JP3204740U - Wireless video monitoring confirmation system - Google Patents
Wireless video monitoring confirmation system Download PDFInfo
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- JP3204740U JP3204740U JP2015006648U JP2015006648U JP3204740U JP 3204740 U JP3204740 U JP 3204740U JP 2015006648 U JP2015006648 U JP 2015006648U JP 2015006648 U JP2015006648 U JP 2015006648U JP 3204740 U JP3204740 U JP 3204740U
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Abstract
【課題】ブラインドホール等前方確認が困難な場所への打込による危険軽減を図るため、太陽光発電装置、動画映像無線伝送装置を利用した無線動画映像監視確認システムを提供する。【解決手段】動画映像無線伝送装置、太陽光発電装置2を用い、通信線・電力線の布設工事が不要であり、各柱1には消費電力を少なくするため、光センサー13を用い周囲の明るさが一定以上になると蓄電池10を接続し電源供給を行い撮影、動画像送受信を開始し、一定以下になると蓄電池から電源を切断しシステムを停止させる。また、モニターの消費電力を少なくするため人感センサーを用い、人の動きを感知している間はモニターへ蓄電池を接続し電源供給を行うことで動画映像を表示し、立ち去ると一定時間経過後に蓄電池から電源を切断するシステム。【選択図】図1Provided is a wireless moving image monitoring and confirmation system using a solar power generation device and a moving image wireless transmission device in order to reduce danger by driving into a place such as a blind hole where forward confirmation is difficult. A video video wireless transmission device and a solar power generation device 2 are used, and no laying work for communication lines and power lines is required. When the battery voltage exceeds a certain level, the storage battery 10 is connected and power is supplied to start photographing and moving image transmission / reception. In addition, a motion sensor is used to reduce the power consumption of the monitor, and while sensing human movements, a moving image is displayed by connecting a storage battery to the monitor and supplying power. A system that disconnects power from the storage battery. [Selection] Figure 1
Description
送信局、受信局を任意の場所へ設置し、太陽光発電装置若しくは蓄電池を装備し、周囲の明るさや人の動きを感知するセンサーによりシステムへの電源供給、切断を行い、カメラ動画映像を無線伝送により表示する無線動画映像監視確認システムに関するものである。Transmitting and receiving stations are installed in any location, equipped with a solar power generation device or storage battery, powered by a sensor that senses ambient brightness and human movement, and cuts off the system power by wireless. The present invention relates to a wireless moving image monitoring confirmation system to display by transmission.
従来のシステムは、商用電源が必要であり、カメラで撮影した動画映像を有線によりモニターへ表示するものであり、電力及び通信線の布設に多額の費用、長い施工期間が掛かる。The conventional system requires a commercial power source and displays a moving image taken by a camera on a monitor by wire, which requires a large amount of money and a long construction period for laying power and communication lines.
特許文献1は自然エネルギー、通信衛星を利用しているため電力線、通信線は不要であるが通信衛星利用料が掛かる。非特許文献1は、電力線および通信線の布設が必要であり、多額の布設費用、長い施工期間が掛かる。Since
この考案は、前述した課題を克服するため請求項1は、ブラインドエリアの動画映像が撮影可能な場所へ設置された監視カメラと前記監視カメラの映像信号を無線送信する送信局および電源を備えた柱と、前記無線信号を受信しモニターへ表示する受信局と電源を備えた柱により構成された無線動画映像監視確認システムである。In order to overcome the above-described problems, the present invention includes a monitoring camera installed in a place where a moving image of a blind area can be shot, a transmitting station for wirelessly transmitting a video signal of the monitoring camera, and a power source. A wireless moving image monitoring and confirmation system comprising a pillar, a receiving station that receives the wireless signal and displays it on a monitor, and a pillar provided with a power source.
請求項2は、前記電源が太陽光発電装置若しくは蓄電池により電力供給することを特徴とする。請求項3は、電源供給回路を接続、切断することを可能とする光センサーを具備することを特徴とする。請求項4は、前記受信モニターへの電源供給回路の接続、切断することを可能とする人感センサーを具備することを特徴とする。According to a second aspect of the present invention, the power source is supplied with power by a solar power generation device or a storage battery. According to a third aspect of the present invention, an optical sensor that enables connection and disconnection of the power supply circuit is provided. A fourth aspect of the present invention includes a human sensor that enables connection and disconnection of a power supply circuit to the reception monitor.
前記手段を備えることにより、
▲1▼監視カメラ動画映像をモニターへ無線伝送し表示させ通信線を不要にする。
▲2▼太陽光発電装置により電力を供給し電力線を不要にする。
▲3▼蓄電池により電力を供給し電力線を不要にする。
▲4▼光センサーにて周囲の明るさにより、蓄電池からシステム電源供給回路の接続、切断をする。
▲5▼人感センサーにて人の動きを検知するとモニターへ電源供給回路の接続、人が立ち去ると一定時間経過後確認用モニターへの電源供給の切断をする。By providing the means,
(1) Surveillance camera Video is transmitted wirelessly to the monitor and displayed, eliminating the need for communication lines.
