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基于正弦和拟合的太阳光追踪算法研究 被引量:1
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作者 邹杰 冯程鹏 +1 位作者 高欣 穆继亮 《中北大学学报(自然科学版)》 CAS 2022年第3期200-208,共9页
为解决太阳运动变化对其能量高效俘获作用影响的问题,提出了一种太阳运动轨迹追踪正弦和拟合算法.采用Matlab仿真工具对年份与系数的对应关系进行了拟合,估算出所有年份的赤纬角与时差.选取2014年~2023年为样本时间,通过对最大值、均值... 为解决太阳运动变化对其能量高效俘获作用影响的问题,提出了一种太阳运动轨迹追踪正弦和拟合算法.采用Matlab仿真工具对年份与系数的对应关系进行了拟合,估算出所有年份的赤纬角与时差.选取2014年~2023年为样本时间,通过对最大值、均值、均方根等3个误差参数进行定量分析,研究了正弦和拟合算法与传统算法的异同.仿真结果表明,对于赤纬角和时差的参量误差估算,最精准的传统算法的误差均值分别为0.106°和0.271 min,而正弦和拟合算法为0.008°和0.007 min,比较同一参量估算值,后者远小于前者;对于均方根误差,正弦和拟合算法稳定控制在10-3量级,比传统算法提高了两个数量级.试验结果表明,使用本算法的太阳能追光系统具有更佳的能量俘获效果.本文提出的算法有效地提高了太阳运动轨迹追踪精度,在太阳能高效俘获方面具有较高的实用价值. 展开更多
关键词 太阳能 太阳轨迹追踪 正弦和拟合算法 赤纬角 时差 误差分析
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簇首优选改进算法设计及其网络能耗影响研究
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作者 冯程鹏 何汇成 +1 位作者 邹杰 穆继亮 《电子测量技术》 北大核心 2022年第18期173-178,共6页
无线传感网络是由大量传感节点构成的分布式自组织网络,而传感节点采用电池供电,其有限的能量严重影响了网络的生存周期。本文提出了一种新的异构感知路由协议(ED-SEP),该协议在分簇阶段综合考虑节点的剩余能量和覆盖半径范围内邻居节... 无线传感网络是由大量传感节点构成的分布式自组织网络,而传感节点采用电池供电,其有限的能量严重影响了网络的生存周期。本文提出了一种新的异构感知路由协议(ED-SEP),该协议在分簇阶段综合考虑节点的剩余能量和覆盖半径范围内邻居节点的疏密程度及与基站的相对距离大小,从而选举出更具优势的簇首。采用MATLAB仿真分析了ED-SEP协议在改变基站位置和节点初始能量下的性能表现,并与稳定选举协议SEP、E-SEP进行比较。结果表明:通过改变网络中的参数,ED-SEP协议的网络稳定期相比SEP协议和E-SEP协议分别提高了29.6%和25.7%,基站的数据接收量达到了E-SEP协议的近3倍,有效提高了网络的能量利用率,极大地改善了无线传感网络的性能。 展开更多
关键词 无线传感器网络 SEP协议 剩余能量 邻居节点 能耗均衡
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荒漠化防治的自供电风速监测系统设计
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作者 何汇成 冯程鹏 穆继亮 《单片机与嵌入式系统应用》 2022年第11期84-87,共4页
土地荒漠化的扩张严重威胁着生态环境的可持续发展,对区域风速进行实时监测能为荒漠化防治工作提供科学的决策支撑。然而,目前大多数风速监测装置都存在严重依赖外部电源、功耗高的问题。为此,设计了一种基于复合能量采集的自供电风速... 土地荒漠化的扩张严重威胁着生态环境的可持续发展,对区域风速进行实时监测能为荒漠化防治工作提供科学的决策支撑。然而,目前大多数风速监测装置都存在严重依赖外部电源、功耗高的问题。为此,设计了一种基于复合能量采集的自供电风速监测系统。测试结果表明,该系统能够通过能源管理电路对太阳能和风能进行复合采集和储存,以驱动后端电路。无线传输模块将摩擦纳米发电机的输出信号上传至数据终端,最终实现风速信息的显示和存储。此外,低功耗逻辑设计有效延长了传感节点的工作时长。这项工作推动了自供电传感技术在环境监测领域的应用。 展开更多
关键词 自供电风速监测 ESP32 CC1101
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Breeze-activated wind speed sensor with ultra-low friction resistance for self-powered gale disaster warning
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作者 HE HuiCheng MU JiLiang +7 位作者 MU JinBiao feng chengpeng ZHAO JuanHong WANG Yin ZHOU Hao ZHANG Le HE Jian CHOU XiuJian 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2023年第1期57-70,共14页
The early warning and monitoring of gale disasters are very important for the safety of people’s lives and properties. Triboelectric nanogenerators(TENGs) are popular for wind speed sensors due to their self-powered ... The early warning and monitoring of gale disasters are very important for the safety of people’s lives and properties. Triboelectric nanogenerators(TENGs) are popular for wind speed sensors due to their self-powered property. However, a TENG cannot easily work at low wind speeds due to the limitation of the high frictional resistance structure. In this paper, a TENG-based breezeactivated wind speed sensor(BAWS) with an ultra-low frictional resistance is proposed. The key drive unit of the BAWS is a Savonius-like vertical axis wind turbine, which is fabricated by arrayed airfoil profile blades with excellent flow field characteristics. Here a wind turbine plays dual roles in driving the electromagnetic generator below it to supply energy and lead the TENG above it to sense the wind force. Compared to a classical turbine with a wind cup, the designed turbine has a low resistance torque. The synergistic effect of the drive unit with low-resistance and triboelectric materials with low viscosity allows the BAWS to be activated even at a wind speed of 2.9 m/s. The sensitivities of the voltage