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Micro processor based advanced bus protection scheme using IEC 61850 process bus (9-2) sampled values

机译:基于Micro处理器的高级总线保护方案,使用IEC 61850流程总线(9-2)采样值

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A novel, phase segregated bus differential protection scheme, which utilizes independent multiprinciple advanced protection algorithms, such as, differential percent slope, delta phase directional comparison, rate of change of differential (ROCOD) currents, delta phase directional comparison on zero sequence current differential, fast CT saturation detection, second harmonic blocking and a check zone to secure the electrical bus bars upto three zones (two main and one transfer bus) will be discussed. Various combinations of the bus architectures or topologies can be protected with bus couplers, isolators, and CTs configurations including the end-faults detection capability. The proposed advanced microprocessor based bus protection scheme does not require digital current inputs (sampled values) from Merging Units; instead, it has the ability to measure the conventional CT currents within the protection unit, and will share / distribute the sampled values using IEC 61850, 9-2 protocol, as a Merging Unit with other protection units to perform the overall differential protection. Each protection unit therefore acts as a processing (subscribing sampled values) and as well as a Merging Unit (publishing sampled values). The scheme can be scaled to support up to 24 bays (24 sets of three phase CT current inputs) and a three phase PT voltage input with 4 individual relay protection unit (6 sets of three phase CT current Inputs per relay) functions together as one protection scheme, in a very compact electrical panel (4 × 3U rack units). For time synchronization, additional inputs, and outputs, an I/O unit is used to accommodate the breaker status, isolator status, and any other inputs into the bus protection scheme.
机译:一种新颖的相位隔离总线差分保护方案,利用独立的多曲程先进保护算法,如差异百分比斜率,Δ相位方向比较,差分(Rocod)电流的变化率,ZERE序列电流差分的Δ相位定向比较,快速CT饱和检测,第二次谐波阻塞和检查电气母线高达三个区域(两个主要和一个转移总线)的检查区。可以使用总线耦合器,隔离器和CTS配置保护总线架构或拓扑的各种组合,包括最终故障检测能力。所提出的基于先进的微处理器的总线保护方案不需要合并单位的数字电流输入(采样值);相反,它能够测量保护单元内的传统CT电流,并将使用IEC 61850,9-2协议共享/分配采样值,作为具有其他保护单元的合并单元,以执行整体差分保护。因此,每个保护单元充当处理(订阅采样值),也是合并单元(发布采样值)。该方案可以缩放,以支持最多24个托架(24组三相CT电流输入)和三相PT电压输入,其中4个单独的继电器保护单元(每个继电器的6组三相CT电流输入)作为一个保护方案,在一个非常紧凑的电气板(4×3U机架单元)中。对于时间同步,附加输入和输出,I / O单元用于适应断路器状态,隔离状态和任何其他输入到总线保护方案。

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