1) hardware abstraction layer
硬件抽象层
1.
Design and Realization of Embedded System Developing Platform Hardware Abstraction Layer;
嵌入式系统开发平台硬件抽象层的设计与实现
2.
Principle and Implementation of Hardware Abstraction Layer Based on EMC2
EMC2的硬件抽象层原理与实现
3.
In this paper,the principle to implement the FPGA Waveform Portability and the definition of the hardware abstraction layer for FPGA in SCA is introduced.
介绍了实现软件无线电台中FPGA波形可移植性的一般方法,SCA中硬件抽象层的思想,以及针对FPGA芯片的硬件抽象层的定义。
2) hardware Abstract layer
硬件抽象层
1.
Research and Design on the Fuctiong of CTI System s Hardware Abstract Layer;
CTI系统硬件抽象层功能的研究与设计
2.
Using UM,the relationships between application layer and hardware abstract layer(HAL) were described.
用统一建模语言UML描述了DSP软件应用层和硬件抽象层(HAL)的逻辑结构和相互关系。
3.
According to the portability requirement of waveform component,the specifications of hardware Abstract layer connecting in the system of software communications architecture(SCA),and the open architecture and module design idea,a method of hardware Abstract layer(HAL) on FPGA was dealt with.
针对软件无线电关于波形软件的可移植性要求,借鉴软件通信体系硬件抽象层连接规范,采用开放式体系结构和模块化设计思想,研究了一种针对FPGA的硬件抽象层设计与实现方法。
3) HAL
硬件抽象层
1.
Study on the Device Management of Nios Ⅱ Embedded Processor System Based on the Hardware Abstraction Layer(HAL);
基于硬件抽象层HAL的NiosⅡ嵌入式处理器系统设备管理模式研究
2.
In order to resolve the problem of the hardware environment differences in building embedded system developing platform,this paper proposed the design solution and its realization method of a high portability Hardware Abstraction Layer(HAL) and then give the specification of its realization.
针对嵌入式系统开发平台构建中的硬件环境差异问题,给出了一种高移植性的硬件抽象层设计方案,并介绍了实现方法。
3.
As a software layer between embedded operation system and hardware in embedded system, HAL(Hardware Abstraction Layer) is a key problem of embedded application.
在嵌入式系统中,硬件抽象层作为嵌入式操作系统和硬件之间的软件层次是嵌入式应用的一个关键问题。
4) HAL Hardware Abstraction Layer
硬件抽象层,硬件分离层
5) RTHAL
实时硬件抽象层
1.
The paper proposed a method taking advantage of RTHAL(Real Time Hardware Abstract Layer),which run between hardware and Linux.
提出通过在底层硬件和操作系统之间增加实时硬件抽象层的方式来扩充和增强Linux实时性能。
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