frequency and current amplitude of the TENG are used to reflect the electrical property of the BAWS. The measured values are 0.291 Hz/(m·s-1) and 0.221 μA/(m·s-1),which reflects the good sensitivity of the BAWS. Moreover, the linearity of the BAWS reaches up to 0.991, which shows an accurate output for the wind speed. In addition, the device is equipped with a combined electromagnetic-solar unit as the sole power source to meet the sensor’s all-weather operation requirements. This work expands the application prospects of selfpowered sensing technology in the field of disaster warning. 展开更多
关键词 gale disaster warning triboelectric nanogenerator wind speed sensor Savonius-like vertical axis wind turbine self-powered wireless sensing
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Electromechanical coupling properties of a self-powered vibration sensing device for near-surface observation tower monitoring 被引量:2
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作者 MU JiLiang HE HuiCheng +7 位作者 MU JinBiao HE Jian SONG JinSha HAN XiaoTao feng chengpeng ZOU Jie YU JunBin CHOU XiuJian 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2022年第7期1545-1557,共13页
The wind-induced vibration of a remote sensing tower is the key factor affecting the stability of image sensing and structural reliability. Monitoring the vibration of a long-time unattended tower is critical to its p... The wind-induced vibration of a remote sensing tower is the key factor affecting the stability of image sensing and structural reliability. Monitoring the vibration of a long-time unattended tower is critical to its proper operation. Currently, most monitoring devices are supplied with wired power or battery, significantly limiting their practical applications in remote areas. In this paper,a self-powered vibration sensing device based on hybrid electromechanical conversion mechanisms is proposed. The device depends on a cylindrical magnetic levitation structure sensitive to ambient vibration for transferring mechanical energy and is taken as a dual-functional heterogeneous integrated system comprising electromagnetic, piezoelectric, and triboelectric generators. When the device vibrates under environmental force driving, the suspension magnet reciprocates vertically and generates induced electromagnetic energy, which is used to power the device. Moreover, the triboelectric and piezoelectric voltages,respectively originating from magnet impact on two separation friction materials and magnetic field repulsion-induced strain deformation of a piezoelectric sheet, are used as the synergistic sensing signals. To improve the output energy, a set of dualsegmented annular coils is designed in an electromagnetic generator, which greatly avoids the obstructive effect of the suspended magnet on the magnetic flux change at its end. Compared with a whole isochoric coil, it increases the output voltage by 78.3%.For the triboelectric sensing module, a silicone film with a large specific surface area is fabricated via 3D modification, which improves the output voltage by 29.4%. Furthermore, a pair of piezoelectric sensing modules is set to improve the accuracy of comparative sensing data. The experimental measurement shows that the device maintains a high sensitivity of 6.711 V(m s;);and excellent linearity of 0.991 in the range of 0–14 m s;. This work provides a practical strategy for the vibration monitoring of remote sensing towers and exhibits attractive potential in early warning and data analysis. 展开更多
关键词 remote sensing tower electromechanical coupling synergistic sensing magnetic levitation vibration online monitoring
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