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南京邮电大学通信与信息工程学院,江苏省 南京市210000
Received:16 April 2026,
Revised:2026-05-18,
Accepted:30 June 2026,
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LIANG Xiao, JIANG Lingyun. Design of Multi-Band RF Energy and Solar Hybrid Harvesting Circuit for Passive IoT[J/OL]. Chinese Journal on Internet of Things, 2026.
LIANG Xiao, JIANG Lingyun. Design of Multi-Band RF Energy and Solar Hybrid Harvesting Circuit for Passive IoT[J/OL]. Chinese Journal on Internet of Things, 2026. DOI: 10.11959/j.issn.2096-3750.WLW26043.
针对现有无源物联网能量采集方案存在单频段射频适配性差、多能量源整合效率低、阻抗匹配设计不精准,且单一供能模式受环境影响大、能量输出稳定性不足等问题,设计了一款集成最大功率点跟踪(Maximum Power Point Tracking
MPPT)的射频能-太阳能混合环境能量收集电路。针对传统结构普遍存在的电压低,高插入损耗的缺点,提出了改进传统倍压结构,采用单端接地级联输出方式,实现多支路射频电压高效直流叠加,实现接近14.8V的开路电压和0dBm输入时1.363mW的最佳输出功率,相对于传统结构开路电压提升近四倍,最佳输出功率提升约7.5%,带载能力也有显著提升。同时,以BQ25504为核心设计双输入能量管理电路,针对太阳能与射频能MPPT系数的差异,采用两路独立MPPT适配+二极管防倒灌结构,实现双能量源独立最大功率跟踪与协同供电,保障能量稳定输出。
To solve the problems existing in conventional passive Internet of Things energy harvesting schemes
including poor adaptability of single-band RF energy harvesting
low efficiency of multi-source integration
inaccurate impedance matching
and unstable output under variable environments
a dual-channel RF–solar hybrid energy harvesting circuit with Maximum Power Point Tracking (MPPT) was proposed in this paper. An improved voltage multiplier with single-ended grounded cascaded output was designed to realize efficient DC stacking of RF voltages. An open-circuit voltage of nearly 14.8 V and a maximum output power of 1.363 mW were achieved at 0 dBm input power. Compared with traditional structures
the open-circuit voltage was increased nearly fourfold
and the output power was improved by approximately 7.5%. A dual-input energy management module based on BQ25504 was adopted
in which independent MPPT control was implemented for RF and solar inputs with diode reverse-current protection. Coordinated operation and stable energy output are realized in the whole system.
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