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1.国网江苏省电力有限公司信息通信分公司,江苏 南京 210024
2.南京灵达电气有限责任公司,江苏 南京 211112
3.国网江苏省电力有限公司泰州供电分公司,江苏 泰州 225306
[ "贾平(1982‒ ),男,国网江苏省电力有限公司信息通信分公司高级工程师,主要研究方向为电力通信组网规划、新一代通信电源与系统运维技术。" ]
[ "高军锋(1978‒ ),男,南京灵达电气有限责任公司工程师,主要研究方向为直流电源系统、自动控制理论与技术。" ]
[ "华纬韬(1995‒ ),男,国网江苏省电力有限公司信息通信分公司助理工程师,主要研究方向为电力通信运维技术、蓄电池远程监控。" ]
[ "陈文(1980‒ ),男,国网江苏省电力有限公司泰州供电分公司高级工程师,主要研究方向为直流电源运行检修、蓄电池状态监测技术。" ]
[ "时维俊(1988‒ ),男,国网江苏省电力有限公司泰州供电分公司高级工程师,主要研究方向为电网直流电源监控、蓄电池远程核容与检修。" ]
[ "徐惠臣(1994‒ ),男,国网江苏省电力有限公司信息通信分公司工程师,主要研究方向为电力通信网络技术、电力物联网、智慧运检技术。" ]
[ "刘剑汛(1982‒ ),男,南京灵达电气有限责任公司助理工程师,主要研究方向为通信电源技术。" ]
收稿日期:2024-11-19,
修回日期:2025-02-24,
纸质出版日期:2025-06-10
移动端阅览
贾平,高军锋,华纬韬等.能源互联网直流电源远程核容自适应补偿机制研究[J].物联网学报,2025,09(02):95-106.
JIA Ping,GAO Junfeng,HUA Weitao,et al.Research on adaptive compensation mechanism for DC power remote capacity checking of Internet of energy[J].Chinese Journal on Internet of Things,2025,09(02):95-106.
贾平,高军锋,华纬韬等.能源互联网直流电源远程核容自适应补偿机制研究[J].物联网学报,2025,09(02):95-106. DOI: 10.11959/j.issn.2096-3750.2025.00476.
JIA Ping,GAO Junfeng,HUA Weitao,et al.Research on adaptive compensation mechanism for DC power remote capacity checking of Internet of energy[J].Chinese Journal on Internet of Things,2025,09(02):95-106. DOI: 10.11959/j.issn.2096-3750.2025.00476.
直流电源是能源互联网通信保障的基础设施,针对其核对性放电时存在的工作量大、复杂度高、危险性高以及直接将电能消耗导致电能浪费等问题,研究了基于物联网架构利用可控硅链降压模块实现远程充放电控制,引入放电电流补偿控制单元,实现了对真实负载的在线恒流放电,通过分析直流电源远程测控业务需求,提出了面向充放电实时控制的通信组网方案;面向不同应用场景,提出了3种蓄电池自动在线全容量核容方法,通过搭建系统与控制模块的仿真模型,验证了核容方法的有效性,且核容过程中系统能量被全部利用,实现了能源的清洁高效利用。
Direct current (DC) power supply is the infrastructure of the guarantee of Internet of energy communication. It has many problems
such as heavy workload
high complexity
high risk and waste of electric energy when checking discharge. The remote charge and discharge control based on the architecture of Internet of things by using thyristor chain step-down module was studied. The discharge current compensation control unit was introduced to realize the on-line constant current discharge of the real load. By analyzing the remote measurement and control business requirements of DC power supply
a communication networking scheme for real-time control of charge and discharge was proposed. Aiming at different application scenarios
three automatic online full-capacity capacity checking methods for batteries were proposed. By building a simulation model of the system and control module
the effectiveness of the capacity checking method was verified
and the system energy was fully utilized in the process of capacity checking
which realized the clean and efficient utilization of energy.
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