(2) Electric power is supplied by a solar power generation device, and a power line is not required.
(3) Electric power is supplied from the storage battery and the power line is not required.
(4) Connect and disconnect the system power supply circuit from the storage battery according to the brightness of the surroundings using a light sensor.
(5) When a human motion is detected by the human sensor, the power supply circuit is connected to the monitor, and when the person leaves, the power supply to the confirmation monitor is cut off after a certain period of time.
▲1▼商用電源の節約が可能である。
▲2▼商用電源、通信線が布設出来ない場所でも設置が可能である。
▲3▼各センサー動作により蓄電池の消費電力量低減を図り、日照不足時のシステム稼働日数の長期化が可能である。
▲4▼安定化電源によりシステム供給電圧を一定に保つことで、電圧変動による機器への負担低減が可能である。
▲5▼短期間での施工が可能である。(1) Commercial power can be saved.
(2) Installation is possible even in places where commercial power and communication lines cannot be installed.
(3) The power consumption of the storage battery can be reduced by the operation of each sensor, and the system operation days can be extended when the sunlight is insufficient.
(4) By keeping the system supply voltage constant with a stabilized power supply, it is possible to reduce the burden on the equipment due to voltage fluctuations.
(5) Construction in a short period is possible.
以下、本考案の実施の形態を図面に基づいて説明する。本実施の形態を図1、図2、図3、図4に基づいて説明する。なお、本考案にかかる無線動画映像監視確認システムの具体的な構成は、下記の実施形態に限られるものでなく、考案の要旨を逸脱しない範囲で変更可能である。Hereinafter, embodiments of the present invention will be described with reference to the drawings. The present embodiment will be described with reference to FIGS. 1, 2, 3, and 4. FIG. The specific configuration of the wireless moving image monitoring confirmation system according to the present invention is not limited to the following embodiment, and can be changed without departing from the gist of the invention.
図1は、柱(1)、太陽光発電装置(2)、カメラハウジング(4)、指向性空中線(3)、送信電源部収容箱(5)で構成された、本実施の形態で用いる送信局(100)である。柱(1)は、単独柱でもよいが、既設柱を使用されてもよい。太陽光発電装置(2)は、太陽光で発電する装置であり、太陽光がソーラー電池を照射することで電力が得られる。カメラハウジング(4)は、図2に示すとおり、監視カメラ(7)と無線伝送送信部(8)を装備し、撮影された動画像の無線化を行う。指向性空中線(3)は、カメラハウジング(4)に装備された無線伝送送信部(8)にて無線化された動画映像信号を受信局(200)へ送信する空中線である。送信局(100)設置の機器収容箱(5)は、図2に示すとおり、太陽光発電装置(2)から得られる電力の出力電圧を制御する充電制御部(9)と電力の充放電を行う蓄電池(10)と監視カメラ(7)と無線伝送送信部(8)への出力電圧安定化を図る安定化電源部(11)と監視カメラ(7)と無線伝送送信部(8)への電源供給を制御する光センサー制御部(12)と光センサー(13)を装備している。FIG. 1 shows a transmission used in the present embodiment, which is composed of a pillar (1), a solar power generation device (2), a camera housing (4), a directional antenna (3), and a transmission power source housing box (5). Station (100). The pillar (1) may be a single pillar, but an existing pillar may be used. The solar power generation device (2) is a device that generates power with sunlight, and electric power is obtained by irradiating the solar battery with sunlight. As shown in FIG. 2, the camera housing (4) is equipped with a surveillance camera (7) and a wireless transmission transmitter (8), and wirelessly captures a captured moving image. The directional antenna (3) is an antenna that transmits a moving image signal, which is wirelessly transmitted by the wireless transmission transmitter (8) installed in the camera housing (4), to the receiving station (200). As shown in FIG. 2, the equipment storage box (5) installed at the transmission station (100) is charged and discharged with a charge control unit (9) that controls the output voltage of power obtained from the solar power generation device (2). The stabilized power supply unit (11), the monitoring camera (7), and the wireless transmission transmission unit (8) that stabilize the output voltage to the storage battery (10), the monitoring camera (7), and the wireless transmission transmission unit (8) to perform An optical sensor control unit (12) for controlling power supply and an optical sensor (13) are provided.
