Communication system for air conditioner, and air conditioner
11425198 ยท 2022-08-23
Assignee
Inventors
- Yoshimasa Nakayama (Osaka, JP)
- Ryousuke Yamamoto (Osaka, JP)
- Shinichi Ishizeki (Osaka, JP)
- Kunitaka Morimoto (Osaka, JP)
- Munehiko Fujimoto (Osaka, JP)
- Yuuki Ogiso (Osaka, JP)
- Atsushi Tokunaga (Osaka, JP)
Cpc classification
H04B1/38
ELECTRICITY
G08C2201/12
PHYSICS
H04L67/12
ELECTRICITY
G08C2201/40
PHYSICS
F24F1/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F24F11/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
H04L67/12
ELECTRICITY
H04B1/38
ELECTRICITY
Abstract
Provided is a communication system for an air conditioner including a housing and a control board accommodated in the housing. The communication system includes: a communication conversion unit accommodated in the housing and configured to acquire a required electric signal from the control board and to convert the electric signal into a digital signal for wire transmission; a cable having a first end connected to the communication conversion unit, the cable being drawn out of the housing to outside; and an antenna unit connected to a second end of the cable located outside the housing, the antenna unit being configured to establish wireless communication with a base station.
Claims
1. A communication system for an air conditioner, the communication system comprising: a control board accommodated in a housing of an outdoor unit of the air conditioner; a first communication conversion unit accommodated in the housing and configured to acquire a required electric signal from the control board and to convert the electric signal into a digital signal for wire transmission; a cable having a first end connected to the first communication conversion unit, the cable being drawn out of the housing to outside with a second end of the cable extending to an outdoor place suitable for communication with a base station; and an antenna unit connected to the second end of the cable located outside the housing, the antenna unit including a second communication conversion unit which converts the digital signal to a signal for wireless communication and being configured to establish wireless communication with the base station, wherein the antenna unit includes a magnet for magnetic adsorption, and the antenna unit is installed, with the magnet, at the outdoor place.
2. The communication system according to claim 1, wherein communication between the antenna unit and the base station is established by a low power wide area (LPWA) communication method, and communication using the cable is established by a digital communication method different from the LPWA communication method.
3. The communication system according to claim 2, wherein the second communication conversion unit configured to convert the digital signal into a communication signal for the LPWA communication method.
4. The communication system according to claim 3, wherein the digital signal is a signal superimposed on a power voltage for the antenna unit.
5. The communication system according to claim 2, wherein the communication conversion unit is disposed in proximity to the control board in the housing.
6. The communication system according to claim 2, wherein the digital signal is a signal superimposed on a power voltage for the antenna unit.
7. The communication system according to claim 1, wherein the first communication conversion unit is disposed in proximity to the control board in the housing.
8. The communication system according to claim 7, wherein the digital signal is a signal superimposed on a power voltage for the antenna unit.
9. The communication system according to claim 1, wherein the digital signal is a signal superimposed on a power voltage for the antenna unit.
10. The communication system according to claim 1, wherein the cable is a two-wire vinyl cabtyre cable.
11. An air conditioner comprising: a housing of an outdoor unit of an air conditioner; a control board accommodated in the housing; a first communication conversion unit accommodated in the housing and configured to acquire a required electric signal from the control board and to convert the electric signal into a digital signal for wire transmission; a cable having a first end connected to the first communication conversion unit, the cable being drawn out of the housing to outside with a second end of the cable extending to an outdoor place suitable for communication with a base station; and an antenna unit connected to the second end of the cable located outside the housing, the antenna unit including a second communication conversion unit which converts the digital signal to a signal for wireless communication and being configured to establish wireless communication with the base station, wherein the antenna unit includes a magnet for magnetic adsorption, and the antenna unit is installed, with the magnet, at the outdoor place.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
DESCRIPTION OF EMBODIMENTS
(4)
(5)
(6) As illustrated in
(7) A two-wire vinyl cabtyre cable is available with ease and requires, at its end, no dedicated connector such as an F-type plug of a coaxial cable. The two-wire vinyl cabtyre cable is therefore inexpensive as a whole. The two-wire vinyl cabtyre cable is also excellent in weather resistance, and is therefore suitable for outdoor use. The cable 2 is also connected at its second end (an upper right end in
(8) The cable 2 is not an accessory of the air conditioner 1 or the antenna unit 3, but is a product to be procured at the site of installation. Therefore, the length of the cable 2 is not fixed. The antenna unit 3 is installed near the air conditioner 1 at a place suitable for communication with a base station 4. In addition, the cable 2 of appropriate length is prepared for connecting the communication conversion unit 13 to the antenna unit 3. The cable 2 may have a length up to, for example, about 30 m. As long as communication is favorably established with good sensitivity even at the place where the air conditioner 1 is installed, the antenna unit 3 may be mounted to an outer surface of the housing 11 of the air conditioner 1.
