基于语义模型的仪器异构外设动态自适应方法

Junhua Chen, Ran Liu, Jiatong Zhang
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引用次数: 0

摘要

在传统的仪器开发模式中,需要设计和开发不同的硬件接口电路以及相应的外部设备驱动程序和功能模块,以满足特定的产品配置要求。然而,由于仪器软件开发系统架构耦合度高,设计资源管理和复用效率低,基于同一类型仪器微控制器芯片(IMC)开发具有不同外设(传感器、执行器等)的仪器设备,仍然需要大量的开发工作,已经不能满足多协议、多服务、多感知、多系列仪器设备。提出了一种基于语义模型的仪器异构外设动态自适应方法,可以支持基于同一核心芯片不同外设的产品族的快速发展。通过使用仪器专用开发工具包,根据异构外设的需求信息对语义模型进行定制和实例化。然后对模型实例进行解析,得到异构外设的资源适配软件代码。特别是针对资源受限型和资源丰富型仪器形态分别设计了静态编译的适配模式和动态运行的适配模式,能够支持核心芯片相同但外设不同的系列产品的快速开发以及仪器设备使用过程中外设的动态更换。与传统的开发模式相比,我们提出的方法可以降低产品成本,缩短仪器产品的开发周期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Semantic Model-based Dynamic Adaptation Method for Heterogeneous Peripherals of Instrument
Different hardware interface circuits and corresponding external device drivers and functional modules are needed to be designed and developed to meet specific product configuration requirements in the traditional instrument development model. However, due to the high coupling degree of instrument software development system architecture and inefficient management and reuse of design resources, the development of instrument devices with different peripherals (sensors, actuators, etc.) based on the same type of instrument microcontroller chip(IMC) still needs a lot of development work, which has been unable to meet the needs of the rapid development of multi-protocol, multi-service, multi-perception and multi-series instrument equipment. This paper presents a dynamic adaptation method of instrument heterogeneous peripherals based on semantic model, which can support the rapid development of product families based on the same core chip but with different peripherals. By using the instrument-specific development kit, the semantic model is customized and instantiated according to the requirement information of heterogeneous peripheral devices. Then the model instance is parsed to obtain the resource adaptation software code of the heterogeneous peripheral. In particular, this method designs the statically compiled adaptation mode and the dynamically running adaptation mode respectively for resource-constrained and resource-rich instrument forms, which can support the rapid development of a family of products with the same core chip but different peripherals as well as the dynamic replacement of peripherals during the use of instrument and equipment. The method we proposed can reduce the product cost and shorten the development cycle of instrument products compared with the traditional development mode.
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