Applying digital current differential systems over leased digital service

K. Fodero, G. Rosselli
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引用次数: 2

Abstract

In the early 1980s, many utilities had current differential pilot wire systems installed on lower voltage lines. These relay systems were applied over either a privately owned communications cable (pilot wire) or a dedicated leased circuit from the local telephone company. In the mid-to-late 1980s, the digital communications boom began and telephone companies started converting their infrastructure to fiber optics. New fiber-optic technologies like SONET and ATM allowed the telephone companies to take advantage of the high bandwidth fiber optics and allowed the greater flexibility of circuit allocation and routing. As with all new technology, this new communications architecture was promoted as great for everybody except, of course, those applications designed to operate specifically over a point-to-point dedicated circuit. Many utilities that relied on these circuits for their pilot wire relaying were advised that these circuits would be obsolete and no longer available. The existing pilot wire relays would not operate over the new circuits, creating a dilemma for the utilities that had relied on them. Faced with this challenge, some utilities converted their pilot wire systems to fiber optic, some converted the protection schemes to distance-based pilot protection, and some held on to the old system as long as possible. In the 1990s, current differential relay systems also evolved from their analog pilot wire roots to completely digital systems with modern high-speed digital communication interfaces. Now, once again, many utilities desired to apply these systems over leased digital communication circuits.
在租用的数字业务上应用数字电流差分系统
在20世纪80年代早期,许多公用事业公司在低压线路上安装了电流差动导线系统。这些中继系统应用于私人拥有的通信电缆(导频线)或从当地电话公司租用的专用电路。在20世纪80年代中后期,数字通信热潮开始,电话公司开始将其基础设施转换为光纤。像SONET和ATM这样的新型光纤技术允许电话公司利用高带宽光纤,并允许更大的电路分配和路由灵活性。与所有新技术一样,这种新的通信架构被宣传为对所有人都很好,当然,那些专门设计在点对点专用电路上运行的应用除外。许多依靠这些电路进行引线继电器的公用事业公司被告知,这些电路将过时,不再可用。现有的试点电线继电器将无法在新电路上运行,这给依赖它们的公用事业公司造成了两难境地。面对这一挑战,一些公用事业公司将其试点电线系统转换为光纤系统,一些将保护方案转换为基于距离的试点保护方案,还有一些则尽可能长时间地使用旧系统。在20世纪90年代,电流差动继电器系统也从其模拟导频导线根演变为具有现代高速数字通信接口的完全数字系统。现在,再一次,许多公用事业希望在租用的数字通信电路上应用这些系统。
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