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DEVELOPMENT OF A TELEMATICS EVALUATION ENVIRONMENT BASED ON A DRIVING SIMULATOR AND ITS APPLICATION

机译:基于驾驶模拟器的电讯评估环境的开发及其应用

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For developing telematics devices, traditional development methods include the unit function test, compatibility test and T-Car, which have some limitations. Telematics devices have various functions that require accounting for the interactions among three major elements of automotive electronics: the vehicle, the device unit and driver. The KAAS (KATECH Advanced Automotive Simulator) system is a virtual-reality-based test environment designed to test and analyze the three elements in one place. One of the difficult functions when constructing such VR (Virtual Reality)-based telematics test environment is to develop a test method for the LBS (Location-Based Service) function such as a car navigation demanding the GPS (Global Positioning System) satellite signals because KAAS is in a fixed laboratory. To overcome these problems, a real-time GPS simulation system, which can be integrated with KAAS, is needed because the location of the vehicle in virtual space is determined purely by the driver's personal intention while driving virtually. This paper presents new concepts needed to construct a VR-based telematics test environment to generate a GPS RF signal, which reflects the continuously changing vehicle location during virtual driving in real-time. To construct this system, the coordinate transform must be conducted from a rectangular coordinate system that is compatible with a virtual 3D DB that is used to construct a 3D image for KAAS using a WGS84 and a longitude-latitude coordinate system compatible with a GPS simulator. Moreover, the real-time HILS (Hardware In Loop Simulation) systems and the CDMA (Code Division Multiple Access) simulation system are developed to evaluate telematics devices. Finally, we show its applications and results.
机译:对于开发远程信息处理设备,传统的开发方法包括单元功能测试,兼容性测试和T-Car,但它们有一些局限性。远程信息处理设备具有多种功能,需要考虑汽车电子设备的三个主要元素之间的相互作用:车辆,设备单元和驾驶员。 KAAS(KATECH高级汽车仿真器)系统是一种基于虚拟现实的测试环境,旨在在一个地方测试和分析这三个元素。构造这种基于VR(虚拟现实)的远程信息处理测试环境时,困难的功能之一是开发一种针对LBS(基于位置的服务)功能的测试方法,例如要求GPS(全球定位系统)卫星信号的汽车导航。 KAAS在固定实验室中。为了克服这些问题,需要一种可与KAAS集成的实时GPS仿真系统,因为虚拟空间中车辆的位置完全由驾驶员的虚拟意图决定。本文提出了构建基于VR的远程信息处理测试环境以生成GPS RF信号所需的新概念,该信号可实时反映虚拟驾驶过程中车辆位置的不断变化。要构建此系统,必须从与虚拟3D DB兼容的直角坐标系进行坐标变换,该虚拟3D DB用于使用WGS84和与GPS模拟器兼容的经纬度坐标系来构建KAAS的3D图像。此外,开发了实时HILS(硬件在环仿真)系统和CDMA(码分多址)仿真系统来评估远程信息处理设备。最后,我们展示了其应用和结果。

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