High-reliability power supply phase line communication sending and receiving methods and communication device
A technology of sending method and receiving method, which is applied in the direction of distribution line transmission system, electrical components, wired transmission system, etc., can solve the problems of high cost of encoding and decoding circuits, high false positive rate, and influence on communication accuracy, and achieve communication data The effect of small quantity, low communication frequency and low cost
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Embodiment 1
[0025] In the highly reliable power supply phase line transmission method, the power supply information is loaded with a conduction angle signal, and different conduction angle signals correspond to different coded information. Correspondingly: the receiving method of the high-reliability power supply phase line is to transmit the transmitted signal to N signal receiving ends according to the corresponding relationship between different conduction angle signals and different coded signals, where N represents the corresponding signal of different coded signals. The address number of the signal receiving end, N is a natural number greater than or equal to 2, the first to Nth signal receiving ends respectively receive the power supply information loaded with the conduction angle signal, decode the power supply information through the sampling decoding circuit, and decode the corresponding Encode information, and then control the corresponding operation of the controlled object. P...
Embodiment 2
[0027] A high-reliability power supply phase-line communication device includes a signal sending end and first to Nth signal receiving ends. The signal sending end includes a first power supply circuit, an encoding control circuit 2 and a high-power thyristor Q1 or a thyristor. The first An output end of a power supply circuit is connected to the encoding control circuit 2, and the output end of the first power supply circuit is also connected to the AC fire wire. The AC fire wire is connected to the input end of the high-power thyristor Q1 or the thyristor, and the output end of the encoding control circuit 2 is connected to the control end of the high-power thyristor Q1 or the thyristor; the high-power thyristor Q1 or the thyristor The output ends are respectively connected to the input ends of the first to Nth signal receiving ends, and the first to Nth signal receiving ends respectively include a second power supply circuit, a decoding rectification circuit 3, a step-down c...
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