Tracking filter and prediction for non-ballistic target HTV-2 in near space
Qin Lei, Junlong Li, Di Zhou
Abstract
Qin Lei, Junlong Li, Di Zhou
Abstract
Recently, different countries have made rapid developments in the field of near space hypersonic vehicles such as the successful hypersonic vehicle flight tests of X-51A and Hypersonic Technology Vehicle-2(HTV-2). HTV-2 often actuates some nonballistic maneuvers while flying for a long time with high speed and large lift-to-drag ratio. Its motion trajectory is sometimes characterized by "hopping", meaning it is quite difficult to estimate and predict its trajectory. This paper gives an overview of existing problems in the tracking and prediction of hypersonic aircrafts firstly. Then a tracking filter for HTV-2 trajectory is presented. It uses Kalman filter algorithm to make an estimation of three-axis target position. Numerical simulation results show that the estimation accuracy of Kalman filtering algorithm is within allowed range. So the filter has certain reference significance in practical applications.
OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Recently, different countries have made rapid developments in the field of near space hypersonic vehicles such as the successful hypersonic vehicle flight tests of X-51A and Hypersonic Technology Vehicle-2(HTV-2). HTV-2 often actuates some nonballistic maneuvers while flying for a long time with high speed and large lift-to-drag ratio. Its motion trajectory is sometimes characterized by "hopping", meaning it is quite difficult to estimate and predict its trajectory. This paper gives an overview of existing problems in the tracking and prediction of hypersonic aircrafts firstly. Then a tracking filter for HTV-2 trajectory is presented. It uses Kalman filter algorithm to make an estimation of three-axis target position. Numerical simulation results show that the estimation accuracy of Kalman filtering algorithm is within allowed range. So the filter has certain reference significance in practical applications.
Key concepts: Kalman filter, Trajectory, Hypersonic speed, Computer science, Tracking (education), Position (finance), Filter (signal processing), Extended Kalman filter