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Powerline communications interface in CSMA/CA-networks

机译:CSMA / CA网络中的电力线通信接口

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The utilization of existing powerlines for communication purposes opens many possibilities, which can be advantageous for a wide range of field bus applications. Known home automation solutions have low transmission speeds (e.g. EIB, LON) or works with other packet-oriented communication techniques (OFDM- or TDMA-based technologies). Networks with CSMA/CA access (e.g. SCAN) requires minimized signal delay times because this delay limits the possible transmission speed. CAN systems can be used for real-time applications and are especially time-critical. They work with bit-oriented arbitration mechanisms and are composed of protocol frames (acknowledge-flag set from other bus nodes in the same frame). Therefore, the maximum delay time on the transmission and receive path must be smaller than a half bit time. This hard timing requirement causes big problems during the realization of CAN powerline transceivers. Another requirement beside the global goal of real-time capability is the development of cost- and expenditure-minimized transceivers.
机译:将现有电力线用于通信目的开辟了许多可能性,这对于广泛的现场总线应用可能是有利的。已知的家庭自动化解决方案具有低传输速度(例如,EIB,LON)或与其他面向分组的通信技术(基于OFDM或TDMA的技术)一起工作。具有CSMA / CA访问权限的网络(例如SCAN)需要最短的信号延迟时间,因为该延迟限制了可能的传输速度。 CAN系统可用于实时应用,并且对时间要求特别严格。它们使用面向位的仲裁机制,并且由协议帧(同一帧中其他总线节点设置的确认标志)组成。因此,发送和接收路径上的最大延迟时间必须小于半比特时间。这种硬时序要求在实现CAN电力线收发器的过程中引起了很大的问题。除了实时能力的全球目标之外,另一个要求是开发成本和支出最小的收发器。

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