(9) The antenna unit 3 is, for example, a communication device for SIGFOX, and is capable of wireless communication with the base station 4 in the sub-GHz band (920 MHz in Japan, 868 MHz in Europe, 915 MHz in North America). The communication speed is, for example, about 100 bps. The base station 4 is a base station for SIGFOX. A maximum value of a distance from the antenna unit 3 to the base station 4, that is, a maximum propagation distance is, for example, about 50 km.
(10)
(11) The communication conversion unit 13 acquires various kinds of information from the control board 12 in the form of electric signals. The communication conversion unit 13 converts the electric signals into encoded digital signals by, for example, alternate mark inversion (AMI). AMI is a method of transmitting a digital signal by half-duplex communication. According to AMI, a signal is transmitted by applying a signal voltage excluding a direct current component and taking zero, a positive value or a negative value across the two wires of the cable 2 serving as a transmission line. A control power voltage (Vcc: e.g., DC 16 V) for the air conditioner 1 is applied as a reference voltage across the two wires of the cable 2. The signal transmission is made in such a manner that a signal voltage corresponding to a code of a signal for AMI is superimposed on the control power voltage.
(12) The communication using the cable 2 is established by AMI which is an encoded digital communication method less susceptible to an influence of surge noise. This configuration therefore suppresses an influence of surge noise. The cable 2 is an antenna line configured to carry a digital signal for wire transmission rather than a signal for wireless transmission, and is therefore less susceptible to an influence of surge noise.
(13) The cable 2 is also capable of feeding a power voltage to the antenna unit 3. This configuration therefore eliminates a necessity of a power supply dedicated to the antenna unit 3.
(14) The communication conversion unit 33 of the antenna unit 3 is configured to convert a signal for AMI into a signal for SIGFOX. The signal for SIGFOX thus obtained by conversion is radiated at a radio frequency of, for example, 920 MHz from a communication unit 34 and an antenna 35 of the communication unit 34. In the antenna unit 3, the communication conversion unit 33 generates a communication signal for SIGFOX, in the immediate vicinity of the antenna 35. This configuration therefore suppresses an influence of surge noise more effectively.
(15) The base station 4 receives the radio waves from the antenna unit 3. The LPWA communication method such as SIGFOX enables the antenna unit 3 to communicate with the base station 4 with low power consumption and at low cost.
(16) Upon reception of the radio waves, the base station 4 sends the information on the air conditioner 1 to the server 6 over the Internet 5. In practice, the base station 4 receives radio waves from a plurality of (a number of) air conditioners 1, and sends information on each air conditioner to the server 6. This system achieves remote control of multiple air conditioners, using the server 6.
(17) Since only the upstream communication is currently authorized as to SIGFOX,
(18)
(19) The cover 3a is placed on the main body, and is fastened to the main body with screws and waterproof O-rings (not illustrated) at the four corners. The antenna unit 3 is thus resistant to water and is suitable for outdoor use. The antenna unit 3 may be fixed with, for example, screws. Alternatively, the antenna unit 3 may have, on its back side, magnets 36. With this configuration, the antenna unit 3 is easily attached to the housing 11, which is made of a metal such as iron, of the air conditioner 1 and other portions made of iron, without thread cutting.
SUMMARY OF THE DISCLOSURE
(20) For example, the disclosure may be summarized and represented as follows. However, the following representations are merely illustrative and not restrictive.
(21) The present disclosure provides a communication system for an air conditioner 1 including a housing 11 and a control board 12 accommodated in the housing 11. The communication system includes a communication conversion unit 13 accommodated in the housing 11 and configured to acquire a required electric signal from the control board 12 and to convert the electric signal into a digital signal for wire transmission. The communication system also includes a cable 2 having a first end connected to the communication conversion unit 13, the cable 2 being drawn out of the housing 11 to outside. The communication system also includes an antenna unit 3 connected to a second end of the cable 2 located outside the housing 11, the antenna unit 3 being configured to establish wireless communication with a base station 4.
