venus-os:gx_solaredge
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venus-os:gx_solaredge [2020-02-27 08:06] – [Integrating with SolarEdge: How to guide] fjlacock | venus-os:gx_solaredge [2020-03-27 12:16] – [3. How to configure Frequency Shifting] fjlacock | ||
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In 2019 SolarEdge has introduced a new feature that allows AC-coupling with alternative power sources (or non-grid power sources) such as the Victron Energy Inverter/ | In 2019 SolarEdge has introduced a new feature that allows AC-coupling with alternative power sources (or non-grid power sources) such as the Victron Energy Inverter/ | ||
- | When a solar inverter is operating concurrently with a non-grid source, it may be subjected to voltage and frequency fluctuations that exceed | + | When a solar inverter is operating concurrently with a non-grid source, it may be subjected to voltage and frequency fluctuations that exceed |
- | With this feature you can now build custom size AC Coupled Hybrid systems with the capability to enable zero feed-in to the grid when in On-Grid mode and frequency shifting power control in Off-Grid situations | + | With this feature you can now build custom size AC Coupled Hybrid |
The AC coupled system sizing guideline, Factor 1.0 rule, from Victron Energy for AC coupled system must be adhered to. | The AC coupled system sizing guideline, Factor 1.0 rule, from Victron Energy for AC coupled system must be adhered to. | ||
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Note: APS mode is mandatory for systems requiring both zero feed-in in on-grid mode and frequency shifting in off-grid mode. | Note: APS mode is mandatory for systems requiring both zero feed-in in on-grid mode and frequency shifting in off-grid mode. | ||
- | Configuration example 1: Use of external relay and dry contact, see figure 1 | + | Configuration example 1: Use of external relay and dry contact, Single-phase configuration, see figure 1 |
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;#; | ;#; | ||
- | ;#; | ||
+ | Three Phase configuration, | ||
+ | ;#; | ||
+ | {{: | ||
+ | ;#; | ||
+ | ;#; | ||
+ | Figure 2 | ||
+ | ;#; | ||
+ | |||
+ | |||
+ | Configuration example 2: Use of Internal programmable relay K1, | ||
+ | |||
+ | Single-phase configuration, | ||
- | #;; | ||
- | Configuration example 2: Use of Internal programmable relay K1, See Figure 2 | ||
- | #;; | ||
- | ;#; | ||
;#; | ;#; | ||
{{: | {{: | ||
;#; | ;#; | ||
+ | |||
+ | ;#; | ||
+ | Figure 3 | ||
;#; | ;#; | ||
+ | Three-phase configuration, | ||
;#; | ;#; | ||
+ | {{: | ||
;#; | ;#; | ||
- | Figure | + | |
+ | |||
+ | ;#; | ||
+ | Figure | ||
;#; | ;#; | ||
+ | Programmable relay K1 Set up, single-phase configuration, | ||
- | Programmable relay K1 Set up | ||
;#; | ;#; | ||
+ | {{: | ||
;#; | ;#; | ||
+ | |||
;#; | ;#; | ||
- | {{: | + | Figure 5 |
;#; | ;#; | ||
+ | |||
+ | Programmable relay K1 Set up, three-phase configuration, | ||
+ | |||
+ | ;#; | ||
+ | {{: | ||
;#; | ;#; | ||
+ | |||
;#; | ;#; | ||
+ | Figure 6 | ||
+ | ;#; | ||
+ | |||
+ | |||
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- | + | __2. Disable Wakeup gradient__ | |
- | __2. Configure Wakeup Conf.__ | + | |
- | + | ||
- | * Power Control -> Wakeup Profile -> Edit | + | |
- | + | ||
- | * Edit Maximum Wake up Frequency = 51.2Hz | + | |
- | + | ||
- | ;#; | + | |
- | {{: | + | |
- | ;#; | + | |
- | + | ||
- | + | ||
- | Inverters with LCD: | + | |
- | * Power Control -> Wakeup Profile -> Edit | + | |
- | + | ||
- | ;#; | + | |
- | {{: | + | |
- | ;#; | + | |
- | + | ||
- | + | ||
- | + | ||
- | __3. Disable Wakeup gradient__ | + | |
* Power Control -> Active Power control -> Wakeup Gradient -> Disable | * Power Control -> Active Power control -> Wakeup Gradient -> Disable | ||
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- | __4. Set P(F)__ | + | __3. Set P(F)__ |
* Power Control -> Active Power control -> P(f) | * Power Control -> Active Power control -> P(f) |
venus-os/gx_solaredge.txt · Last modified: 2021-09-21 16:22 by fjlacock