AT & T MOBILITY SERVICES, LLC, Plaintiff-Appellee, v. VILLAGE OF CORRALES, Defendant-Appellant.
No. 15-2069.
United States Court of Appeals, Tenth Circuit.
March 8, 2016.
887
KELLY, PORFILIO, and BALDOCK, Circuit Judges.
See also, 80 F.Supp.3d 1267.
John L. Appel, Gerald Coppler, Coppler Law Firm P.C., Santa Fe, NM, for Defendant-Appellant.
ORDER AND JUDGMENT*
BOBBY R. BALDOCK, Circuit Judge.
The Telecommunications Act of 1996 (TCA) preserves the authority of state and local governments “over decisions regarding the placement, construction, and modification of personal wireless service facilities.”
BACKGROUND
The Village of Corrales is a town of about 8,000 residents located just north of Albuquerque, New Mexico. Most of the Village is zoned for agricultural and rural residential uses, but it has smaller areas zoned for commercial or municipal use. Personal wireless service facilities are not permitted anywhere in the Village, but they may be allowed by a special use permit in a commercial or municipal zone. With limited exceptions not applicable here, the Village also has a height restriction of 26 feet for structures in all zones. It does, however, permit variances when necessary provided that a structure taller than 26 feet is not detrimental to the rural and agricultural values the Village seeks to preserve. Indeed, when AT & T applied for the special use permit at issue in this case, the Village already had two other 65-foot cell phone towers, one of which was permitted for AT & T.
AT & T applied for a special use permit, a height variance, and a site development plan to install a 65-foot monopole cell phone tower and a small equipment shelter in a 30’ x 30’ compound on a commercial parcel in the Village. The Village’s Planning and Zoning Commission denied the special use permit and, accordingly, did not act on the variance request or the proposed site development plan. AT & T appealed to the Village Council, which also denied the special use permit. The Council concluded that AT & T failed to show that the proposed facility would fill a significant gap in coverage or that the desired improvements could not be achieved by placing the facility on higher terrain or using a shorter tower on the selected site. The Council also determined that the proposed facility would be visually intrusive, negatively affect the value of nearby residential properties, and impair the Village’s rural residential, agricultural, and open-space qualities.
AT & T then filed the action at hand. It claimed that the Village’s denial of the special use permit effectively prohibited the provision of personal wireless services and that substantial evidence did not support the Village Council’s decision, both in violation of the TCA. See
Because admissibility was the Village’s sole objection to Burley’s report, the district court treated certain facts in the report as uncontroverted and proceeded to grant summary judgment in favor of AT & T on its effective-prohibition claim. The court explained that although the Village had not completely prohibited the provision of wireless services in Corrales, AT & T could prevail on its effective-prohibition claim by showing that (1) the denial of a permit prevented AT & T from closing a “significant gap” in existing services and (2) its proposed facility was the least intrusive means of doing so. See Omnipoint Holdings, Inc. v. City of Cranston, 586 F.3d 38, 48 (1st Cir. 2009) (setting forth test); Nextel W. Corp. v. Town of Edgewood, 479 F.Supp.2d 1219, 1237-38 (D.N.M. 2006) (same). And the court concluded that AT & T had met both prongs of the test.2
As to whether there was a significant gap, the district court recognized there are no bright-line rules but that each case is to be considered on its own, taking into account a number of factors courts have identified, including the gap’s physical size and location, the number of affected customers, dropped-call or failure rates, and “whether the purported gap affects a plaintiff’s ability to provide outdoor, in-vehicle, and in-building coverage.” See Orange Cty.-Poughkeepsie Ltd. P’ship v. Town of E. Fishkill, 84 F.Supp.3d 274, 297 (S.D.N.Y. 2015) (collecting cases). In light of those factors and the TCA’s emphasis on “promot[ing] competition and higher quality in telecommunications services” and “encourag[ing] the rapid deployment of new telecommunications technologies,” T-Mobile Central, LLC v. Unified Gov’t of Wyandotte Cty., 546 F.3d 1299, 1306 (10th Cir. 2008), the court rejected the Village’s argument that improving signal strength in the target area from in-vehicle to in-building (one of AT & T’s stated goals) was insufficient to constitute a significant gap. Instead, the court reasoned that such “gradations in service” were an appropriate consideration. Aplt. App., Vol. III at 445.
In applying the foregoing factors, and relying largely on undisputed facts from Burley’s report, the court concluded that the coverage gap around the selected site was significant because (1) “the gap covers a populated and well-traveled area approximately two miles across”; (2) “the absence of a dominant server in the area means that signals from several other towers interfere with one another and cause issues with establishing or making telephone calls”; and (3) “much of the affected area includes a residential zone without reliable in-home coverage.” Id. at 446. The court also found further support for its decision in the TCA’s “flexible nature ... and the growing importance of mobile technologies in American life.” Id.
The district court next explained that AT & T had established its proposal was the least intrusive manner to fill the gap because AT & T showed it had made “a good faith effort ... to identify and evaluate less intrusive alternatives,” such as “less sensitive sites, alternative system designs, alternative tower designs, [and] placement of antennae on existing structures.” APT Pittsburgh Ltd. P’ship v. Penn Twp. Butler Cty., 196 F.3d 469, 480 (3d Cir. 1999).
