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Visibility instruments (visibility sensors) provide measurements related to meteorological visibility. The sensors are designed based on the principle of aerosol forward scattering, and are a new generation of meteorological visibility monitoring equipment developed following the transmissive visibility instruments. The sensor can be widely used in weather stations, remote automatic weather stations and transport sectors such as airports, motorways, airways and large ships.
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Overview of Present weather and visibility sensor
Present weather and visibility sensor provide measurements related to meteorological visibility. The sensors are designed based on the principle of aerosol forward scattering, and are a new generation of meteorological visibility monitoring equipment developed following the transmissive visibility instruments. The sensor can be widely used in weather stations, remote automatic weather stations and transport sectors such as airports, motorways, airways and large ships.
The Present weather and visibility sensor (visibility sensor) consists of light transmitter, light receiver and microprocessor controller and other major components. The transmitter emits infrared pulse light, the receiver simultaneously detects the intensity of the pulse light scattered by the forward scattering of aerosol particles in the atmosphere, and all the measurement information is collected by the microprocessor controller and converted into Meteorological Optical Range (MOR) by special mathematical modelling algorithm.
Front View
The Present weather and visibility sensor requires a DC12V power supply and a three-wire RS485 communication cable. The instrument sends the meteorological visibility values and status information to the host computer in the monitoring centre via a communication interface.
The visibility instrument provides several sets of built-in commands for configuring system parameters and controlling many functions of the system. During assembly and maintenance, a display terminal is required to check the system parameters and may be used to change the parameter values.
Principle of operation of the Present weather and visibility sensor
The Present weather and visibility sensor has all the performance characteristics of a forward scattering instrument, which is achieved by measuring the forward scattered light emitted by suspended particles in a sampling zone of less than 90 degrees; the sampling zone of the visibility meter is determined by the intersection of the transmitter's transmitting optical path and the receiver's receiving optical path. Obviously, it differs from the total extinction coefficient measured by a transmissometer in that a forward scatterometer measures only the scattering coefficient at a certain angle, i.e. a narrower scattering angle near the central forward scattering angle.
It is generally accepted that the calculation of daytime and nighttime visibility requires the measurement of the total extinction coefficient, not the angular scattering coefficient, and it is therefore necessary to show that the angular scattering coefficient is, under certain conditions, in definite proportion to the total atmospheric extinction coefficient, which consists of the sum of the scattered and absorbed rays over the whole range.
At visibility measurements of less than 100 km, suspended particles such as fog, smoke, haze, dust or sand, and various types of precipitation determine the atmospheric extinction of visible and near-visible light, and it is only at distances of more than 100 km that the scattering of molecular matter comes into play; the absorption of suspended particles and precipitation is negligible compared to their scattering. For these reasons, the total scattering coefficient can be equal to the total extinction coefficient at visibility less than 100 km.
Supply voltage: | DC12V |
Signal output: | RS485 |
Communication protocol: | MODBUS protocol |
Baud rate: | 9600 |
Technical principle: | light scattering |
Scattering angle coverage: | 39o-51o front scattering |
Peak wavelength: | 875nm |
Bandwidth: | 100nm |
Measuring range: | 5-10KM |
Measurement accuracy: | ≤2km, 2%; 2km-10km, ±10%; |
Working temperature: | -40-80℃ |
Working humidity: | 0-95%RH |
Standard cable length: | 10 metres |
Size: | 610mm x 230mm x 300mm |
Material: |
anodized hard aluminium, with paint protection on the outer surface |
Protection grade | IP65 |
Visibility sensors Instrument features:
1. Structural features: visibility meter adopts integrated structural design, compact and small, sensor size and weight is very small, packaging, storage and transportation, easy to install, can also be used as a portable instrument; unique dual-scattering receiver structure design, the sun and other stray light interference is reduced to a minimum.
2. The emitter and receiver window lenses have undergone special anti-dust and anti-mould coating treatment, which greatly reduces the thickness and speed of dust accumulation in the natural environment, and also reduces the chances of contamination by salt spray and oil.
3. The instrument structure material is high quality rigid aluminium and 316 stainless steel, the surface is anodized and passivated, and multi-channel paint protection; all screws are selected corrosion-resistant stainless steel screws; the inside of the casing is sealed to achieve IP65 protection level, with coastal climate adaptability.
4. The power consumption of the instrument is extremely low, less than 1W, so it can be adapted to the power supply working mode of battery or solar panel power supply. DC 12VDC power supply, convenient for system integration.
5. The instrument collector is designed to emphasise long-term operational stability, with a built-in watchdog circuit, which has been tested over a long period of time, making the instrument work stably and reliably.
6. Real-time data display: the sensor can output a series of digital information every 60 seconds, and the information can be output by passive recruiting.
7. The DC power supply circuit of the instrument has the double design of anti-reverse connection and self-recovery insurance, even if the user misoperation, it will not cause the instrument circuit board to burn, no need to replace the fuse, and it can be restored to normal after re-correct operation.
8. The communication interface chip of the instrument has 15KV anti-static protection, which can maximally protect the circuit from the harm of human body static electricity during the user wiring operation.
9. Instrument has lightning protection measures, its communication interface and power interface have lightning protection design, which can minimise lightning damage.
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