Paralleling module for a generator system
US-2015207326-A1 · Jul 23, 2015 · US
US11799294B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11799294-B2 |
| Application number | US-202016939544-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 27, 2020 |
| Priority date | Feb 19, 2018 |
| Publication date | Oct 24, 2023 |
| Grant date | Oct 24, 2023 |
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A power supply system comprises a portable first power supply device and second power supply device. The portable first power supply device has a handle to be gripped by a hand of a user. A supply unit of the portable first power supply comprises an inverter circuit which converts at least a portion of excess power into an alternating current, and supplies to the second power supply device via a second connection unit and a power line, power of the alternating current outputted from the inverter circuit.
Opening claim text (preview).
What is claimed is: 1. A power supply system comprising a portable first power supply device and second power supply device, that each has a power generation unit and supplies power to a load, wherein the first power supply device comprises a power storage unit configured to store power generated by the power generation unit; a first connection unit configured to connect with the load; a second connection unit configured to connect with a power line connected to the second power supply device; a supply unit configured to, via the first connection unit, supply, to a load, power stored in the power storage unit; a monitoring unit configured to monitor a power consumption of the load; and a decision unit configured to, based on the power consumption of the load monitored by monitoring unit and on a power storage amount of the power storage unit, decide an excess power of the power storage unit, and wherein the portable first power supply device is a power supply device that can be held by a user and that comprises a handle to be gripped by a hand of the user, the power supply system is independent of a commercial AC power supply network, and the supply unit comprises an inverter circuit configured to convert at least a portion of the excess power into an alternating current, and is configured to supply, to the second power supply device via the second connection unit and the power line, power of the alternating current outputted from the inverter circuit. 2. The power supply system according to claim 1 , wherein the second power supply device comprises a reception unit connected to the power line and configured to receive power via the power line; and a control unit configured to, in a time period in which power is being received from the first power supply device via the reception unit, control the power generation unit of the second power supply device to stop power generation. 3. The power supply system according to claim 1 , further comprising a third power supply device comprising a power storage unit and configured to supply power from the power storage unit to a load, wherein the third power supply device is configured to, via the power line, receive power from the first power supply device, and store the received power in a load connected to the third power supply device or the power storage unit of the third power supply device. 4. The power supply system according to claim 1 , further comprising a server configured to communicate, via a network, with the first power supply device and the second power supply device, wherein the server comprises a communication unit connected to the network; an acceptance unit configured to accept a power reception request from the second power supply device via the communication unit; an acquisition unit configured to acquire, via the communication unit, excess power information that indicates that the first power supply device has excess power, and an instruction unit configured to, when a reception request is accepted by the acceptance unit, make an instruction, to the first power supply device which has the excess power, via the communication unit so that the first power supply device supplies, to the power line, the excess power. 5. The power supply system according to claim 4 , the server further comprising a money transfer unit configured to make a money transfer for a compensation to an account of a user of the first power supply device from an account of a user of the second power supply device. 6. The power supply system according to claim 4 , the server further comprising a collection unit configured to, via the communication unit, collect, from the first power supply device, load identification information indicating a load that is connected to the first power supply device, and collect, from the second power supply device, load identification information indicating a load connected to the second power supply device. 7. A portable power supply device in a power supply system comprising the power supply device and another power supply device, which each has a power generation unit and supplies power to a load, the portable power supply device comprising: a power storage unit configured to store power generated by the power generation unit; a first connection unit configured to connect with the load; a second connection unit configured to connect with a power line connected to the other power supply device; a supply unit configured to, via the first connection unit, supply, to a load, power stored in the power storage unit; a monitoring unit configured to monitor a power consumption of the load; a decision unit configured to, based on the power consumption of the load monitored by monitoring unit and on a power storage amount of the power storage unit, decide an excess power of the power storage unit; and a handle to be gripped by a hand of a user, wherein the power supply system is independent of a commercial AC power supply network, and the supply unit comprises an inverter circuit configured to convert at least a portion of the excess power into an alternating current, and is configured to supply, to the other power supply device via the second connection unit and the power line, power of the alternating current outputted from the inverter circuit.
using wireless data transmission · CPC title
the power network being controlled at grid-level, e.g. using aggregators · CPC title
Monitoring network conditions, e.g. electrical magnitudes or operational status · CPC title
supplying households or buildings · CPC title
Battery or charger load switching, e.g. concurrent charging and load supply (H02J7/50 takes precedence) · CPC title
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