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Encapsulation and Entity-Based Approach of Interconnection Between Sensor Platform and Middleware of Pervasive Computing

机译:传感器平台与普适计算中间件对接的封装和基于实体的方法

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In this paper, we present a unique mechanism that enables seamless interconnection and scalability of the interface between the sensor platform layer and the middleware layer in pervasive computing. The disadvantages of using one-to-one hard coding for various device drivers and firmware for interfacing sensor platform and middleware layers are primarily a lack of flexibility and scalability when the system changes environments. The encapsulation of access point of the sensor platform layer provides developers and designers with an effective way of interconnecting and scaling up with diverse and various kinds of sensors and actuators. In this paper, we define encapsulation of the access point of the sensor platform layer. The module for encapsulating the detected sensor data is called 'context representer'. The context representer converts detected sensor data to raw context. For interconnecting with the sensor platform layer and the middleware layer, 'entity manager' module in the middleware layer for each entity of context representer is defined. The entity manager is for transforming the raw context to a general context. Then, the middleware is able to interact with context-aware applications according to the reasoning with context in the middleware layer, upper layer requests and lower layer status, without being influenced by a change of sensor node and sensor platform environments. We present the encapsulation mechanism and entity manager for efficient interfacing and scalability of context-aware applications and compare them with other approaches.
机译:在本文中,我们提出了一种独特的机制,该机制可以实现普适计算中传感器平台层和中间件层之间接口的无缝互连和可伸缩性。对传感器平台和中间件层进行接口的各种设备驱动程序和固件使用一对一的硬编码的缺点主要是在系统更改环境时缺乏灵活性和可伸缩性。传感器平台层接入点的封装为开发人员和设计人员提供了一种有效的方式,可以与各种不同的传感器和执行器互连并按比例放大。在本文中,我们定义了传感器平台层访问点的封装。用于封装检测到的传感器数据的模块称为“上下文表示符”。上下文代表将检测到的传感器数据转换为原始上下文。为了与传感器平台层和中间件层互连,在中间件层中为上下文表示符的每个实体定义了“实体管理器”模块。实体管理器用于将原始上下文转换为通用上下文。然后,中间件能够根据中间件层中的上下文推理,上层请求和下层状态与上下文感知应用程序进行交互,而不受传感器节点和传感器平台环境的变化的影响。我们介绍了用于上下文识别应用程序的有效接口和可伸缩性的封装机制和实体管理器,并将它们与其他方法进行了比较。

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