch | Produktart: Bücher | Non-cooperative spacecrafts are those current or future assets in orbit which have lost their control authority in one or more degrees of freedom and cannot convey any information concerning their position, attitude or rates to facilitate Rendezvous and Docking/Berthing (RVD/B) process. A growing ¿eld of study in space research is to develop On-Orbit Servicing (OOS) technology capable of dealing with these space- crafts, called targets, which are designed without any intention to be serviced. To render services such as repair, refuel or removal of the target from orbit, the chaser spacecraft should exhibit sophisticated RVD/B technology for formation ¿y and ¿nal stage docking/berthing operations of the mission. Assuming that the terminal capture operations of the target are to be performed by a suitable manipulator system on-board chaser, this study relies upon proven technology and outlines guidance and control methodologies to achieve rendezvous during proximity phases. The entry gate of chaser after phasing can be de¿ned at a distance of about 5 km in ± V-bar direction from the target in its orbit. To account for errors in modeling, navigation or actuation, proximity range operations from the entry gate are decomposed into three di¿erent subphases as far range, inspection or ¿y around and closer approach. From the entry gate and along the path of the chaser two hold points are de¿ned: ¿rst to initiate an inspection and the second, which is close to the safe zone de¿ned around the target, to initiate a capture. The chaser is assumed to perform a station keeping maneuver at the second hold point until initial conditions for the capture are met. Possible scenarios pertaining to the behavior of the target in a circular orbit are considered and guidance schemes for di¿erent subphases are presented using a combination of Hill-Clohessy-Willtshire (HCW) solution, elliptical ¿y around, glides- lope algorithm etc. Relative controllers both for position and attitude of the chaser are also presented. A Linear Quadratic (LQ) controller for relative position and a Proportional Integral Derivative (PID) controller for relative attitude with angular velocity constraints are chosen to track down the error to achieve rendezvous and attitude synchronization with the non-cooperative target. A comparative analysis between di¿erent guidance trajectories for important parameters such as time, fuel usage, minimum absolute distance and the maximum radial distance from the target is presented. Veri¿cation of the proposed guidance and control methods is done by applying them to two di¿erent case studies: the ¿rst study incorporating a stabilized target in Geostationary Earth Orbit (GEO) and the second, with a spinning target in Low Earth Orbit (LEO). The methods presented here are general and provide a simulator to the chaser to perform rendezvous analysis with non-cooperative targets. To achieve RVD/B, the study proposes a careful combination of guidance solutions for di¿erent phases of proximity operations, and for di¿erent scenariös of the target encountered by the chaser. Nº de ref. del artículo: 11874476/1
Cantidad disponible: 1 disponibles