Design of Servo Scheme and Drive Electronics for the Integrated Electrohydraulic Actuation System of RLV-TD

Autor: Priya C. Kurian, K. S. Shinoy, B. Jaya, M. N. Namboodiripad, T. Mookiah, K. Sundaramoorthy, P. Santhi, Anish Gopinath, Baby Sebastian
Rok vydání: 2017
Předmět:
Zdroj: Journal of The Institution of Engineers (India): Series C. 98:757-769
ISSN: 2250-0553
2250-0545
DOI: 10.1007/s40032-017-0401-y
Popis: Reusable Launch Vehicle-Technology Demonstrator (RLV-TD) is a system which has the ability to carry a payload from the earth’s surface to the outer space more than once. The control actuation forms the major component of the control system and it actuates the control surfaces of the RLV-TD based on the control commands. Eight electro hydraulic actuators were used in RLV-TD for vectoring the control surfaces about their axes. A centralised Hydraulic Power Generating Unit (HPU) was used for powering the eight actuators located in two stages. The actuation system had to work for the longest ever duration of about 850 s for an Indian launch vehicle. High bandwidth requirement from autopilot was met by the servo design using the nonlinear mathematical model. Single Control Electronics which drive four electrohydraulic actuators was developed for each stage. High power electronics with soft start scheme was realized for driving the BLDC motor which is the prime mover for hydraulic pump. Many challenges arose due to single HPU for two stages, uncertainty of aero load, higher bandwidth requirements etc. and provisions were incorporated in the design to successfully overcome them. This paper describes the servo design and control electronics architecture of control actuation system.
Databáze: OpenAIRE