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Microgrid control via powerline communications: Network synchronization field tests with prime modules

机译:通过电力线通信进行微电网控制:使用主要模块进行网络同步现场测试

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Advanced optimization of Smart Micro Grids (SMGs) requires precise electrical measurements in amplitude and phase, the latter requiring precise clock synchronization between devices. In this context, the paper presents some field test results for SMG synchronization using the powerline communication standard PRIME. The performance of PRIME is first tested in a realistic scenario corrupted by impulsive noise, showing that robust non-standard coding method are required. Then, a synchronization protocol based upon a NTP (network time protocol) like algorithm with a further frequency offset correction is proposed and tested. The protocol is implemented at the MAC layer. By use of a very light message exchange every 10 s, it assures a synchronization error below 10 µs, making it adequate for the SMG scenario.
机译:智能微电网(SMG)的高级优化要求在幅度和相位上进行精确的电气测量,而后者在设备之间需要精确的时钟同步。在这种情况下,本文提出了一些使用电力线通信标准PRIME进行SMG同步的现场测试结果。 PRIME的性能首先在被脉冲噪声破坏的现实情况下进行了测试,表明需要鲁棒的非标准编码方法。然后,提出并测试了基于NTP(网络时间协议)的类似算法的同步协议,并进行了进一步的频偏校正。该协议在MAC层实现。通过每10 s使用一次非常轻便的消息交换,它可以确保10 µs以下的同步误差,使其适合于SMG场景。

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