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首页> 外文期刊>Sensors and Actuators, A. Physical >A novel road energy harvesting system based on a spatial double V-shaped mechanism for near-zero-energy toll stations on expressways
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A novel road energy harvesting system based on a spatial double V-shaped mechanism for near-zero-energy toll stations on expressways

机译:基于空间双V形机制的新型道路能量收集系统在高速公路上的近零能量收费站

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To replace traditional energy sources, researchers are exploring renewable energy technologies. With the continued development of cities, the number of expressways and toll stations in China has increased rapidly. Meanwhile, the expressway toll stations have great potential for kinetic energy scavenging for electronic accessories. This paper presents a novel road energy harvesting system (REHS) based on a spatial double V-shaped mechanism for self-powering small electronic accessories in near-zero-energy toll stations on expressways. The proposed system can be installed at the entrances and exits of expressway near-zero-energy toll stations, to convert the wasted kinetic energy of moving vehicles into electric power. The suggested system comprises four modules: speed bump module, transmission module, generator module and power storage module. As the energy input, the speed bump module captures the kinetic energy of moving vehicles. The transmission module contains a spatial double V-shaped mechanism to transform the vertical linear motion into unidirectional rotary motion. In the energy storage module, the supercapacitors are used to store electrical energy. The experimental analyses were performed using mechanical testing and sensing machine (MTS) and a maximum output voltage of 12.64 V was recorded at a square wave based input force of 500 N and 0.1 Hz frequency. The overall potential of power generation/year for all mainline toll stations was estimated and found that China has 219.66 MW h of potential only from road-based toll stations. The prolific findings prove the feasibility and practicality of the proposed REHS for near-zero-energy toll stations on expressways.
机译:为了取代传统能源,研究人员正在探索可再生能源技术。随着城市的不断发展,我国高速公路和收费站的数量迅速增加。同时,高速公路收费站在电子配件的动能回收方面也有很大的潜力。本文提出了一种基于空间双V形机构的新型道路能量收集系统(REHS),用于为高速公路近零能耗收费站中的小型电子配件供电。该系统可以安装在高速公路零能耗收费站附近的出入口,将行驶车辆的动能浪费转化为电能。该系统由四个模块组成:减速模块、变速器模块、发电机模块和储能模块。作为能量输入,减速模块捕捉移动车辆的动能。传动模块包含一个空间双V形机构,用于将垂直线性运动转换为单向旋转运动。在储能模块中,超级电容器用于存储电能。使用机械测试和传感机(MTS)进行实验分析,在基于方波的输入力为500 N、频率为0.1 Hz时,记录到最大输出电压为12.64 V。估算了所有主线收费站每年的总发电潜力,发现中国只有公路收费站的发电潜力为219.66兆瓦时。大量的研究结果证明了拟议的高速公路近零能耗收费站REHS的可行性和实用性。

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