PERFORMANCE OF A REAL-TIME SENSOR AND PROCESSING SYSTEM ON A HELICOPTER

被引:13
|
作者
Kurz, F. [1 ]
Rosenbaum, D. [1 ]
Meynberg, O. [1 ]
Mattyus, G. [1 ]
Reinartz, P. [1 ]
机构
[1] DLR, German Aerosp Ctr, D-82234 Wessling, Germany
来源
关键词
real-time processing; sensor design; aerial camera; hazards;
D O I
10.5194/isprsarchives-XL-1-189-2014
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
A new optical real-time sensor system (4k system) on a helicopter is now ready to use for applications during disasters, mass events and traffic monitoring scenarios. The sensor was developed light-weighted, small with relatively cheap components in a pylon mounted sideward on a helicopter. The sensor architecture is finally a compromise between the required functionality, the development costs, the weight and the sensor size. Aboard processors are integrated in the 4k sensor system for orthophoto generation, for automatic traffic parameter extraction and for data downlinks. It is planned to add real-time processors for person detection and tracking, for DSM generation and for water detection. Equipped with the newest and most powerful off-the-shelf cameras available, a wide variety of viewing configurations with a frame rate of up to 12Hz for the different applications is possible. Based on three cameras with 50mm lenses which are looking in different directions, a maximal FOV of 104 degrees is reachable; with 100mm lenses a ground sampling distance of 3.5cm is possible at a flight height of 500m above ground. In this paper, we present the first data sets and describe the technical components of the sensor. The effect of vibrations of the helicopter on the GNSS/IMU accuracy and on the 4k video quality is analysed. It can be shown, that if the helicopter hoovers the rolling shutter effect affects the 4k video quality drastically. The GNSS/IMU error is higher than the specified limit, which is mainly caused by the vibrations on the helicopter and the insufficient vibrational absorbers on the sensor board.
引用
收藏
页码:189 / 193
页数:5
相关论文
共 50 条
  • [21] ADVANCED REAL-TIME PROCESSING SYSTEM (ARPS)
    THURBER, KJ
    PATTON, PC
    DEWARD, RC
    STRAUSS, JC
    PETSCHAUER, TW
    IEEE TRANSACTIONS ON AEROSPACE AND ELECTRONIC SYSTEMS, 1976, 12 (05) : 662 - 662
  • [22] Real-time processing system for shaving force
    Zheng, XH
    Lü, M
    Chao, K
    PROGRESS OF CUTTING AND GRINDING: WITH SOME TOPICS IN ADVANCED MANUFACTURE TECHNOLOGY, 1998, : 424 - 428
  • [23] Performance of binary MLC using real-time optical sensor feedback system
    Corradini, Nathan A.
    Vite, Cristina
    Urso, Patrizia
    JOURNAL OF APPLIED CLINICAL MEDICAL PHYSICS, 2024, 25 (11):
  • [24] Modeling of Real-Time Flight Control System for Small Coaxial Helicopter
    Lee, Seong-Jin
    2014 IEEE AEROSPACE CONFERENCE, 2014,
  • [25] Real-time Detection of Sensor Bias for the Distributed Sensor System
    He You
    Zhu Hong-Wei
    Tang Xiaoming
    2013 14TH INTERNATIONAL RADAR SYMPOSIUM (IRS), VOLS 1 AND 2, 2013, : 399 - 404
  • [26] Cell-bionics: tools for real-time sensor processing
    Toumazou, Chris
    Cass, Tony
    PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2007, 362 (1484) : 1321 - 1328
  • [27] Real-time query processing optimisation for wireless sensor networks
    Diallo, Ousmane
    Rodrigues, Joel J. P. C.
    Sene, Mbaye
    Xia, Feng
    INTERNATIONAL JOURNAL OF SENSOR NETWORKS, 2015, 18 (1-2) : 49 - 61
  • [28] Real-Time Adaptive Physical Sensor Processing with SNN Hardware
    Madrenas, Jordi
    Vallejo-Mancero, Bernardo
    Oltra-Oltra, Josep Angel
    Zapata, Mireya
    Cosp-Vilella, Jordi
    Calatayud, Robert
    Moriya, Satoshi
    Sato, Shigeo
    ARTIFICIAL NEURAL NETWORKS AND MACHINE LEARNING, ICANN 2023, PT V, 2023, 14258 : 423 - 434
  • [29] Application of parallel processors to real-time sensor array processing
    Martinez, DR
    IPPS/SPDP 1999: 13TH INTERNATIONAL PARALLEL PROCESSING SYMPOSIUM & 10TH SYMPOSIUM ON PARALLEL AND DISTRIBUTED PROCESSING, PROCEEDINGS, 1999, : 463 - 469
  • [30] Real-Time Signal Processing Method for Infrared Sensor Arrays
    Zhang, Fuxiang
    Li, Wenzhong
    VIBRATION, STRUCTURAL ENGINEERING AND MEASUREMENT I, PTS 1-3, 2012, 105-107 : 1835 - 1838