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Self-powered bridge
The invention discloses a self-powered bridge which comprises a bridge body, an auxiliary system, an energy supply system and a control system, the energy supply system comprises a power supply and a solar panel used for power generation, and the solar panel is installed on a bridge pier in a driven swing mode; the power supply is mounted on a bridge floor or a pier and used for storing electric energy generated by the solar panel and supplying power to the auxiliary system; the control system comprises a central processing unit and a sensor module, the sensor module at least comprises a light ray tracing sensor, and the light ray tracing sensor is installed on the solar panel and used for detecting the incident angle of sunlight. The central processing unit is used for receiving data detected by the light tracking sensor and controlling the solar panel to swing to change the incident angle of sunlight; by utilizing the characteristics of high pier and long solarization time of an existing bridge, a functional system is arranged on the pier, solar energy is effectively utilized to supply power to an auxiliary system of the bridge, the requirement for fossil energy is reduced, and the operation cost is saved while the environment is protected.
本发明公开了一种自供能型桥梁,包括桥梁本体、辅助系统、供能系统和控制系统,供能系统包括电源和用于发电的太阳能板,太阳能板以可被驱动的摆动的方式安装于桥墩;电源安装于桥面或桥墩,用于储存太阳能板发电产生的电能并向辅助系统供电;控制系统包括中央处理器和传感器模块,传感器模块至少包括光线追踪传感器,光线追踪传感器安装于太阳能板用于检测太阳光的入射角度,中央处理器用于接收光线追踪传感器检测的数据并控制太阳能板摆动以改变太阳光的入射角度;本发明利用现有桥梁的桥墩高大且日晒时间长的特点,在桥墩设置功能系统,有效利用太阳能为桥梁的辅助系统供电,减少对化石能源的需求,保护环境的同时节约了运行成本。
Self-powered bridge
The invention discloses a self-powered bridge which comprises a bridge body, an auxiliary system, an energy supply system and a control system, the energy supply system comprises a power supply and a solar panel used for power generation, and the solar panel is installed on a bridge pier in a driven swing mode; the power supply is mounted on a bridge floor or a pier and used for storing electric energy generated by the solar panel and supplying power to the auxiliary system; the control system comprises a central processing unit and a sensor module, the sensor module at least comprises a light ray tracing sensor, and the light ray tracing sensor is installed on the solar panel and used for detecting the incident angle of sunlight. The central processing unit is used for receiving data detected by the light tracking sensor and controlling the solar panel to swing to change the incident angle of sunlight; by utilizing the characteristics of high pier and long solarization time of an existing bridge, a functional system is arranged on the pier, solar energy is effectively utilized to supply power to an auxiliary system of the bridge, the requirement for fossil energy is reduced, and the operation cost is saved while the environment is protected.
本发明公开了一种自供能型桥梁,包括桥梁本体、辅助系统、供能系统和控制系统,供能系统包括电源和用于发电的太阳能板,太阳能板以可被驱动的摆动的方式安装于桥墩;电源安装于桥面或桥墩,用于储存太阳能板发电产生的电能并向辅助系统供电;控制系统包括中央处理器和传感器模块,传感器模块至少包括光线追踪传感器,光线追踪传感器安装于太阳能板用于检测太阳光的入射角度,中央处理器用于接收光线追踪传感器检测的数据并控制太阳能板摆动以改变太阳光的入射角度;本发明利用现有桥梁的桥墩高大且日晒时间长的特点,在桥墩设置功能系统,有效利用太阳能为桥梁的辅助系统供电,减少对化石能源的需求,保护环境的同时节约了运行成本。
Self-powered bridge
自供能型桥梁
2024-01-30
Patent
Electronic Resource
Chinese
IPC:
H02S
GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRA-RED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, E.G. USING PHOTOVOLTAIC [PV] MODULES
,
Erzeugung elektrischer Energie durch Umwandlung von Infrarot-Strahlung, sichtbarem Licht oder ultraviolettem Licht, z.B. unter Verwendung von Photovoltaik [PV]-Modulen
/
E01D
BRIDGES
,
Brücken
/
F16F
SPRINGS
,
Federn
/
G08B
SIGNALLING OR CALLING SYSTEMS
,
Signalisier- oder Rufsysteme
/
H02J
CIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER
,
Schaltungsanordnungen oder Systeme für die Abgabe oder Verteilung elektrischer Leistung
/
H04N
PICTORIAL COMMUNICATION, e.g. TELEVISION
,
Bildübertragung, z.B. Fernsehen
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