図3は、柱(1)、太陽光発電装置(2)、指向性空中線(3)、モニター収容箱(6)、受信電源部収容箱(5)で構成された、本実施の形態で用いる受信局(200)である。指向性空中線(3)は、送信局(100)からの無線化された動画映像信号を受信する空中線である。モニター収容箱(6)は、図4に示すとおり、無線伝送受信部(14)とモニター(15)を装備し、受信した動画映像をモニターへ表示する。受信局設置(200)の機器収容箱(5)は、前述送信局(100)設置の機器収容箱に装備された機器に加え、図4に示すとおり、モニターへの電源を制御する人感センサー(17)と人感センサー制御部(16)を装備している。FIG. 3 is used in the present embodiment, which is composed of a pillar (1), a solar power generation device (2), a directional antenna (3), a monitor housing box (6), and a receiving power source housing box (5). Receiving station (200). The directional antenna (3) is an antenna that receives a wireless moving image signal from the transmitting station (100). As shown in FIG. 4, the monitor storage box (6) is equipped with a wireless transmission receiver (14) and a monitor (15), and displays the received moving image on the monitor. The equipment storage box (5) installed at the receiving station (200) is a human sensor that controls the power supply to the monitor as shown in FIG. 4 in addition to the equipment installed in the equipment storage box installed at the transmitting station (100). (17) and a human sensor control unit (16).
以上のように送信部(100)と受信部(200)により構成された、無線動画映像監視確認システムの動作について説明する。
太陽光発電装置(2)により発電した電力は、機器収容箱(5)に装備された充電制御部(9)により過充電を防止し蓄電池(10)へ充電される。光センサー(13)により、周囲の照度が一定以上の場合は光センサー制御部(12)にて電源回路を接続しカメラハウジング(4)、モニター収容箱(6)装備の機器へ電源供給を行い、周囲の照度が一定以下の場合は光センサー制御部(12)にて電源回路を切断し蓄電池(10)の消費電力を少なくする。また、モニター(15)の消費電力が多いため、受信局設置(200)の機器収容箱(5)に装備した人感センサー(16)により、人の動きを感知すると人感センサー制御部(15)にて電源回路を接続し電源供給を行い、立ち去ると一定時間経過後電源回路を切断し蓄電池(10)の消費電力を少なくする。The operation of the wireless moving image monitoring / confirming system configured by the transmission unit (100) and the reception unit (200) as described above will be described.
The electric power generated by the solar power generation device (2) is charged to the storage battery (10) by preventing overcharging by the charge control unit (9) equipped in the device storage box (5). When the ambient illuminance is above a certain level, the optical sensor (13) connects the power circuit to the optical sensor controller (12) to supply power to the equipment equipped with the camera housing (4) and monitor housing box (6). When the ambient illuminance is below a certain level, the optical sensor control unit (12) cuts the power supply circuit to reduce the power consumption of the storage battery (10). Further, since the power consumption of the monitor (15) is large, when a human motion is detected by the human sensor (16) installed in the equipment storage box (5) of the receiving station installation (200), the human sensor control unit (15 ) To connect the power supply circuit and supply power, and when leaving, the power supply circuit is cut off after a certain period of time to reduce the power consumption of the storage battery (10).
送信部(100)のカメラハウジング(4)へ装備された監視カメラ(7)は、周囲状況を撮影し動画映像信号を無線伝送送信部(8)へ出力し、無線伝送送信部(8)にて動画映像信号を無線化し、指向性空中線(3)から受信部(200)へ動画映像信号を送信する。The surveillance camera (7) mounted on the camera housing (4) of the transmission unit (100) shoots the surrounding situation, outputs a video image signal to the wireless transmission transmission unit (8), and sends it to the wireless transmission transmission unit (8). Then, the moving image video signal is made wireless, and the moving image signal is transmitted from the directional antenna (3) to the receiving unit (200).
受信部(200)の指向性空中線(3)、モニター収容箱(6)へ装備された無線伝送受信部(14)にて、送信部(100)より送信された動画映像信号を受信し、モニター(15)へ出力し動画映像を表示する。The moving image signal transmitted from the transmitter (100) is received by the wireless transmission receiver (14) installed in the directional antenna (3) and the monitor housing box (6) of the receiver (200), and is monitored. Output to (15) and display a moving image.
以上、本実施の形態の無線動画映像監視確認システムによれば、太陽光発電装置(2)の電力、無線伝送送信部(8)、指向性空中線(3)、無線伝送受信部(14)を用いた動画映像の無線化により電力線、通信線の布設が不要で動画映像の監視確認が行えるシステムを提供することができる。As described above, according to the wireless video image monitoring confirmation system of the present embodiment, the power of the solar power generation device (2), the wireless transmission transmitter (8), the directional antenna (3), and the wireless transmission receiver (14) are connected. By using the moving image video wirelessly, it is possible to provide a system that can monitor and check the moving image without the need to install a power line or a communication line.
1 柱
2 太陽光発電装置
3 指向性空中線
4 カメラハウジング
5 機器収容箱
6 モニター収容箱
7 監視カメラ
8 無線伝送送信部
9 充電制御部
10 蓄電池
11 安定化電源
12 光センサー制御部
13 光センサー
14 無線伝送受信部
15 モニター
16 人感センサー制御部
17 人感センサー
100 送信局
200 受信局DESCRIPTION OF
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