This paper explores and proposes a design solution of an integrated skip cycle mode (SCM) control circuit with a simple structure. The design is simulated and implemented with XD10H-1.0μm modular DIMOS 650 V proces...This paper explores and proposes a design solution of an integrated skip cycle mode (SCM) control circuit with a simple structure. The design is simulated and implemented with XD10H-1.0μm modular DIMOS 650 V process. In order to meet the requirement of a wide temperature range and high yields of products, the schematic extracted from the layout is simulated with five process corners at 27℃ and 90℃. Simulation results demonstrate that the proposed integrated circuit is immune to noise and achieves skipping cycle control when switching mode power supply (SMPS) works with low load or without load.展开更多
Voltage and frequency are usually considered and assessed independently in the design and operation of electrical networks. However, these two are linked. Each and every malfunctioning electrical system has an impact ...Voltage and frequency are usually considered and assessed independently in the design and operation of electrical networks. However, these two are linked. Each and every malfunctioning electrical system has an impact on both voltage and frequency. This paper presents the opportunity for monitoring the distributed electrical energy by means of a system that monitors, controls, and provides a breakpoint based on high or low voltage and frequency tripping mechanism that avoids any damage to the load. The designed system comprised a switch mode power supply (SMPS), a direct digital synthesizer (DDS), and PIC16F876A microcontroller techniques for stable voltage and frequency outputs. Proteus design suite version 8.11 software and Benchcope SDS1102CN were used for modeling and simulation. The hardware prototype was implemented at a telecom cell site for data capturing and analysis. Test results showed that the implementation of the prototype provided stable and constant outputs of 222 V/50 Hz and 112 V/60 Hz which constituted 99% and 99.8% efficiency for voltage and frequency performance respectively. The paper also discusses different technologies that can be adopted by the system to mitigate voltage and frequency effects on customer appliances.展开更多
多电源系统在相互切换时因中性线接地方式的不同,将会对不间断电源(uninterruptible power supply,UPS)系统性能产生较大影响。首先,在三极和四极自动转换开关基础上,通过不同接地方式搭建了多电源系统电路等效模型,探讨了不同电路结构...多电源系统在相互切换时因中性线接地方式的不同,将会对不间断电源(uninterruptible power supply,UPS)系统性能产生较大影响。首先,在三极和四极自动转换开关基础上,通过不同接地方式搭建了多电源系统电路等效模型,探讨了不同电路结构的优缺点,并通过搭建MATLAB/Simulink仿真模型,对多电源系统电路性能指标进行了仿真验证;在多电源系统电路基础上,搭建了多电源系统UPS电路MATLAB/Simulink仿真模型,对多电源系统UPS电路关键性能指标进行了仿真实验。其次,以多电源系统UPS电路不产生杂散电流,中性线不分流,中性线接地基准连续,多路输入电源之间、输入电源与输出电源之间、输入电源与旁路电源之间电气隔离等性能指标为优化目标,提出了3种多电源系统UPS电路结构优化方案。最后,搭建3种优化改进电路MATLAB/Simulink仿真模型,对3种UPS电路性能指标进行仿真实验,实验表明改进方案三“多电源系统UPS电源电路加装旁路隔离变压器”具有多电源系统UPS电源电路最优性能指标。展开更多
文摘This paper explores and proposes a design solution of an integrated skip cycle mode (SCM) control circuit with a simple structure. The design is simulated and implemented with XD10H-1.0μm modular DIMOS 650 V process. In order to meet the requirement of a wide temperature range and high yields of products, the schematic extracted from the layout is simulated with five process corners at 27℃ and 90℃. Simulation results demonstrate that the proposed integrated circuit is immune to noise and achieves skipping cycle control when switching mode power supply (SMPS) works with low load or without load.
文摘Voltage and frequency are usually considered and assessed independently in the design and operation of electrical networks. However, these two are linked. Each and every malfunctioning electrical system has an impact on both voltage and frequency. This paper presents the opportunity for monitoring the distributed electrical energy by means of a system that monitors, controls, and provides a breakpoint based on high or low voltage and frequency tripping mechanism that avoids any damage to the load. The designed system comprised a switch mode power supply (SMPS), a direct digital synthesizer (DDS), and PIC16F876A microcontroller techniques for stable voltage and frequency outputs. Proteus design suite version 8.11 software and Benchcope SDS1102CN were used for modeling and simulation. The hardware prototype was implemented at a telecom cell site for data capturing and analysis. Test results showed that the implementation of the prototype provided stable and constant outputs of 222 V/50 Hz and 112 V/60 Hz which constituted 99% and 99.8% efficiency for voltage and frequency performance respectively. The paper also discusses different technologies that can be adopted by the system to mitigate voltage and frequency effects on customer appliances.
文摘多电源系统在相互切换时因中性线接地方式的不同,将会对不间断电源(uninterruptible power supply,UPS)系统性能产生较大影响。首先,在三极和四极自动转换开关基础上,通过不同接地方式搭建了多电源系统电路等效模型,探讨了不同电路结构的优缺点,并通过搭建MATLAB/Simulink仿真模型,对多电源系统电路性能指标进行了仿真验证;在多电源系统电路基础上,搭建了多电源系统UPS电路MATLAB/Simulink仿真模型,对多电源系统UPS电路关键性能指标进行了仿真实验。其次,以多电源系统UPS电路不产生杂散电流,中性线不分流,中性线接地基准连续,多路输入电源之间、输入电源与输出电源之间、输入电源与旁路电源之间电气隔离等性能指标为优化目标,提出了3种多电源系统UPS电路结构优化方案。最后,搭建3种优化改进电路MATLAB/Simulink仿真模型,对3种UPS电路性能指标进行仿真实验,实验表明改进方案三“多电源系统UPS电源电路加装旁路隔离变压器”具有多电源系统UPS电源电路最优性能指标。