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Efficient powering of access network elements using remote powering Strategy

机译:使用远程供电策略的接入网络元件的高效供电

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More than 10 years ago explorations on powering strategy for access network using "higher voltage up to 1000V" was made at Swisscom Laboratory in collaboration with Eurescom [5][6]and the FS-VDSL group [3][4]. Papers, reports, field trials, demonstrators were set-up to demonstrate the interest of such Technology. Contributions were written for Intelec and Telescon conferences. It has taken some time to implement new ideas, but now it becomes reality. Today, the demand and offer for broadband Internet services increases drastically More and more applications like TV on demand, streaming services, online gaming or entertainment are very bandwidth hungry. The target of 100Mbit for everyone has been already set. To face the competitors, it is necessary to follow this market trend. While FTTH is the ultimate access network technology, copper based solutions can be deployed faster and at lower cost. The price to pay for these very high bandwidths is the shortening of the usable copper loops and the necessity to bring the active broadband nodes closer to the customers. In the architecture called FTTS (Fiber To The Street), the broadband node (mCAN) is placed in a man-hole. The rugged climatic conditions don't permit the use of standard hardware. Extended temperature range, water and mud are the key points for the hardware design. Supplying sufficient power with reduced power losses and high reliability to these nodes becomes very challenging. The space inside the case, operational and environmental parameters do not allow the use of batteries in such harsh conditions. A main decision was to use the remote powering strategy. Company guidelines and rules apply for the backup time. High efficiency converters are used for the CO equipment and the design of the powering lines is designed with maximum additional 10 W losses per powering circuit target. These restrictions are met with the use of spare copper pairs for remote powering.
机译:10多年前,在Swisscom实验室与EUNECOM [5] [6]和FS-VDSL组[3] [3] [3],在SWISSCOM实验室采用“高达1000V高达1000V高达1000V”的通电策略的探索。论文,报告,实地试验,示威者被设置为展示这种技术的利益。为智利和望远镜会议编写贡献。它已经花了一些时间来实施新想法,但现在它成为现实。如今,宽带互联网服务的需求和优惠越来越多地增加了电视时需求,流媒体服务,在线游戏或娱乐等应用非常饥饿。每个人都已经设置了100Mbit的目标。面对竞争对手,有必要遵循这个市场趋势。虽然FTTH是最终接入网络技术,但可以更快地部署铜基的解决方案。支付这些非常高带宽的价格是缩短可用的铜回循环以及将主动宽带节点更接近客户的必要性。在称为FTT(光纤到街道的光纤)的体系结构中,宽带节点(MCAN)放置在一个人孔中。崎岖的气候条件不允许使用标准硬件。延长温度范围,水和泥浆是硬件设计的关键点。为这些节点提供降低的功率损耗和高可靠性,提供足够的功率变得非常具有挑战性。案例内的空间,操作和环境参数不允许在这种恶劣条件下使用电池。主要决定是使用远程供电策略。公司指南和规则适用于备份时间。高效率转换器用于CO设备,电源线的设计设计,每个电源电路目标的最大额外10 W损耗。通过使用备用铜对进行远程供电,满足这些限制。

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