Lambe Mutalub Adesina, O. Ogunbiyi, Bilkisu Jimada-Ojuolape
{"title":"Development of an Automatic Phase Selector for Nigerian Power Utility Customers","authors":"Lambe Mutalub Adesina, O. Ogunbiyi, Bilkisu Jimada-Ojuolape","doi":"10.53982/ajerd.2024.0702.02-j","DOIUrl":null,"url":null,"abstract":"Power utility customers in a developing country like Nigeria have constituted a habit of changing the electricity supply line from an unavailable or unstable phase to the most available or stable phase. The category of customers involved in this character are those on single phase power supply. However, this act is being carried out manually at the meter point using the cut-out fuses. This attitude results in phase unbalances, overheating electrical equipment including feeder pillars, transformer coils, network faults, and overall system instability. Thus, this paper presents the development of an Automatic Phase Selector for Nigerian Power Utility Customers. The device automatically selects an available phase from the three-phase power supply lines. The research comprises designing an automatic phase selector circuit, simulation of the designed circuit, programming code development in C- Language for the microcontroller, construction of the designed circuit, and carrying out tests on completed work done to ascertain the effectiveness of the developed system. The system operation involved a three-phase supply from the closest distribution network of the power utility company which is connected to a three-in-one gang switch while the switching ON and OFF of their static switches represent phase-off in an ideal situation. The operational results of this system are presented in the form of the truth table which indicates that the affected customer would not have a power supply only when the 3-phases are under voltage or overvoltage or unavailable. This implies that one of the three phases that meet the three criteria would be switched ON. A pure sine wave was used as input into the Optocoupler and the output waveform of the rectified pulsating signal is separately displayed. This output waveform is very clean and noiseless. Finally, the system when practically tested with an unbalanced three-phase supply, worked perfectly enhancing the flexibility of operating an Automatic Phase selector and hence avoiding manual switching of the phase selector which has been attributed to changing of cut-out fuses and associated stress as well as having a user-friendly phase selector.","PeriodicalId":394198,"journal":{"name":"ABUAD Journal of Engineering Research and Development (AJERD)","volume":"24 3","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"ABUAD Journal of Engineering Research and Development (AJERD)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.53982/ajerd.2024.0702.02-j","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Power utility customers in a developing country like Nigeria have constituted a habit of changing the electricity supply line from an unavailable or unstable phase to the most available or stable phase. The category of customers involved in this character are those on single phase power supply. However, this act is being carried out manually at the meter point using the cut-out fuses. This attitude results in phase unbalances, overheating electrical equipment including feeder pillars, transformer coils, network faults, and overall system instability. Thus, this paper presents the development of an Automatic Phase Selector for Nigerian Power Utility Customers. The device automatically selects an available phase from the three-phase power supply lines. The research comprises designing an automatic phase selector circuit, simulation of the designed circuit, programming code development in C- Language for the microcontroller, construction of the designed circuit, and carrying out tests on completed work done to ascertain the effectiveness of the developed system. The system operation involved a three-phase supply from the closest distribution network of the power utility company which is connected to a three-in-one gang switch while the switching ON and OFF of their static switches represent phase-off in an ideal situation. The operational results of this system are presented in the form of the truth table which indicates that the affected customer would not have a power supply only when the 3-phases are under voltage or overvoltage or unavailable. This implies that one of the three phases that meet the three criteria would be switched ON. A pure sine wave was used as input into the Optocoupler and the output waveform of the rectified pulsating signal is separately displayed. This output waveform is very clean and noiseless. Finally, the system when practically tested with an unbalanced three-phase supply, worked perfectly enhancing the flexibility of operating an Automatic Phase selector and hence avoiding manual switching of the phase selector which has been attributed to changing of cut-out fuses and associated stress as well as having a user-friendly phase selector.
在尼日利亚这样的发展中国家,电力客户已经养成了将供电线路从不可用或不稳定的相位切换到最可用或最稳定的相位的习惯。出现这种情况的用户属于单相供电用户。然而,这种行为是在电表点使用切断熔断器手动进行的。这种做法会导致相位不平衡、电气设备(包括馈线支柱、变压器线圈)过热、网络故障和整个系统的不稳定。因此,本文介绍了为尼日利亚电力公司客户开发的自动选相器。该设备可从三相供电线路中自动选择可用相位。研究内容包括设计自动选相器电路、模拟所设计的电路、用 C 语言为微控制器开发编程代码、构建所设计的电路,以及对已完成的工作进行测试,以确定所开发系统的有效性。系统运行涉及电力公司最近配电网络的三相电源,该电源与三合一群组开关相连,其静态开关的接通和断开代表理想情况下的分相。该系统的运行结果以真值表的形式显示,只有当三相电压过低、过高或不可用时,受影响的用户才无法获得供电。这意味着满足三个标准的三相中的一相将被接通。光耦合器使用纯正弦波作为输入,并分别显示整流脉动信号的输出波形。输出波形非常干净、无噪音。最后,在对不平衡三相电源进行实际测试时,该系统工作完美,提高了操作自动选相器的灵活性,从而避免了手动切换选相器,因为手动切换选相器会导致保险丝熔断和相关压力的变化,同时也方便了用户使用选相器。