(22) The present disclosure also provides an air conditioner 1 including: a housing 11; a control board 12 accommodated in the housing 11; a communication conversion unit 13 accommodated in the housing 11 and configured to acquire a required electric signal from the control board 12 and to convert the electric signal into a digital signal for wire transmission; a cable 2 having a first end connected to the communication conversion unit 13, the cable 2 being drawn out of the housing 11 to outside; and an antenna unit 3 connected to a second end of the cable 2 located outside the housing 11, the antenna unit 3 being configured to establish wireless communication with a base station 4.
(23) In the communication system for the air conditioner and the air conditioner, the position of the antenna unit 3 is not limited to the interior of the housing 11 of the air conditioner 1. With this configuration, the antenna unit 3 is freely installed at a desired position suitable for communication, using the cable 2. This configuration thus causes no communication trouble even when the housing is made of a metal. The cable 2 is an antenna line configured to carry a digital signal for wire transmission rather than a signal for wireless transmission, and is therefore less susceptible to an influence of surge noise. In the communication system, the antenna unit 3 is installed at a higher degree of freedom. The communication system is therefore easy to install, and establishes communication without any trouble. This configuration accordingly allows the antenna unit 3 to be retrofitted to an existing air conditioner with ease.
(24) For example, communication between the antenna unit 3 and the base station 4 is established by a LPWA communication method (e.g., SIGFOX), and communication using the cable 2 is established by a digital communication method (e.g., AMI) different from the LPWA communication method.
(25) Adopting the LPWA communication method such as SIGFOX enables long-range communication between the antenna unit and the base station with reduced power consumption and at reduced cost. The communication using the cable is established by AMI which is an encoded digital communication method less susceptible to an influence of surge noise. This configuration therefore suppresses an influence of surge noise.
(26) Preferably, the communication conversion unit 13 is disposed in proximity to the control board 12 in the housing 11.
(27) With this configuration, reducing the distance between the communication conversion unit 13 and the control board 12 enables suppression of surge noise. In addition, a control power voltage is gained from the control board 12 using a shorter connecting wire.
(28) For example, the antenna unit 3 includes a communication conversion unit 33 configured to convert the digital signal into a communication signal for the LPWA communication method.
(29) With this configuration, the communication conversion unit 33 generates the communication signal for the LPWA communication method, in the immediate vicinity of an antenna 35. This configuration therefore suppresses an influence of surge noise more effectively.
(30) For example, the digital signal is a signal superimposed on a power voltage for the antenna unit 3.
(31) This configuration eliminates a necessity of a power supply dedicated to the antenna unit 3.
(32) For example, the cable 2 is a two-wire vinyl cabtyre cable.
(33) A two-wire vinyl cabtyre cable is available with ease, and requires no dedicated connector at its end. In addition, the two-wire vinyl cabtyre cable is inexpensive as a whole, and is excellent in weather resistance.
(34) For example, the antenna unit 3 includes a magnet 36 for magnetic adsorption.
(35) With this configuration, the antenna unit 3 is fixable to any position of an iron plate with ease at a place where the antenna unit 3 is capable of wireless communication with the base station 4. For example, the antenna unit 3 may be fixed to an outer surface of the housing 11 of the air conditioner 1 (i.e., the outdoor unit). This configuration therefore requires no construction such as boring, and also requires no waterproof treatment associated with boring. This configuration thus enables rapid installation of the communication system.
(36) <<Others>>
(37) The disclosure describes the LPWA communication method. However, the communication method is not limited to the LPWA communication method. Other communication methods may be applicable now or in the future. The disclosure also describes SIGFOX as a specific example of the LPWA communication method. However, a specific example of the LPWA communication method is not limited to SIGFOX. Specific examples of the LPWA communication method may include, but not limited to, LORA (registered trademark) and NB-IoT.
(38) In addition, the communication using the cable 2 is not limited to AMI. The disclosure does not intend to exclude other digital communication methods.
(39) While various embodiments have been described herein above, it is to be appreciated that various changes in form and detail may be made without departing from the spirit and scope presently or hereafter claimed.
REFERENCE SIGNS LIST
(40) 1: AIR CONDITIONER (OUTDOOR UNIT) 2: CABLE 3: ANTENNA UNIT 3a: COVER 4: BASE STATION 5: INTERNET 6: SERVER 11: HOUSING 12: CONTROL BOARD 13: COMMUNICATION CONVERSION UNIT 14: ELECTRIC CIRCUIT 31: SUBSTRATE 32: TERMINAL BLOCK 33: COMMUNICATION CONVERSION UNIT 34: COMMUNICATION UNIT 35: ANTENNA 36: MAGNET