首页> 外文期刊>American journal of applied sciences >A NOVEL ARCHITECTURE OF MAXIMUM POWER POINT TRACKING FOR ULTRA-LOW-POWER BASED HYBRID ENERGY HARVESTER IN UBIQUITOUS DEVICES: A REVIEW | Science Publications
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A NOVEL ARCHITECTURE OF MAXIMUM POWER POINT TRACKING FOR ULTRA-LOW-POWER BASED HYBRID ENERGY HARVESTER IN UBIQUITOUS DEVICES: A REVIEW | Science Publications

机译:UBIQUITOUS设备中基于超低功率的混合能量收集器的最大功率点跟踪的新架构:科学出版物

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> This research work presents a novel architecture of an Ultra-Low-Power (ULP) based Hybrid Energy Harvester (HEH) consisting of multiple input sources such as kinetic, thermal and solar energy, harvested from passive human power. Having multiple ambient sources mitigates limitations caused by single sources especially for bodily-worn applications; however, this results in impedance mismatch among the different integrated sources. To overcome this limitation, the proposed ULP-HEH will use one power management unit with Maximum Power Point Tracking (MPPT) algorithm and impedance matching considerations to efficiently manage and combine power harvested from all three sources to achieve ULP consumptions. Among other crucial sub-modules of the ULP-HEH are its Asynchronous Finite State Machine (AFSM) cum resource sharing arbiter to prioritize and share energy sources for overall power reduction, an efficient rectification scheme for the piezoelectric input, an adaptive feedback for ULP conditioning, Zero-Current Switching (ZCS) for semi-lossless switching, a self-start circuit for low ambient startup, a Boost converter, a Buck regulator, a fuzzy-based micro-battery charger and a de-multiplexer to switch between harvesting or charging capabilities. All of which are implemented for maximum output extraction and minimal losses. This ULP-HEH will be developed in PSPICE software, Verilog coding under Mentor Graphics environment and later to be verified using Field Programmable Gate Array (FPGA) board before the final layout implementation in CMOS 0.13-μm process technology. This battery-less ULP-HEH is expected to deliver 3.0-5.0V of regulated voltage output from low ambient sources of 35 mV at startup. An efficiency of 90% with an output power of 650 μm is expected when all sources are summed. Also, this ULP-HEH is aimed at reducing power consumption to at least twice (<70 μW) of conventional approaches. The proposed ULP-HEH can be used for ULP bodily-worn electrical gadgets, wearable biomedical devices or to charge micro-batteries for portable electronic devices.
机译: >这项研究工作提出了一种基于超低功率(ULP)的混合能量收集器(HEH)的新颖架构,该混合能量收集器由多种输入源组成,例如动能,热能和太阳能,它们是从被动人力中获取的。具有多个环境源可减轻由单个源引起的限制,尤其是对于身体磨损的应用;但是,这会导致不同集成源之间的阻抗失配。为克服此限制,建议的ULP-HEH将使用一个具有最大功率点跟踪(MPPT)算法和阻抗匹配注意事项的功率管理单元,以有效地管理和组合从所有三个来源收集的功率以实现ULP消耗。 ULP-HEH的其他关键子模块包括其异步有限状态机(AFSM)以及资源共享仲裁器,可为总体功耗降低分配优先级并共享能源,用于压电输入的有效整流方案,用于ULP调节的自适应反馈,用于半无损开关的零电流开关(ZCS),用于低环境启动的自启动电路,升压转换器,降压调节器,基于模糊的微电池充电器和用于在收割或收割之间切换的解复用器充电功能。所有这些都实现了最大的输出提取和最小的损失。这款ULP-HEH将在Mentor Graphics环境下的PSPICE软件,Verilog编码中开发,随后将在CMOS0.13-μm工艺技术中进行最终布局之前,使用现场可编程门阵列(FPGA)板进行验证。这款无电池ULP-HEH有望在启动时从35 mV的低环境电源提供3.0-5.0V的稳压输出。当所有源加在一起时,预期效率为90%,输出功率为650μm。而且,该ULP-HEH旨在将功耗降低到传统方法的至少两倍(<70μW)。拟议中的ULP-HEH可用于ULP身体磨损的电子产品,可穿戴生物医学设备或为便携式电子设备的微型电池充电。

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