基于零序电压分布的小电阻接地系统单相故障测距方法OA
Single-phase fault location method for low-resistance grounding system based on zero-sequence voltage distribution
在小电阻接地系统中,发生单相故障后,保护装置会立即跳闸.精准的故障定位能够减少巡线时间,从而提高供电可靠性.然而,对时误差和线路参数不准确会降低故障测距精度.针对此问题,文中提出一种基于零序电压分布的故障测距方法.首先,根据零序电流的分布,推导故障线路上零序电压幅值、相位的分布方程.在此基础上,提出相应的测距方法.当故障点上游无冗余量测信息时,利用线路首末端的量测信息及实测线路参数建立测距方程,求解初始故障距离,并在疑似故障区域内进行搜索以确定精确故障位置.当上游存在冗余量测信息时,从相量角度出发,建立幅值、相位双约束的测距模型,并采用改进的粒子群算法求解故障距离与线路实际参数.此外,从函数拟合的角度,进一步提出利用分支线路的量测信息确定零序电压幅值分布方程,从而求解故障距离.仿真结果表明,所提测距算法不受对时误差的干扰,且在上游存在冗余量测信息的情况下,能够有效克服线路参数不准确对测距精度造成的不利影响.
In low-resistance grounding systems,single-phase ground faults trigger immediate protection tripping.Accurate fault location reduces patrol time and increases the reliability of the power supply.However,time synchronization errors and inaccurate line parameters degrade the location accuracy.To address these issues,a fault location method based on distribution characteristics of zero-sequence voltage is proposed in this paper.Firstly,the amplitude and phase distribution equations of the zero-sequence voltage along the faulted line are derived from the zero-sequence current distribution.Then,a corresponding fault location method is developed.When redundant measurement information is unavailable upstream of the fault point,the initial fault distance is calculated using measurements at both ends of the line and measured line parameters.The precise fault location is then determined by searching within the suspected fault area.In the presence of redundant measurements,a dual-constraint location model based on amplitude and phase is proposed from the perspective of phasors.An improved particle swarm optimization algorithm is used to solve for fault distance and actual line parameters.Additionally,a location method based on function fitting is proposed,using branch line measurements to determine the amplitude distribution equation and then solve for fault distance.Simulation results demonstrate that the proposed algorithm is immune to synchronization errors and can overcome the adverse effects of inaccurate line parameters when redundant measurements are available upstream.
朱文贺;仉志华;李广;薛永端
中国石油大学(华东)新能源学院,山东 青岛 266580中国石油大学(华东)新能源学院,山东 青岛 266580中国石油大学(华东)新能源学院,山东 青岛 266580中国石油大学(华东)新能源学院,山东 青岛 266580
信息技术与安全科学
小电阻接地系统零序电压分布单相接地故障故障测距对时误差线路参数偏差
low-resistance grounding systemzero-sequence voltage distributionsingle-phase ground faultfault locationsynchronization errorsline parameter deviation
《电力工程技术》 2026 (8)
36-45,10
国家自然科学基金资助项目(52077221)
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