As Burley explained in his report, given the topography of the area and the rather dense tree canopy that a signal would have to penetrate, an 80-foot tower would be optimal, but a 65-foot monopole would reduce the visual impact and be sufficient to meet technical requirements and alleviate a significant portion of the gap. “At lower radiation centers, the problem gets worse; not only would it provide less coverage, but a lower site would remain under-utilized as surrounding sites reach capacity, requiring additional towers in the area to relieve the burden.” Aplt. App., Vol. II at 228-29, ¶ 30. Further, the antenna array would be housed in a shroud, and the tower would not be lighted. AT & T also presented some evidence that the tower would not have an adverse effect on the property values of adjacent homes, and it considered three alternative sites but concluded that they would be more intrusive and less effective in remedying the coverage gap.
Because summary judgment on AT & T’s effective-prohibition claim was dispositive, the court did not reach AT & T’s other claims.
DISCUSSION
We review de novo the disposition of cross-motions for summary judgment, applying the same standard as the district court, and viewing the evidence and construing all reasonable inferences from it in light of the losing party. Pirkheim v. First Unum Life Ins., 229 F.3d 1008, 1010 (10th Cir. 2000). Summary judgment is appropriate “if the movant shows that there is no genuine dispute as to any material fact and the movant is entitled to judgment as a matter of law.”
The Village raises two principal arguments on appeal. It first contends that the district court’s consideration of the unreliability of coverage—what the court referred to as “gradations of service”—runs afoul of case law recognizing that holes in coverage or “dead spots” that are limited in number or size do not constitute a significant gap in service. See, e.g., MetroPCS, Inc. v. City and Cty. of San Francisco, 400 F.3d 715, 733 n. 10 (9th Cir. 2005), abrogated on other grounds by T-Mobile So., LLC v. City of Roswell, — U.S. —, 135 S.Ct. 808, 190 L.Ed.2d 679 (2015); Second Generation Properties, L.P. v. Town of Pelham, 313 F.3d 620, 631 (1st Cir. 2002); Sprint Spectrum, L.P. v. Willoth, 176 F.3d 630, 643-44 (2d Cir. 1999). The Village argues that there will always be “gradations in service,” and opines that the district court’s standard means any unreliability in coverage will be deemed a significant gap, which will inevitably lead to a virtual “forest of cell towers all across the land.” Aplt. Br. at 17-18. The Village adds that the district court overlooked two other factors—the number of AT & T customers potentially affected and the actual dropped or failed call rates—information which AT & T refused to provide.
We disagree. A number of courts have concluded that the lack of reliable in-build
Nor did the district court err by failing to take account of the lack of data regarding the number of AT & T customers potentially affected or the number of dropped calls. While these are among the factors a court can consider, the Village directs us to no case law requiring consideration of every factor, and we have found none. Instead, we think it sufficient that the court considered the lack of reliable in-building coverage in a residential zone, unreliable in-vehicle coverage along the Village’s main road, and the absence of a dominant server in the area, to be of prime importance. And Burley substantiated these factors with objective evidence, including RF propagation maps and a drive test.3 But even if only a few of AT & T’s customers were presently affected, AT & T would be unable to meaningfully compete with any other carrier that was providing adequate coverage in the gap area, which would weigh in favor of concluding the gap is significant. See Town of Pelham, 313 F.3d at 631 (“The [TCA] aims to secure lower prices and better service for consumers by opening all telecommunications markets to competition.”); cf. id. at 633 (reasoning that if a complete absence of any wireless coverage in an area was
The Village’s other principal argument is that AT & T failed to show it considered tower heights of less than 65 feet as part of its good-faith inquiry into whether a 65-foot tower was the least intrusive means of remedying the coverage gap. The Village posits that because the RF coverage maps for the 80-foot and 65-foot options are essentially indistinguishable, there is no evidence to show that a shorter tower would be inadequate to remedy the gap.
We are not persuaded. The differences between the RF coverage maps for the 80- and 65-foot options appear rather minimal. See Aplt. App., Vol. II at 245-46. But pure coverage was not the only basis for Burley’s opinion that a shorter tower would be inadequate. Burley also stated that a lower site would be underused, which would require additional towers in the area, and that a 65-foot tower would provide the area with a dominant server and eliminate interference with establishing and maintaining calls. He supported that opinion with computer models showing the current level of interference and that either an 80-foot or 65-foot tower eliminated the interference. See id. at 253-55. Although Burley might have made it clearer, we think the only reasonable inference to be drawn from the undisputed facts set forth in his report is that a lower tower would be inadequate to sufficiently remedy the gap and to establish a dominant server. At the least, his report shows that AT & T made a good-faith effort to evaluate whether a tower of less than 65 feet would alleviate the coverage gap, see Penn Twp. Butler Cty., 196 F.3d at 480, which is the standard the district court applied. Moreover, the Village has not indicated that a greater number of shorter towers would be an acceptable alternative.
CONCLUSION
The judgment of the district court is affirmed.
Notes
Wyandotte Cty./Kan. City, 528 F.Supp.2d at 1166.Propagation maps are relatively sophisticated computer models that predict signal strength throughout the area in question. Drive tests, by contrast, are empirical rather than predictive. They are conducted by using sensitive radio frequency scanning and global positioning system equipment which is attached to a vehicle that is driven throughout a given area in order to record actual signal strength data. The drive test data is then used to create a map illustrating actual signal strength at locations throughout the area driven. Both propagation maps and drive tests are widely used throughout the wireless industry and are generally recognized as reliable and accurate.
